Document J3Q84pv4d9z6M9vzQgvrRdb4v
TO:
Distribution
APR 2 5 1990
Interoffice Communication
FROM: DATE:
SUBJ:
T. G. Grumbles April 24, 1990
RESPONSE TO
LEVER
EXPENDITURES QUESTION
BROTHERS
LIMITED
VISTA
ENVIRONMENTAL
Below is a draft of the answer for question No. 7 on the Lever questionnaire. I talked to Elliot Vogelfanger about the answer and he is comfortable with it._______________________
7. Has your company invested in environmental programs or equipment? Yes
If yes, please list along with dates and cost.
fe--fee--list athe individual--projects Vista has completed/ln Jhe near past, llu mi. ini', rom 1985 to 1988,Vista spent approximately^.5 million a year in capital to upgrade environmental
facilities and assure compliance with regulation.
y/t-cJcvjU.
GrZZv fpri
In 1989,environmental expenditures began-to increase^In response to
"Hiflroaffingly stringent regulations in the hazardous and solid waste, and stormwater and wastewater areas.
Over the next 5 years, we estimate average capital expenditures of 8-12 million per year with ^ higher than average outlays in 1990 and
1991. These expenditures will allow us to comply with current and anticipated regulations in the near term and allow more cost effective compliance with anticipated regulations in the future.
Project designs now include a waste minimization/source reduction philosophy and a predetermined standards of environmental protection that generally exceeds current regulatory requirements.
Please give me any comments by May 3 so I can get this out to Lever before leaving the office for 2 weeks.
_
T. G. Grumbles
dlj .134
Distribution:
M. Fortier, R. Rose-Saddlebrook R. E. Swantkowski, M. R. Sweet, R.
Bryan, W. J. B. Vogel
WV 000012969
TO:
R. D. Gamblin
Interoffice Communication
FROM: DATE:
SUBJ:
T. G. Grumbles May 11, 1990
PROGRESS REPORT
VISTA
1. The final report on the February LCCP Environmental Audit was issued.
2. The LAB Plant container storage closure plan area was completed and submitted to the DEQ.
3. ERT assisted Legal in presenting Environmental Awareness Training to OKC employees.
4. ERT participated in the Lake Charles groundwater meeting.
Action steps were developed to improve the groundwater recovery
system stream factor.
The DEQ granted approval of the
permanent groundwater recovery system proposal. Therefore, the
preferred technology for groundwater treatment will be chosen
by August 1, 1990 in order to stay on schedule for
implementation of the project.
5. The EPA's Third - Third List for chemicals subject to the land disposal ban came out this week. As soon as the 900+ pages of information are analyzed, a synopsis of this regulation will be issued.
6. MJH attended the HMAC Annual Conference. It appears that there is a great deal of regulatory activity (44 proposed rulemakings) in the transportation sector. Docket HM-181, which will begin to bring the U. S. to international transportation standards, is expected out by the end of the year.
T. G. Grumbles dlj
vvv OOQOU*TM
TO:
Distribution
Interoffice Communication
FROM: DATE:
SUBJ:
T. G. Grumbles May 15, 1990
ENVIRONMENTAL SEMINAR
XF:
AGENDA ENVIRONMENTAL SEMINAR NEW PRODUCT DEVELOPMENT BARRIERS
MAY 22, 1990 BOARD ROOM 9:30-11:00 (PLEASE NOTE TIME CHANGE)
PURPOSE: Review and discuss the regulatory, commercial, and Vista process issues impacting new product development
1. Introduction - General Issues
2. Definition - What is a new Product?
3. Regulatory Issues
a. EPA
b. OSHA
c. Foreign Rules
4. Commercial - Regulatory vs. Reality
5. Vista Process - Liability Control
6. Summary
7. Discussion
VIS
5 min 5 min 20 min
10 min 15 min
5 min
T. G. Grumbled
dlj
Distribution:
R. J. Andersen, J. D. Burns, J. R. Ball, J. A. DeBetnardi, G. G. Draper, R. T. Ferrell, H. R. Flammer, N. C. Frost, R. D. Gamblin, T. H. Huffman, B. E. A. Larsen, M. J. Schneider, W. J. B. Vogel, J. J. Weidner, W. L. McClain, D. L. Cohen, J. C. Ledvina-Houston
V. W. Weiss-Austin
VVV 000012971
TSSrJCL
BOARD OF DIRECTORS ENVIRONMENTAL BRIEFING MAY 17, 1990 AGENDA
iwn
GOALS
1. Provide a status report on where Vista is in regards to current environmental compliance and emissions reductions.
2. Provide information on current regulatory activity and compliance projects to meet new requirements,
significant
ongoing
projects,
and
review
anticipated regulatory activity in the near future.
3. Provide an update on CMA's Responsible Care Program and Vista's Environmental Policy Implementation.
RF
I. Vista Environmental Status
TIME
A. Compliance and Enforcement Actions
5 MIN
This discussion will review Vista's recent enforcement history in the environmental area. The content of significant penalty actions and dollar amounts of penalties proposed will be discussed.
B. SARA 313 Emissions Data
5 MIN
SARA 313 requires that all releases of
approximately 405 listed "Toxic" Chemicals be
reported annually to the EPA. This data is also
available to the public, by request, or through an
on-line computer based system.
The first two
years of Vista's data will be presented and
briefly discussed.
II. Current Regulatory Activity and Compliance Project Work - The Challenges
30 MIN
A. Toxicity Characteristic - EPA has promulgated a
new rule under RCRA that will dramatically
increase the amount of solid waste, including
wastewater, that must be managed as hazardous. As
a result, many surface impoundments will be
regulated under RCRA for the first time.
The
impact on Vista and projects to achieve compliance
will be reviewed.
VVV 000012972
B. Benzene Waste Operations NESHAPS - EPA has promulgated a new rule that will require controlling the air emissions from certain waste operations that contain benzene. The impact on Vista and necessary compliance projects will be reviewed.
C. Resource Needs - The current capital projections and manpower requirements for environmental projects will be reviewed.
D. Future Regulatory Challenges - The anticipated near term regulatory activity will be discussed. This includes further Clean Water Act permit activity and air toxics regulations.
E. Ongoing Projects - Significant ongoing projects
will be reviewed.
These include groundwater
remediation and superfund activities.
III.
Vista Environmental Policy\Responsible Care Update - Since adopting the Environmental Policy in the fall of 1989, and signing the CMA Responsible Care Principles, multiple activities resulted implementing both. A brief review of the status and future activities involved will be given.
in
5 MIN
000012973 vvv 1
ACRONYM DICTIONARY
It is difficult to discuss environmental and without liberal use of acronyms and initialisms. that will be used in this presentation.
regulatory issues Below are the ones
SARA -
Superfund Amendments and Reauthorization Act of 1986
313 -
The section of SARA that requires annual reporting of emissions and releases of some 405 listed chemicals and chemical categories.
Toxicity Characteristic (TC) Revised definition of waste, solid or liquid, which sets the standards for its classification as hazardous or nonhazardous. Replaces the existing Extraction Procedure (EP) Toxicity definition.
RCRA -
Resource Conservation and Recovery Act of 1976. This act establishes controls of the handling and disposal of solid wastes and hazardous wastes.
NESHAPS - National Emission Standards for Hazardous Air Pollutants. These rules establish emission limitation for pollutants the agency judges to possess a significant potential for causing health problems.
NPDES -
National Pollutant Discharge Elimination System. This is the framework under which the content and permitted amounts of pollutants in our plant waste water and stormwat.c i is regulated.
OCPSF Guidelines Organic Chemicals, Plastics and Synthetic Fibers. These are the chemical industry technology-based effluent treatment standards that will apply to Vista in our next NPDES permits.
VVV 000012974
TO: Distribution
Interoffice Communication
FROM: DATE:
SUBJ:
T. G. Grumbles May 18, 1990
OSHA WELDING STANDARDS
TGG: JCL- ERT: MJH: AJO: Rf XF:
VK
The attached is a reorganized format of OSHA's standards for welding, cutting, and brazing.
There are no proposed changes at this time, only a new format. OSHA indicates this is a first step in an effort to revise the standards.
T. G. Grumbles
dlj
Attachment
Distribution: SAFETY DIRECTORS
Bruce Trego-Aber, Harry Peirce-Blane, Kathy Perez-Hmd, K. L. FoggLCCP, R. V. Gantz-VCLAB, G. M. Shirley-LCVCM, J. D. Harris-Okc, R. B. Martin-Austin, D. A. Barclay, J. R. Drumwright
j
vw 000012975
13694 Federal Register / Vol. 55, No. 70 / Wednesday, April 11, 1990 / Rules and Regulations
DEPARTMENT OF LABOR
OSHA's attempts to prepare a
notice and an opportunity For comment
proposed revision to the current welding is not required.
Occupational Safety and Health Administration
standard have been hindered by the standard's great length and ineffective
HI. Other Changes
&jj 29 CFR Part 1910
organization. Beceuse cf the standard's length and complexity, it is difficult to
In addition to the reorganization and renumbering, certain other minor, non
&m
Of
Safety and Health Standards: Welding, Cutting and Brazing* I.
read and to locate specific requirements. substantive changes are included in this
Employers and other users have
action. These are: (1) the addition of
complained that the length and
equivalent metric units where various
agency: Occupational Safety and
complexity make it difficult to
measurements were formerly given only
-- Health Administration (OSHA), U.S.
understand, and comply with, the .
in non-metric units; (2) changes to reflect
" j Department of Labor.
standard's provisions. The current
the transfer of functions among Federal
t ACT90N: Final rule; Redesignation and other non-substantive revisions.
standard's organization, with paragraphs dealing with specific processes, such as oxy-fuel and arc
agencies; (3) the deletion of six formerly
"reserved" provisions; (4) the deletion of one non-substantive provision adopted
summary: The Occupational Safety and welding, located ahead of more general in error (5) the correction of one
Health Administration (OSHA) is
provisions, such as those for ventilation provision's erroneous internal reference;
reorganizing its existing part 1910
and fire protection, presents a problem and (6) the updating of the mailing
^Standards pertaining to Welding,
that needs to be corrected. Instead of
addresses of the organizations that
Cutting and Brazing as a first step in-an trying to solve the problems of length,
published the source standards.
effort to revise these standards
comprehensively. The existing standard is long and not well organized, with
-paragraphs covering specific operations, such as arc welding, appearing ahead of more useful general provisions, such as for fire protection. This reorganization
will facilitate the standard's use by employers and other users, and will also facilitate the substantive revision of the standards planned for the future. Also
included in this reorganization action are some minor non-substantive changes, such as the addition of metric equivalent units.
complexity and poor organization concurrently with a substantive revision of the standard's provisions. OSHA has decided to proceed in two phases. This action will address the problems of organization and complexity, while future rulemaking will address the substantive revision of the standard's provisions.
11. Benefits of Reorganization
OSHA believes that the reorganization will be very beneficial. Most importantly, the creation of a more logical format and the renumbering of
One error in the welding standards that was previously identified by OSHA will not be corrected in this document. On November 30,1987, as part of the
Electrical Safety-Related Work Practices notice of proposed rulemaking, existing $ 1910.252(a)(6)(iv)(d)(2), was listed as
one of several OSHA general industry standards that contain inaccurate references to CSHA's electrical
standards (52 FR 45530. 45541). OSHA
proposed at that time to correct the reference [Id at 45545). Although this welding provision will be redesignated as i 1910.253(f)(4)(iv)(B), as a result of
EFFECTIVE DATE: This action will be
the standard will make it easier for both the reorganization announced in today's
effective on May 11.1990.
the public and CSHA to use. The
Federal Register publication, any
FOR FURTHER INFORMATION CONTACT:
provisions having a more general
amendments to the provision's reference
Mr. James F. Foster, Office of
application will now be located at the
to the electrical standards will be made
Information and Consumer Affairs.
beginning of the standard where they
as a result of the electrical safety
Occupational Safety and Health
can be more easily located. Also,
rulemaking.
Administration. U.S. Department of Labor. Room N3467, 200 Constitution
because the current 11910.252 will be converted into four sections (1910.252-
1. Addition ofMetric Units
Ave. NW,, Washington, DC 20210, (202) 1910.255), all its provisions will become
The existing welding, cutting and
523-6151. This reorganization document much more accessible. In addition, the brazing standard contains many
was prepared by Wendell Glasier,
standards will follow the Office of the
measurements, such as those for weight,
Directorate of Safety Standards
Federal Register's guidelines for proper length, volume, pressure and
Programs.
paragraph numbering and cross-
temperature. No metric equivalents were
SUPPLEMENTARY INFORMATION:
I. Background
referencing. OSHA also anticipates that this action will facilitate the Agency's
planned substantive revision of the
provided for any of these measurements.
Since the policy of the Federal Government is now to provide metric
The existing OSHA standard covering welding standard by eliminating the
units whenever feasible, equivalent
safety in Welding, Cutting and Brazing problems of reorganization and
metric units have been added to each of
(29 CFR 1910.252} was promulgated in
renumbering, which otherwise would
these measurements.
1371, under the authority of section 6(a) cf the Occupational Safety and Health
Act of 1070. Except for minor deletions,
have to be addressed in that rulemaking.
The phase two proposed revision will be accomplished through rulemaking
2. Change to Reflect Transfer of Authority Between Federal Agencies
no changes have been made to the
procedures which will provide
The existing welding standard
standard since that time. Changes in
appropriate public notice and
contains several references in
welding technology, welding practices
opportunity for comment.
S 1910.252(0 to the U.S. Bureau of Mines
and in the National Consensus
OSHA wishes to emphasize that this as the approving authority for
Standards on which the rule was based action does not alter the substance of
respiratory protective equipment. The
have all occurred since 1971. The OSHA the present welding, cutting and brazing current authority for the approval of
welding standard requires updating to
standards in any way, nor does it affect such devices lies with the Mine Safety
reflect current technology end practices their present scope and application.
and Health Administration (MSHA) cf
in the industry, and to provide
Because there are no substantive
the U.S. Department cf Labor, and with
consistency with current industry
amendments to OSHA's standards in
the National Institute for Occupational
standards.
this action, providing the public prior
Safety and Health (NIOSH) (See 30 CFR
VVV 000012976
Federal Register / Vol. 55, No. 70 / Wednesday, April 11. 1890 / Rales and Regulations 13695
part If). Consequently, references pertaining to the approval of respiratory protection devices have been changed to
reflect the transfer of authority.
3. Deletion ofReserved Sections
The existing OSHA welding standard contains six provisions which are presently "reserved." The regulatory text was removed by OSHA. either by
the 1978 "Revocation of Selected General and Special Industry Safety and Health Standards" (43 FR 49726) or by the 1984 "Revocation of Advisory and Repetitive Standards" (49 FR 5318). Since these "reserved" provisions contain no regulatory text, they serve no
oseful purpose and are therefore deleted. Provisions following the formerly "reserved" provisions have been redesignated to maintain the correct numerical or alphabetical sequence. The "reserved" provisions which are being removed are listed below:
iSlJX252(a)(3Hv)(e)
1910.252(a)(5){v)(6)
19t0.252(a)(7J(iii)(cO 1910.252(c)(5)
191O.252(e)(2)(ii)O0 t928.252(ft(lj{ii)
'
t Deletion ofNon-Substantive Provision
Paragraph (a)(3)(v){6) of existing 51910.252 contains no substantive requirements other than requiring compliance with "subdivision {/)" of
! I910.252(a){3)(v). However, there is no subdivision {/). Since this provision neither contains nor references substantive requirements, it is being
dieted. The provisions which follow the deleted provision have been redesignated to maintain the correct numerical sequence.
& Correction ofInternal Reference
' Paragraph {a){2)(vi)(o}(3) of existing
1910.252 contains a reference to "paragraph (a)(8) of this section." There h no paragraph (e)(8). OSHA has concluded, through reference to ANSI ^9.1-1967, that the correct reference would be to paragraph (a)(6){vi)(o)(8). This action corrects the erroneous
Terence, which, after reorganization,
Appears as paragraph (f)(6KU(H) of * J91G.253 (see conversion table).
8- Updating ofAddresses ofSource Standards Organizations
'Hie standards organizations listed in ^sting $ 1910.254 contained, except for r16 American National Standards "Jtitute, outdated addresses. The presses have been updated in
^designated $ 1910.257.
For convenience of reference, OSHA has prepared the following conversion table which lists all the "old" provisions in subpart Q and. alongside each, the equivalent "new" provision.
Welding, Cutting and Brazing Conversion Table--Part 1910. Subpart Q
Old Provisions i 1910.251_______ i 1910.251
New Provisions
Definitions
Definitions
{No changes}
.......................... (b)(1)
(b){2|{ii)(oHb)..... ......... -- (b!<2K'Wii) (bH2){){6){lHs}-------------- (bK2;(ii](AHH) (bH2](iii}..~.........................(b)(3) (b)(2)(iii)(<i)------------------ (b)(3J(i)
(b)(2)(iiii(a((lH2).~......... (b)(3)UI(AHB) (b)(2J[iii)(b)--......-.......... (b)[3)(i<)
(b)f2)(iii)(b)(7H-2I------------ (b)(3)(ii)fAH8) (b)(2Kiii)(cHdl------- --------- {b)(3)(niHiv) (bM2ivoHrt--------------- M4RiHvfl (b}(3){i)---------------------------- (c)(1)
(b)(3j(iii{oH*)~-------------(c)(2J(iHv) (b}{3)(iii){oHd)---------------- (OOKiHiv)
(bU3|(iiO(<n(rH2)------------ (c)(3Kivl(AHB)
(b)(4)(iHvii).......... ........... (d)(lH81 (b) (4)(ix)(oHcJ-------------- (d)(9Ki)-(iiiJ
Old Provisions
New Provisions
Old Provisions
NewPrevisions
) 1910-252{ 1910-253
11910.252------------------------liatOZSS
Welding, cutting, and Oxygen-fuel gas welding
beating
and cutting
Welding, cutting, and brazing
Resistance welding
(KtKiHiv)---------------------()(IH4) lal(21(iKoMtf------------------- (bKlidH'v)
------------------ (b)(2){<Hiv]
(aKZKiilJ.----------------------- (b)(3) (a)(2)(iii)(aH6}------------------(b)(3)(HH)
(c) (l)(iHivl----------------- ... (a)dH4) (c}(2)(iHw)--------------------- (b)(lH9) (c) {3)(iHvi)-----------------(ciilHO)
(cKKHH)---------------------- WWiHs)
(cK8H).~--------------- :--.W*
'
fa)(2)(iv){cHfl------------------(bMMHivJ
Old Provisions
NewProvisions
fa)(2)(v)(a)-----------------------fbtfsm)
11910,252.,--------- 1------------ 11910J52
(a)(2)(v)(0)(rHZri-----------(b)(S)(ii)(AHQl
(a)(2)()(b|(7S)(<>{/0-'-- (b}(5}(ii)(R)(rHri {a}(2)(vKff)(lH^-------- -- (b)(5iUKAHy
---------- --------(t)ID(iHv)
Welding, cutting, and brazing
General requirements
(dKtJ .------------------1-------- UWl) '
:' '
(a}(3}(ii}(oHfl------------------- (c)(2)fiHvi)
(dKl){iHW-------------------- (8)d){iH<b)
(a){3)fiii)(oH)----------------W(3)(iHv)
(d) (2)----------------------------- (e)(2) -
(K3KivoH------------------(c)(4!(iHviii)
(d)(2)(iH)---------------------- (a)(2t(iHii)
(ai{3}(vHcHA)-------------------(cj(S|(iHvi)* '* (a)H|(iKa){l)........ .............. W)(tKi)(A)
(d)(Z)(iiiKa)----------------------(a)(2)(iii)(A) (d)(2iliKo)(/H4)------------ (a)(2)(ui)(A|(/H4J
(a|(4]{iKoKH{H/0---------- (d](l]{i!fAKlH^)
(d)(2)(iii)(A)----------- ----------(a)(2)(iii)(B)
(3)(4}(iKo){2).~-........... ...... (d)(l){*)(B)
fdX2)(ivHvi)-------------------- (aX2)HvHvi)
(a)(4Ki)W)(rHJ}---------------------------------- --(dim'.uKAHG(Jd)(2)(viHoHd)-----------------(a)(2)(viXAHD)
(>(4Hi)(c)(lHZ}-------------- (d)(l)(iii)(AH0I
(d)(2)(vuHxi)-----------------(aKZJfviiHxiii)
(}(4)[ii}(oHri-------------------(d)(2)(iHiii) (a)(4}|iii)(oM/)----------------- (d)(3)fiH*> (J(4}(iv){oHc)------------------ {d){4)(jH'j`) (aK4)(v)(aH*).... ....... -- {d)(5)(>Hi)
(d{{2)(xiH)((3Hd)------- -- (a)(2)(xim(AHD) (d)(2Kxiv)..--------------------- (a)(2)(wv)
(d)(Z){xiv)(oHc)--------------- (a)(2J(xiv)(AHC) (d)(2)(xlv)(c)( rH3) ---------- (a)(2)(xiv)(CKrH3)
(a)(5|(iH).,,---- ---------------(){1H2J
(dH2)(xiv){<fHs)----------- --- (a)(2i(xiv){OHC!
(aJtSKUiKoH*)-....... ........ (e>(3){iHi>) {aK5i(m65(lH3}------------ (elpmmAHC)
(d)(2)(xv)------------------------- (a)(2)(xv) (dHy,(iHH1-------------------faKWHii)
(a)(5)(iii](0J(J)(/W/v)-------- le}!3);ii){CI{lH4)
(d) (43(Hiil-------------------(a)(4)(iHii)
[a)!5}(iii)(cH<fl------------------(e)0)(iiiW`v)
....................... (b)fl)(iH)
(8>(5)(ivKoHA)------------------(ei(4(UHviu|
(e) (2J!i)(oHd) --------------(b)(2)(i)(AMD)
(a}(5)(v)(<7K^l------------------- (e)(S}(iHvr {a}i5)(v>)(oHd}------------ (8){6)!H`v)
{eKZ)(ii)foM')---------------- (bi(Z)fiil(AH!;* (e)(3K(ii).-------------------------(b((Z!(Uii
(a)(S)(i)(oHW------------------ (O(J)f'Hii)
(a)(e)(iiKoHc)------------- --- (fK2)(iHin) ta)(8)(ui)------------------------- .
(e)(3)(i)......... .......................(b)(3) ((i) deleted. because no (ii)}
(e) (4)()Hvii).................... (b)(4)(iMvH)
(aHfi!(ivJ(aXIH5) ------------ (OWOHAME)
(f) (l)(i)-----;-------------------(c)|l)(i)
--.
(a)(B)(iv)(d)(ZH3)------------ lf){4)(ii|(AMC)
(r)(D(i)(oH^--- ---------------(c)(l)(SHAHC)
{a)(8)(ivXc)(rHd)------------- m(4)(ii)(AHF}
(OmiiiMv)----------------------- (cldKiiH'v)*
------- (n(4)liW(AHEj
(0(l)(v)(oHc}------------------- {cKD(ivHAHC)
(aS(8)(v)(a)( ?H4)------------- (f)(5)(i)(AHU)
(0(2)(0---- ------------------------(ci(Z)fi)
()(6!{v)(*)(JH5)-------------(fJ{5)()i)(AHE5
W(2|(U(cHc)-..~------------- (c)(2)li)(AHC)
(a)(6)(vi((c)liHS) ----------(F){KM(AHH
(f)(2)(li)----------------------------(c)(2)(li)
{a)(8j(vi){6Hc}----------------
wn--------------------------- (c)(3)
(a)(8){vi){fl(iHz)------------(f!(6Kiv){AHB) ta8Kvil(eJ--------------- -- (D(6Hvl
(f)(3)(iHH)-----------------------(c)(3)(iHiiI (0(*)('Hv)-----------------------(c)(4)(iHv)
(aH8)(viiHo)--------------------- ff)(7}(i1
(mSKIHii)-----------------------(c)(5)(iH)
fa)(d)(vji)(0)(;H4)-------------(f)(7Hi)(AHO)
(0(e)(iH*i)-------------------- (c)(6)(iH)
{aH6>(Wi)(6H^--------------- (WXiiHvi} .
(OfrKiHiii?---------------------- (c)(7)(iHiH)
{a)(7)(i)(oH<0------------------(sHlXiH'ri
(0(8)-------------------------------- (C)(8)
{eUrKuKa}----------------------- {$){Z)(i)
tncWMitl-------------- --- (c)(9MiH)
(a)(7K>)(o)(rH^)------------- {8H2IHHAHB)
(0(10)------------------------------ (c){10)
(a)(7)(iiK6)----------------------- <g){2)()
(0()('H)--------------------- (c/(ii)(H)
{aK?KiiKft)trH3)--:------- (SK2)(ii)(AHC)
(f)(12H131-----------------------(C)(12H13)
{a)(7}{ii)(<r)------------------ <gl(2J?tU)
(8HD(iHi)-~----------------- fd)(l)(iM*'i)
fa)(7HiJ{aHc)---------------- (gl(3)()Hiv)',
(8)(2HiH'i)--------------------- (d)(2)!iHil)
Old Provisions 11910-252-----....--.......... 11910254
NewProvisions Old Provisions f 1910-250 ----
New Provisions -- 11910-258
Welding, cutting, and Are welding and cutting broging
Sources of standards Old Provisions
Sources of standards . New Provisions
tbl(lKiHm)--------------------- {a|{lH3{
I1910ZM------------------------11910257
VW
13696
Federal Register / Vol. 55, No. 70 / Wednesday. April 11. 1990 / Rales and Regulations
Siamiords organizations Standards organizations
W---------------------------(at
(bj......................................(hf
W...... ..... ...-----------<e>
Id)--------- --------------------- ----(df
(e)............... ............. <) (0------- ----------------- <0
* Provisions currently listed as "Reserved" in 29
CFR part 1910. subpart Q, are being deleted.
'* Existing paragraph
is being
deleted because it contains no substantive require
ments and refers to provision which does not
exist.
IV. Regulatory Impact Assessment
OSHA finds that this action consists solely of the reorganization, and renumbering of existing standards and other minor changes which do not alter or add to the requirements presently applicable to welding, cutting and brazing operations. As already noted, the action will make the welding standards easier to use by the public and OSHA, and will facilitate the planned revision of these standards by OSHA. There will be, however, no increase in cost or burden to employers, since the present substantive requirements are not being altered.
OSHA therefore finds that this is not a major rule which requires preparation of a regulatory impact analysis pursuant to Executive Order No. 12291. For the same reason, OSHA further certifies that this action will not have significant economic impact on a substantial number of small entities and, therefore, there is no need to prepare a regulatory flexibility analysis pursuant to the Regulatory Flexibility Act (5 U.S.C. 601 et seq.), OSHA will, of course, perform these analyses as appropriate in conjunction with any ensuing project to revise the welding standards.V.
V. Exemption From Notice and Comment Procedures .
With regard to this action, OSHA has determined that it is not required to follow procedures for public notice and comment rulemaking under either -section 4 of the Administrative Procedure Act (5 U.S.C. 553) or under section 6(b) of the Occupational Safety and Health Act (29 U.S.C. 655(b)). This action involves a reorganization of existing standards and other minor changes which do not affect the substantive requirements cr coverage of the standards themselves. This action does not modify or revoke existing rights or obligations, nor does it establish new ones. OSHA. therefore, finds that notice and public procedure are impracticable and unnecessary within the meaning of 5 U.S.C.
553(b)(3)(B). For the same reasons.
OSHA also finds that in accordance with 29 CFR 1911.5, good cause exists for dispensing with the public notice and comment procedures prescribed in section 6(b) of the Occupational Safety and Health Act.
VI. List of Subjects
List of Subjects in 29 CFR Part 1910
Asbestos. Chemicals, Diving, Electric power. Electronic products. Fire prevention. Gases, Hazardous, substances, Health records. Incorporation by reference. Labeling. Laboratories, Noise control. Occupational safety and health. Radiation protection. Reporting and recordkeeping requirements. Signs and symbols.
VII. Authority
This document was prepared under the direction of Gerard F. ScannelL Assistant Secretary of Labor for Occupational Safety and Health, U.S. Department of Labor, 200 Constitution Avenue NW,, Washington, DC 20210.
Accordingly, pursuant to sections 4, 6, and 8 of the Occupational Safety and Health Act of 1970 (29 U.S.C. 653,655, 657), 5 U.S.C. 553, Secretary of Labor's Order No. 1-90 (55 FR 9033). and 29 CFR part 1911, subpart Q of part 1910 of 29 CFR is revised to read as set forth below.
Signed at Washington. DC. this 30th day of March, 1990. Gerard F. Scannell,
Assistant Secretary ofLabor.
PART 1910--OCCUPATIONAL SAFETY AND HEALTH STANDARDS
The authority citation for subpart Q of part 1910 is revised to read:
Authority; Secs. 4,8, 8, Occupational Safety and Health Act of 1970 (29 U.S.C. 653. 655, 657): Secretary of Labor's Order No. 12-71 (36 FR 8754). 8-76 (41 FR 25059), 9-63 (46 FR 35736), or 1-90 (55 FR 9033), as applicable: 5 U.S.C. 553; 29 CFR part 191L
2. Part 1910 is amended by revising subpart Q to read as follows:
Subpart O--Welding, Cutting and Brazing
Sec.
1910.251 Definitions. 1910.252 General requirements. 1910.253 Oxygen-fuel gas welding and
cutting. 1910.254 Arc welding and cutting. 1910.255 Resistance welding. 1910.256 Sources of standards. 1910.257 Standards organizations.
Subpart G--Welding, Cutting and Brazing
1910.25! Definitions. As used in this subpart:
(a) Welder and welding operator
mean any operator of electric or gas welding and cutting equipment.
(b) Approved means listed or
approved by a nationally recognized testing laboratory. Refer to $ 1910.155(c)(3) far definitions of listed and approved, and 1910.7 for nationally recognized testing laboratory.
(c) Ail other welding terms are used in accordance with American Welding Society--Terms and Definitions--A3.G-- 969.
1910.252 General requirements.
(a) Fire prevention andprotection-- (1) Basicprecautions. For elaboration of
these basic precautions and of the special precautions of paragraph (a)(2) of this section as well as a delineation of the fire protection and prevention responsibilities of welders and cutters, their supervisors (including outside contractors) and those in management on whose property cutting and welding is to be performed, see Standard for Fire Prevention in Use of Cutting and Welding Processes. NFPA Standard 51B. 1962. The basic precautions for fire prevention in welding or cutting work
are: (ij Fire hazards. If the object to be
welded or cut cannot readily be moved, all movable fire hazards in the vicinity shall be taken to a safe place.
(ii) Guards. If the object to be welded or cut cannot be moved and if all the fire hazards cannot be removed, then guards shall be used to confine the heat, sparks, and slag, and to protect the immovable fire hazards.
(iii) Restrictions. If the requirements stated in paragraphs (a)(l)(i) and (a)(l)(ii) of this section cannot be followed then welding and cutting shall not be performed.
(2) Specialprecautions. When the nature of the work to be performed falls within the scope of paragraph (a)(l)[ii) of this section certain additional precautions may be necessary.
(i) Combustible material. Wherever there are floor openings or cracks in the flooring that cannot be closed, precautions shall be taken so that no readily combustible materials on the floor below will be exposed to sparks which might drop through the floor. The same precautions shall be observed with regard to cracks or holes in walls, open doorways and open or broken windows.
(ii) Fire extinguishers. Suitable Are extinguishing equipment shall be
vvv 0000X2978
Federal Register / Vol. 55, No. 70 / Wednesday, April 11, 1990 / Rules and Regulations 13697
maintained in a state of readiness for instant use. Such equipment may consist
of pails of water, buckets of sand, hose or portable extinguishers depending upon the nature and quantity of the combustible material exposed.
(iii) Fire watch. (A) Fire watchers shall be required whenever welding or cutting is performed in locations where other than a minor fire might develop, or any of the following conditions exist:
(1) Appreciable combustible material, in building construction or contents, closer than 35 feet (10.7 m) to the point of operation.
(2) Appreciable combustibles are more than 35 feet (10.7 m) away but are easily ignited by sparks.
(3) Wall or floor openings within a 35foot (10.7 m) radius expose combustible
material in adjacent areas including concealed spaces in walls or floors.
(4} Combustible materials are adjacent to the opposite side of metal
partitions, walls, ceilings, or roofs and are likely to be ignited by conduction or radiation.
(Bj Fire watchers shall have fire extinguishing equipment readily
available and be trained in its use. They shall be familiar with facilities for
sounding an alarm in the event of a fire. They shall watch for fires in all exposed areas, try to extinguish them only when obviously within the capacity of the equipment available, or otherwise sound the alarm. A fire watch shall be maintained for at least a half hour after
completion of welding or cutting operations to detect and extinguish
possible smoldering fires. (iv) Authorization. Before cutting or
welding is permitted, the area shall be inspected by the individual responsible for authorizing cutting and welding
operations. He shall designate precautions to be followed in granting authorization to proceed preferably in the form of a written permit.
(v) Floors. Where combustible materials such as paper clippings, wood
. shavings, or textile fibers are on the floor, the floor shall be swept clean for a
radius of 35 feet (10.7 m). Combustible floors shall be kept wet, covered with damp sand, or protected by fire-resistant shields. Where floors have been wet
down, personnel operating arc welding or cutting equipment shall be protected
from possible shock. (vi) Prohibited areas. Cutting or
welding shall not be permitted in the following situations:
(A) In areas not authorized by - management.
(B) In sprinktered buildings while such
Protection is impaired. (C) In the presence of explosive
atmospheres (mixtures of flammable
gases, vapors, liquids, or dusts with air), or explosive atmospheres that, may
develop inside uncleaned or improperly prepared tanks or equipment which have previously contained such materials, or that may develop in areas with an accumulation of combustible dusts.
(D) In areas near the storage of large
quantities of exposed, readily ignitible materials such as bulk sulfur, baled paper, or cotton.
(vii) Relocation ofcombustibles. Where practicable, all combustibles shall be relocated at least 35 feet (10.7 m) from the work site. Where relocation is impracticable, combustibles shall be protected with flameproofed covers or otherwise shielded with metal or
asbestos guards or curtains. (viii) Ducts. Ducts and conveyor
systems that might carry sparks to distant combustibles shall be suitably .
protected or shut down. (ix) Combustible walls. Where cutting
or welding is done near walls, partitions, ceiling or roof of combustible construction, fire-resistant shields or guards shall be provided to prevent ignition.
(x) Noncombustible walls. If welding is to be done on a metal wall, partition, ceiling or roof, precautions shall be taken to prevent ignition of combustibles on the other side, due to conduction or radiation, preferably by
relocating combustibles. Where combustibles are not relocated, a fire watch on the opposite side from the work shall be provided.
(xi) Combustible cover. Welding shall not be attempted on a metal partition, wall, ceiling or roof having a combustible covering nor on walls or partitions of combustible sandwich-type panel construction.
(xii) Pipes. Cutting or welding on pipes or other metal in contact with combustible wails, partitions, ceilings or roofs shall not be undertaken if the work is close enough to cause ignition by conduction.
(xiii) Management. Management shall recognize its responsibility for the safe usage of cutting and welding equipment on its property and:
(A) Based on fire potentials of plant facilities, establish areas for cutting and welding, and establish procedures for cutting and welding, in other areas.
(B) Designate an individual responsible for authorizing cutting and
welding operations in areas not specifically designed for such processes.
(C) Insist that cutters or welders and their supervisors are suitably trained in
the safe operation of their equipment
and the safe use of the process.
(DJ Advise all contractors about flammable materials or hazardous
conditions of which they may not be aware.
(xiv) Supervisor. The Supervisor:
(A) Shall be responsible for the safe handling of the cutting or welding equipment and the safe use of the cutting or welding process.
(B) Shall determine the combustible materials and hazardous areas present or likely to be present in the work
location. (C) Shall protect combustibles from
ignition by the following: (/} Have the work moved to a location
free from dangerous combustibles. [2] If the work cannot be moved, have
the combustibles moved to a safe distance from the work or have the combustibles properly shielded against
ignition. (3J See that cutting and welding are so
scheduled that plant operations tiiat
might expose combustibles to ignition are not started during cutting or
welding. (D) Shall secure authorization for the
cutting or welding operations from the designated management representative.
(E) Shall determine that the cutter or welder secures his approval that conditions are safe before going ahead.
(F) Shall determine that fire protection
and extinguishing equipment are properly located at the site.
(G) Where fire watches are required, he shall see that they are available at
the site. (xv) Fire prevention precautions.
Cutting or welding shall be permitted only in areas that are or have been made fire safe. When work cannot be moved practically, as in most construction work, the area shall be made safe by removing combustibles or protecting combustibles from ignition
sources. (3) Welding or cutting containers--(i)
Used containers. No welding, cutting, or other hot work shall be performed on used drums, barrels, tanks or other
containers until they have been cleaned so thoroughly as to make absolutely certain that there are no flammable
materials present or any substances such as greases, tars, acids, or other materials which when subjected to heat,
might produce flammable or toxic vapors. Any pipe lines or connections to the drum or vessel shall be disconnected or blanked.
(iij Venting and purging. All hollow spaces, cavities or containers shall be vented to permit the escape of air or gases before preheating, cutting or
welding. Purging with inert gas is .
recommended.
VVV 000012979
13698 Federal Register / Vol. 55. No. 70 / Wednesday, April 11, 1990 / Rules and Regulations
i
(4) Confined spaces--(i) Accidental
(C) Helmets shall be provided with
screens or shields or shall be required to
contact When arc welding is to be
filter plates and cover plates designed
wear appropriate goggles.
suspended for any substantial period of for easy removal.
(3) Protective clothing--General
time, such as during lunch or overnight,
(D) All parts snail be constructed of a requirements. Employees exposed to the
all electrodes shall be removed from the material which will not readily corrode hazards created by welding, cutting, or
holders and the holders carefully
or discolor the skin.
brazing operations shall be protected by
located so that accidental contact
(E) Goggles shall be ventilated to
personal protective equipment in
cannot occur and the machine be
prevent fogging of the lenses as much as accordance with the requirements of
disconnected from the power source.
practicable.
1910.132 of this part. Appropriate
(ii) Torch valve. In order to eliminate
(F) All glass for lenses shall be
protective clothing required for any
the possibility of gas escaping through leaks or improperly closed valves, when
gas welding or cutting, the torch valves shall be closed and the gas supply to the torch positively shut off at some point outside the confined area whenever the
torch is not to be used for a substantial
period of time, such as during lunch hour or overnight. Where practicable, the torch and hose shall also be removed
from the confined space. ' (b) Protection ofpersonnel--(1) '
General--(i) Railing. A welder os helper
working on platforms, scaffolds, or runways shall be protected against
falling. This may be accomplished by the use of railings, safety belts, life lines,
or some other equally effective safeguards.
(ii) Welding cable. Welders shall place welding cable and other
equipment so that it is clear of passageways, ladders, and stairways.
(2J Eye protection--(i) Selection. (A)
Helmets or hand shields shall be used during all am welding or arc cutting operations, excluding submerged arc
welding. Helpers or attendants shall be
provided with proper eye protection. (B) Goggles or other suitable eye
protection shall be used during ail gas
welding or oxygen cutting operations.
Spectacles without side shields, with suitable filter lenses are permitted for use during gas welding operations on
light work, for torch brazing or for inspection.
(C) All operators and attendants of
resistance welding or resistance brazing
equipment shall use transparent face shields or goggles, depending on the
tempered, substantially free from striae, air bubbles, waves and other flaws.
Except when a lens is ground to provide proper optical correction for defective vision, the front and rear surfaces of lenses and windows shall be smooth
and parallel.
(G) Lenses shall bear some permanent distinctive marking by which the source and shade may be readily identified.
(H) The following is a guide for the selection of the proper shade numbers. These recommendations may be varied
to suit the individual'9 needs.
Welding operation
Shade Nc.
Shielded metal-arc welding--Vic-, ft**. ft-
Gas-shielded arc welding (nonferrous)--ft*-, ft-, ft*4nch elee*
Gas-shielded arc welding (ferrous)--ft*-, ft**, ft*, fti-incn electrodes.......,,..............
Shielded metal-arc welding: ft**, ft**. ft-inch electrodes__________
12 12
Atomic hydrogen weidirtg._.,,_.... ................. 10-14 14
Medium cutting. 1 inch to 6 inches_________ 4 or 5 Heavy cutting, S inches and over__________ 5 or 6
Gas welding {medium) ft inch to ft inch___ 5 or 6 6 or 8
Note: In gas welding or oxygen cutting where the torch produces s high yellow light it a desirable to use a (liter or kens that absorbs the yellow or sodium line in the visible light ot the operation.
(I) All filter lenses and plates shall meet the test for transmission of radiant
welding operation will vary with the size, nature and location of the work to be performed.
(4) Work in confined spaces--(r) General. As used herein confined space is intended to mean a relatively small or
restricted space such as a tank, boiler, pressure vessel, or small compartment of a ship.
(ii) Ventilation. Ventilation is a
prerequisite to work in confined spaces. For ventilation requirements see paragraph (c) of thfs section.
(iii) Securing cylinders and
machinery. When welding or cutting is being performed in any confined spaces the gas cylinders and welding machines
shall be left on the outside. Before operations are started, heavy portable
equipment mounted on wheels shall be
securely blocked to prevent accidental movement.
(tv) Lifelines. Where a welder must
enter a confined space through a manhole or other small opening, means shall be provided for quickly removing him in case of emergency. When safety
belts and lifelines are used for this purpose they shall be so attached to the welder's body that his body cannot be
jammed in a small exit opening. An attendant with a preplanned rescue procedure shall be stationed outside to observe the welder at all times and be
capable of putting rescue operations into
effect. (v) Electrode removal. When arc
welding is to be suspended for any
substantial period of time, such as during lunch or overnight, all electrodes
particular job. to protect their faces or energy prescribed in ANSI Z87.1--
shall be removed from the holders and
eyes, as required.
1968--American National Standard
the holders carefully located so that
(D) Eye protection in the form of
Practice for Occupational and
accidental contact cannot occur and the
suitable goggles shall be provided where Educational Eye and Face Protection.
machine disconnected from the power
needed for brazing operations not
(iii) Protection from arc welding rays. source.
covered in paragraphs (b)(2)(i)(A)
Where the work permits, the welder
(vi) Gas cylinder shutoff. In order to
through (b)(2)(i)|C) of this section.
should be enclosed in an individual
eliminate the possibility of gas escaping
o
(ii) Specifications forprotectors. (A) booth painted with a finish of low
through leaks of improperly closed
Helmets and hand shields shall be made reflectivity such as zinc oxide (an
valves, when gas welding or cutting, the
of a material which is an insulator for
important factor for absorbing
torch valves shall be closed and the
beat and electricity. Helmets, sbields and goggles shall be not readily
ultraviolet radiations) and lamp black, or shall be enclosed with
fuel-gas and oxygen supply to the torch positively shut off at some point outside
flammable and shall be capable of
noncombustible screens similarly
the confined area whenever the torch is
withstanding sterilization.
painted. Booths and screens shall permit not to be used for a substantial period of
(B) Helmets and hand shields shall be circulation of air at floor level. Workers time, such as during lunch hour or
arranged to protect the face, neck and
or other persons adjacent to the welding overnight. Where practicable the torch
ears from direct radiant energy from the areas shall be protected from the rays
and hose shall also be removed from the
arc.
by noncombustible or flameproof
confined space.
wv 0000X2980
N
be
3 lo ' be i into ''
Federal Register f Vol. 55. No. 70 / Wednesday. April 11. 1990 / Rules and Regulations 13S99
[vffj Warning sign. After welding operations are completed, the welder
shall mark the hot metal or provide some other means of warning other
workers.
[c] Health protection and ventilation--{1J General--(ij Contamination. The requirements in this paragraph have been established an the basis of the following three factors in arc and gas welding which govern the amount of contamination to which welders may be exposed:
(A) Dimensions of space in which welding is to be done (with special regard to height of ceiling].
(B) Number of welders.
(C) Possible evolution of hazardous fumes, gases, or dust according to the metals involved..
(ii) Screens. When welding most be performed in a space entirely screened on all sides, the screens shall be so arranged that no serious restriction of ventilation exists. It is desirable to have the screens so mounted that they are about 2 feet(0.Sl m) above the floor unless the work is performed at so low a level that the screen must be extended nearer lo the floor to protect nearby workers from the glare of welding.
(iii) Maximum allowable concentration. Local exhaust or general ventilating systems shall be provided and arranged to keep the amount of toxic fumes, gases, or dusts below the maximum allowable concentration as specified in 191Q.100Q of this parL
(iv) Precautionary labels. A number of potentially hazardous materials are employed in fluxes, coatings, coverings, and filler metais used in welding and cutting or are released to the atmosphere during welding and cutting. These include but are not limited to the materials itemized in paragraphs (c)(5) through (c)(12) of this section. The suppliers of welding materials shall determine the hazard, if any. associated with the use' of their materials in welding, cutting, etc.
[A] All filler metals and fusible granular materials shall carry the following notice, as a minimum, on tags, boxes, or other containers:
Caution
Welding may produce fume* and gases hazardous to health. Avoid breathing these
tomes and gases. Use adequate ventilation. See ANSI Z4SJ - 1967 Safety m Welding and Cutting published by-the American Welding Society..
(B) Brazing (welding) filler metals containing cadmium in significant
amounts shall carry the following notice n tags, boxes, or other containers:
WARNING
CONTAINS CADMIUM--POISONOUS FUMES MAY BE FORMED ON HEATING
Do not breathe fumes. Use only with adequate ventilation such as fume collectors, exhaust ventilators, or air-supplied respirators. See ANSI Z49.1 -1967. If chest pain, cough, or fever develops after uae call physician immediately.
feet (30 m) per minute in the zone of welding when the hood is at its most
remote distance from the point of welding. The rates of ventilation required to accomplish this control
velocity using a 3-fnch (7.6 cm) wide flanged suction opening are shown in the following table:
fCJ Brazing and gas welding fluxes containing fluorine compounds shall have a cautionary wording to indicate that they contain fluorine compounds. One such cautionary wording recommended by the American Welding Society for brazing and gas welding fluxes reads as fellows:
CAUTION
CONTAINS FLUORIDES
Welding zona
Minimum air flow ` cubic
teet/minuto
4 to 6 inches from are Of torch
6 to 6 inches from arc or torch____
6 to 10 inches from
arc or torch_________
10 to 12 inches from
arc or torch---------------
150 275 425
eoo
Cud diameter. inches2
a
3 Vi
4-4 5`V
This flux when heated gives off fumes that
may irritate eyes, nose and throat. 1. Avoid fumes--use only in well-ventilated
spaces. 2_ Avoid contact of flux with eyes or skin.
1 When brazing with cadmium bearing materials or when cutting err such matenala increased rates o
ventilation may be required.
* Nearest halt-inch duct diameter based on 4,000feet per minute velocity irvppa.
3. Do not take internally.
(ii) Fixed enclosure. A fixed enclosure
(2) Ventilationforgeneral welding and cutting--(i) General. Mechanical
ventilation shall be provided when
welding or cutting is done on metals not covered in paragraphs (c)(5) through
(c)(12) of this section. (For specific materials, see the ventilation
requirements of paragraphs (c)(5) through (c)(12) of this section.)
(A) In a space of less than 10.000 cubic feet (284 m 3) per welder.
(B) In a room having a ceiling height of
with a top and not less than two sides which surround the welding or cutting
operations and with a rate of airflow sufficient to maintain a velocity away
from the welder of not less than 100 linear feet (30 m) per minute.
(4) Ventilation in confinedspaces--(I) Air replacement All welding and cutting operations carried on in confined spaces shall be adequately ventilated to prevent the accumulation of toxic materials or possible oxygen deficiency.
less than IS feet (5 m). (C) In confined spaces or where the
This applies not only to the welder but also to helpers and other personnel in
welding space contains partitions,
the immediate vicinity. Ail air replacing
balconies, or other structural barriers to that withdrawn shall be clean and
the extent that they significantly
respirable.
obstruct cross ventilation.
(ii) Airline respirators. In such
(ii) Minimum rate. Such, ventilation
circumstances where it is impossible to
shall be at the minimum rate of 2.000
provide such ventilation, airline
cubic feet (57 m*) per minute per welder, respirators or hose masks approved by
except where local exhaust hoods and the Mine Safety and Health
booths as per paragraph (c)(3) of this
Administration and the National.
section; or airline respirators approved Institute for Occupational Safety and
by the Mine Safety and Health
Health, pursuant to the provisions of 30
Administration and the National
CFR part 11, for this purpose, shall be
Institute for Occupational Safety and
used.
Health, pursuant to the provisions of 30
(iii) Self-containedunits. In areas
CFR part 11, are provided. Natural
immediately hazardous to life, hose
ventilation is considered sufficient for masks with blowers or self-contained
welding or cutting operations where the breathing equipment shall be used. The
restrictions in paragraph (c)(2)p) of this - breathing equipment shall be approved
section are not presort.
by the Mine Safety and Health
(3) Local exhaust hoods and booths.
Administration and the National
Mechanical local exhaust ventilation
Institute for Occupational Safety and
may be by means of either of the
Health.
following:
(iv) Outsidehelper. Where welding
(i) Hoods. Freely movable hoods
operations are- carried on in confined
intended to be placed by the welder as spaces and where welders and helpers
near as practicable to the work being
are provided with hose masks, hose
welded and provided with a rate of air masks with blowers'or self-contained
flow sufficient to maintain a velocity in breathing equipment approved by the
the direction of the hood of 100 linear
Mine Safety and Health Administration
vvv 000012981
13700
Federal Register / Vol. 55, No. 70 / Wednesday, April 11. 1990 / Rules and Regulations
and the National Institute for
necessary by local exhaust ventilation operations will reach or be drawn into
Occupational Safety and Health, a
or airline respirators.
the atmosphere surrounding any
worker shall be stationed on the outside
(8) Beryllium. Welding or cutting
welding operation. In addition,
of such confined spaces to insure the
indoors, outdoors, or in confined spaces trichloroethylene and perchlorethylene
safety of those working within.
involving beryllium-containing base or should be kept out of atmospheres
(v) Oxygen for ventilation. Oxygen
filler metals shall be done using local
penetrated by the ultraviolet radiation
shall never be used for ventilation. (5) Fluorine compounds--(i) General.
In confined spaces, welding or cutting
involving fluxes, coverings, or other
materials which contain fluorine
exhaust ventilation and airline respirators unless atmospheric tests
under the most adverse conditions have
established that the workers' exposure is within the acceptable concentrations
of gas-shielded welding operations. (12) Cutting of stainless steels.
Oxygen cutting, using either a chemical
flux or iron powder or gas-shielded arc cutting of stainless steel, shall be done
compounds shall be done in accordance defined by 1910.1000 of this part. In all using mechanical ventilation adequate
with paragraph (c)(4) of this section. A cases, workers in the immediate vicinity to remove the fumes generated.
fluorine compound is one that contains of the welding or cutting operations
(13) First-aid equipment. First-aid
fluorine, as an element in chemical
shall be protected as necessary by local equipment shall be available at all
combination, not as a free gas.
exhaust ventilation or airline
times. All injuries shall be reported as
(ii) Maximum allowable
respirators.
soon as possible for medical attention.
concentration. The need for local
(9) Cadmium--(i) General. Welding or First aid shall be rendered until medical
exhaust ventilation or airline respirators cutting indoors or in confined spaces
attention can be provided.
c
for welding or cutting in other than confined spaces will depend upon the individual circumstances. However, experience has shown such protection to
be desirable for fixed-location production welding and for all
production welding on stainless steels. Where air samples taken at the welding location indicate that the fluorides liberated are below the maximum
allowable concentration, such protection is not necessary.
(6) Zinc--(i) Confined spaces. In
confined spaces welding or cutting involving zinc-bearing base or filler metals or metals coated with zincbearing materials shall be done in
accordance with paragraph (c)(4) of this section.
(ii) Indoors. Indoors, welding or cutting involving zinc-bearing base or filler metals coated with zinc-bearing
materials shall be done in accordance with paragraph (c)(3) of this section.
(7) Lead--(i) Confined spaces. In confined spaces, welding involving lead-
base metals (erroneously called lead-
involving cadmium-bearing or cadmiumcoated base metals shall be done using local exhaust ventilation or airline respirators unless atmospheric tests under the most adverse conditions have established that the workers' exposure is within the acceptable concentrations defined by 5 1910.1000 of this part. Outdoors such operations shall be done using respiratory protective equipment such as fume respirators approved by the Mine Safety and Health Administration and the National
Institute for Occupational Safety and Health, pursuant to the provisions of 30 CFR part 11. for such purposes.
(ii) Confined space. Welding (brazing) involving cadmium-bearing filler metals shall be done using ventilation as prescribed in paragraph (c)(3) or (c}(4) of this section if the work is to be done in a confined space.
(10) Mercury. Welding or cutting indoors or in a confined space involving metals coated with mercury-bearing materials including paint, shall be done
using local exhaust ventilation or airline
(d) industrial applications--(1) Transmission pipeline--(i) General The requirements of paragraphs (b) and (c) of this section and 1910.254 of this part shall be observed.
(ii) Field shop operations. Where field shop operations are involved for fabrication of fittings, river crossings, road crossings, and pumping and compressor stations the requirements of
paragraphs (a), (b). and (c) of this section and 5 1910.253 and 1910.254 of this part shall be observed.
(iii) Electric shock. When arc welding is performed in wet conditions, or under conditions of high humidity, special protection against electric shock shall be supplied.
(iv) Pressure testing. In pressure testing of pipelines, the workers and the public shall be protected against injury by the blowing out of closures or other
pressure restraining devices. Also, protection shall be provided against expulsion of loose dirt that may have
become trapped iirthe pipe.
burning) shall be done in accordance
respirators unless atmospheric tests
(v) Construction standards. The
with paragraph (c)(4) of this section.
under the most adverse conditions have welded construction of transmission
(ii) Indoors. Indoors, welding
established that the workers' exposure pipelines shall be conducted in
involving lead-base metals shall be done is within the acceptable concentrations accordance with the Standard for
in accordance with paragraph (c)(3) of defined by 1910.1000 of this part.
Welding Pipe Lines and Related'
this section.
Outdoors such operations shall be done Facilities. API Std. 1104--1968.
(iii) Local ventilation. In confined
using respiratory protective equipment
(vi) Flammable substance lines. The
spaces or indoors, welding or cutting
approved by the Mine Safety and Health connection, by welding, of branches to
involving metals containing lead, other Administration and the National
pipelines carrying flammable substances
than as an impurity, or involving metals Institute for Occupational Safety and
shall be performed in accordance with
coated with lead-bearing materials,
Health, pursuant to the provisions of 30 Welding or Hot Tapping on Equipment
a including paint shall be done using local CFR part 11. for such purposes.
Containing Fiammables, API Std. PSD
h
exhaust ventilation or airline respirators. Outdoors such operations
(11) Cleaning compounds--(i) Manufacturer's instructions. In the use
No. 2201--1963. (vii) X-ray inspection. The use of X-
shall be done using respiratory
of cleaning materials, because of their
rays and radioactive isotopes for the
protective equipment approved by the
possible toxicity or flammability,
inspection of welded pipeline joints
Mine Safety and Health Administration appropriate precautions such as
shall be carried out in conformance with
and the Na.ional Institute for
manufacturers instructions shall be
the American National Standard Safety
Occupational Safety and Health,
followed.
Standard for Non-Medical X-ray and
pursuant to the provisions of 30 CFR
(ii) Degreasing. Degreasing and other Sealed Gamma-Ray Sources. ANSI
part 11. for such purposes. In all cases, cleaning operations involving
Z54.1--1963.
workers in the immediate vicinity of the chlorinated hydrocarbons shall be so
(2) Mechanical piping systems--(i)
cutting operation shall be protected as located that no vapors from these
General. The requirements of
VVV 000012982
Federal Register / Vol.,55, No, 70 / Wednesday. April 11. 1990 f Rules and Regulations 13701
paragraphs (a), (b). and (c) of this section and || 1910,253 and 1910.254 of
this part shall be observed. (iij X-ray inspection. The use ofX-
rays and radioactive isotopes for the
Inspection of welded piping joints- shall be tn conformance with the American National Standard Safety Standard for Non-Medical X-ray and Sealed GammaRay Sources, ANSI 54.1--1963.
9 1910.253 Oxygen-fuel gas wetcQng end cutting.
(aj Generalrequirements.--(1) Flammable mixture. Mixtures of fuel gases and air or oxygen may be
explosive and shall be guarded against
No device or attachment facilitating or permitting mixtures of air or oxygen with flammable gases prior to consumption, except at the burner or ui a standard torch, ahaflbe allowed
unless approved for the purpose. (2) Maximum pressure. Under no
condition shall acetylene be generated,, piped (except in approved cylinder
manifolds) or utilized at a pressure In excess of 15 psig (103 kPa gauge . pressure) or 30 psia (206 kPa absolute). (The 30 psia (206 kPa absolute) limit is
intended to prevent unsafe use of acetylene in pressurized chambers such as caissons, underground excavations or tunnel construction.) This requirement is
not intended to apply to storage of acetylene dissolved in a suitable solvent in cylinders manufactured and maintained according to U.S. Department of Transportation requirements, or to acetylene for chemical use. The use of liquid acetylene shall be prohibited.
(3) Apparatus. Only approved
apparatus such as torches, regulators cr pressure-reducing valves, acetylene
generators, and manifolds shall be used. (4) Personnel. Workmen in charge of
the oxygen or fuel-gas supply equipment including generators, and xygen or fuel-gas distribution piping systems shall be instructed and judged competent by their employers for this important work before being left in charge. Rules and Instructions covering the operation and maintenance of ?xygen or fuef-gas supply equipment including generators, and oxygen or fuel-gas distribution piping systems shall be readily available.
(b) Cylinders andcontainers--(If Approvaland marking, (i) All portable
flinders used for the storage and 8hipmenr of compressed" gases shall be
constructed and maintained In Accordance with the regulations of the J^S. Department of Transportation, 49 CFR parts 171-179.
(ii) Compressed gas cylinders shall be 'egibly marked, for the purpose of
identifying the gas content, with either the chemical or the trade name of the
gas. Such marking shall be by means of stenciling, stamping, or labeling, and shall not be readily removable.
Whenever practical, the marking shall be located on the shoulder of the cylinder. This method conforms to the American National Standard Method for
Marking Portable Compressed Gas Containers to Identifynhe Material Contained. ANSI Z48.1--1954.
(iii) Compressed gas cylinders shall be equipped with connections complying with the American National Standard Compressed Gas Cylinder Valve Outlet and Inlet Connections, ANSI B57.I-- 1965.
(iv) All cylinders with a water weight
capacity of over 30 pounds (13.6 kg) shall be equipped with means of connecting a valve protection cap or with a collar or
recess to protect the valve. (2) Storage of cylinders--general, (i)
Cylinders shall be kept away from radiators and other sources of heat.
(ii) Inside of buildings, cylinders shall be stored in a.well-protected, wellventilated, dry location, at least 20 feet (6.1 m) from highly combustible materials such as oil or excelsior. Cylinders should be stored in definitely assigned places away from elevators, stairs, or gangways. Assigned storage spaces 9hal! be located where cylinders will not be knocked over or damaged by passing or falling objects, or subject to tampering by unauthorized persons. Cylinders shall not be kept in unvsntilated enclosures such as lockers and cupboards.
(fii) Empty cylinders shall have their valves closed.
(iv) Valve protection caps, where cylinder is designed to accept a cap, shall always be in place, band-tight, except when cylinders are in use or connected for use.
(3) Fuel-gas cylinder storage. Inside a building, cylinders, except those in actual use orattached ready for use, shall be limited to a total gas capacity of
2,000 cubic feet (56 m3) or 300 pounds (135.9 kg) of liquefied petroleum gas.
(i) For storage in excess of 2,000 cubic feet (56 m3) total gas capacity of cylinders or 300 (135.9 kg) pounds of liquefied petroleum gas. a separate room orcompartment conforming to the requirements specified in paragraphs '
(fl(6){i)(H) and (f)(6)(i)(I) of this section shall be provided, or cylinders shall be kept outside or in a special building.
Special buildings, rooms or compartmenls shall have no open flame for heating1 or lighting and shall be well
ventilated. They may also be used for
storage ofearemm carbide in quantities not to exceed 600 (271.8 kg) pounds.
when contained in metal containers
complying with paragraphs (g)(1)(i) and
(g)(1)(H) of this section.
(ii) Acetylene cylinders shall be stored valve end up.
(4) Oxygen storage, (i) Oxygen cylinders shall not be stored near highly combustible material, especially oil and grease; or near reserve stocks of carbide
and acetylene or other fuel-gas cylinders, or near any other substance likely to cause or accelerate Are; or in an acetylene generatorcompartment.
(ii) Oxygen cylinders stored in outside generator houses shall be separated
from the generator or carbide storage rooms by a noncombustible partition having a Gre-resistance rating of at least
1 hour. This partition shall be without openings and shall be gastight.
(iii) Oxygen cylinders in storage shall be separated from fuel-gas cylinders or combustible materials (especially oil or grease), a minimum distance of 20 feet (6.1 m) or by a noncombustible barrier at least 5 feet (1-5 m) high having a fireresistance rating of at least one-half hour.
(iv) Where a liquid oxygen system is to be used to supply gaseous oxygen for welding or cutting and the system has a storage capacity of more than 13,000 cubic feet (364 m3) of oxygen (measured
at 14.7 psia (101 kPa) and 70 "F (21.1 C]J. connected in service or ready for
service, or more than 25.006 cubic feet (700 m3) of oxygen (measured at 14.7 psia (101 kPa) and 70 *F (21.1 X)),. including unconnected reserves on hand at the site, it shall comply with the provisions of the Standard for Bulk Oxygen Systems at Consumer Sites, NFPA No. 566--1965.
(5) Operating procedures, (i) Cylinders, cylinder valves, couplings, regulators, hose, and apparatus shaU be kept free from oily or greasy substances. Oxygen cylinders or apparatus shall not be handled with oily hands or gloves. A jet of oxygen must never be permitted to
strike an oily surface, greasy clothes, or enter a fuel oil or other storage tank.
(ii) (A) When transporting cylinders by a crane orderrick, a cradle. boat or suitable platform shall be used-Slings or electric magnets shall not be used for
this purpose. Valve-protection caps, where cylinder is designed to accept a cap, shall always be in place.
(B) Cylinders shall not be droppedor struck or permitted to strike each other violently.
(C) Valve-protection caps shall not be used for lifting cylinders from one vertical position to another. Bars slia 11 not be used under valves or valve-
protection caps to pry cylinders loosewhen frozen, to the ground or otherwise
Wv oooi39sj
13702 Federal Register / Vol. 55, No. 70 / Wednesday, April 11. 1990 / Rules and Regulations
fixed: the use of warm (not boiling) water is recommended. Valve-protection
caps are designed to protect cylinder valves from damage.
(D) Unless cylinders are secured on a special truck, regulators shall be removed and valve-protection caps, when provided for, shall be put in place before cylinders are moved.
(E) Cylinders not having fixed hand wheels shall have keys, handles, or
rionadjustable wrenches on valve stems while these cylinders are in service. In multiple cylinder installations only one key or handle is required for each
manifold. (F) Cylinder valves shall be closed
before moving cylinders. (G) Cylinder valves shall be closed
when work is finished. (H) Valves of empty cylinders shall be
closed. (I) Cylinders shall be kept far enough
away from the actual welding or cutting
operation so that sparks, hot slag, or
flame will not reach them, or fire- resistant shields shall be provided.
(J) Cylinders shall not be placed where they might become part of an
electric circuit. Contacts with third rails, trolley wires, etc., shall be avoided.
Cylinders shall be kept away from
radiators, piping systems, layout tables, etc., that may be used for grounding electric circuits such as for arc welding
machines. Any practice such as the tapping of an electrode against a cylinder to strike an arc shall be prohibited.
(K) Cylinders shall never be used as rollers or supports, whether full or empty.
(L) The numbers and markings stamped into cylinders shall not be tampered with.
(M) No person, other than the gas supplier, shall attempt to mix gases in a cylinder. No one, except the owner of the cylinder or person authorized by
him, shall refill a cylinder. (N) No one shall tamper with safety
devices in cylinders or valves. (O) Cylinders shall not be dropped or
otherwise roughly handled. (P) Unless connected to a manifold,
oxygen from a cylinder shall not be used
without first attaching an oxygen
regulator to the cylinder valve. Before connecting the regulator to the cylinder valve, the valve shall be opened slightly
for an Instant and then closed. Always stand to one side of the outlet when
opening the cylinder valve. (Q) A hammer or wrench shall not be
used to open cylinder valves. If valves cannot be opened by hand, the supplier
shall be notified. (R) (I) Cylinder valves shall not be
tampered with nor should any attempt
be made to repair them. If trouble is
stem of the valve while the cylinder is in
experienced, die supplier should be sent use so that the fuel-gas flow can be
a report promptly indicating the
quickly turned off in case of emergency.
character of the trouble and the
In the case of manifolded or coupled
cylinder's serial number. Supplier's
cylinders at least one such wrench shall
instructions as to its disposition shall be always be available for immediate use.
followed.
(c) Manifolding of cylinders--(1) Fuel-
[2] Complete removal of the stem from gas manifolds, (i) Manifolds shall be
a diaphragm-type cylinder valve shall
approved either separately for each
be avoided.
component part or as an assembled unit.
(iii)(A) Fuel-gas cylinders shall be
(ii) Except H9 provided in paragraph
placed with valve end up whenever they (c)(l)(iii) of this section fuel-gas
are in use. Liquefied gases shall be stored and shipped with the valve end
cylinders connected to one-manifold inside a building shall be limited to a
up. . (B) Cylinders shall be handled carefully. Rough handling, knocks, or falls are liable to damage the cylinder, valve or safety devices and cause leakage.
(C) Before connecting a regulator to a
cylinder valve, the valve shall be opened slightly and closed immediately, llie valve shall be opened while standing to one side of the outlet: never
in front of it. Never crack a fuel-gas cylinder valve near other welding work or near sparks, flame, or other possible
sources of ignition. (D) Before a regulator is removed from
a cylinder valve, the cylinder valve shall be closed and the gas released from the
regulator. (E) Nothing shall be placed on top of
an acetylene cylinder when in use which
may damage the safety device or interfere with the quick closing of the
valve. (F) If cylinders are found to have
leaky valves or fittings which cannot be stopped by closing of the valve, the cylinders shall be taken outdoors away from sources of ignition and slowly
emptied. (G) A warning should be placed near
cylinders having leaking fuse plugs or other leaking safety devices not to approach them with a lighted cigarette or other source of ignition. Such cylinders should be plainly tagged: the supplier should be promptly notified and his instructions followed as to their
return. (H) Safety devices shall not be
tampered with. (I) Fuel-gas shall never be used from
cylinders through torches or other devices equipped with shutoff valves without reducing the pressure through a suitable regulator attached to the
cylinder valve or manifold. ([] The cylinder valve shall always be
opened slowly.
total capacity not exceeding 300 pounds
(135.9 kg) of liquefied petroleum gas or 3.000 cubic feet (84 m 8) of other fuelgas. More than one such manifold with
connected cylinders may be located in the same room provided the manifolds are at least 50 feet (15 m] apart or
separated by a noncombustible barrier at least 5 feet (1.5 m) high having a fireresistance rating of at least one-half
hour.
(iii) Fuel-gas cylinders connected to one manifold having an aggregate capacity exceeding 300 pounds (135.9
kg) of liquefied petroleum gas or 3.000 cubic feet (84 m a) of other fuel-gas shall be located outdoors, or in a separate building or room constructed in
accordance with paragraphs (f)(6)(i)(H) and (f)(6)(i)(I) of this section.
(iv) Separate manifold buildings or
rooms may also be used for the storage of drums of calcium carbide and cylinders containing fuel gases as provided in paragraph (b)(3) of this section. Such buildings or rooms shall have no open flames for heating or lighting and shall be well-ventilated.
(v) High-pressure fuel-gas manifolds shall be provided with approved pressure regulating devices.
(2) High-pressure oxygen manifolds (for use with cylinders having a Department of Transportation service
pressure above 200psig (1.36 MPa)), (i)
Manifolds shall be approved either separately for each component part or as an assembled unit
(ii) Oxygen manifolds shall not be located in an acetylene generator room. Oxygen manifolds shall be separated
from fuel-gas cylinders or combustible materials (especially oil or grease), a minimum distance of 20 feet (6.1 m] or by a noncombustible barrier at least 5 feet (1.5 m) high having a fire-resistance .
rating of at least one-half hour. (iii) Except as provided in paragraph
(K) An acetylene cylinder valve shall (c)(2)(iv) of this section, oxygen
not be opened more than one and one- cylinders connected to one manifold half turns of the spindle, and preferably ' shall be limited to a total gas capacity of
no more than three-fourths of a turn. (L) Where a special wrench is
8.000 cubic feet (168 m 9), More than one such manifold with connected cylinders
required it shall be left in position on the may be located in the same room
VVV 000012984
Federal Register / Vol. 55, No. 70 / Wednesday, April 11, 1990 / Rules and Regulations 13703
provided the manifolds are at least 50
Low-Pressure Manifold
(iv) The aggregate capacity of fuel-gas
feet (15 m) apart or separated by a
noncombustible barrier at least 5 feet (1.5 m) high having a fire-resistance rating of at least one-half hour.
(iv) An oxygen manifold, to which cylinders having an aggregate capacity of more than 6,000 cubic feet (168 m 3) of oxygen are connected, should be located outdoors or in a separate noncombustible building. Such a manifold, if located inside a building
having other occupancy, shall be located in a separate room of noncombustible construction having a fire-resistance rating of at least one-half hour or in an
area with no combustible material within 20 feet (6.1 m] of the manifold.
(v) An oxygen manifold or oxygen
bulk supply system which has storage capacity of more than 13,COO cubic feet (364 m 3] of oxygen (measured at 14.7 psia (101 kPa) and 70 *F (21.1 *C)), connected in service or ready for service, or more than 25,000 cubic feet (700 m a) of oxygen (measured at 14.7 psia (101 kPa) and 70 "F (21.1 '0), including unconnected reserves on hand
at the site, shall comply with the provisions of the Standard for Bulk Oxygen Systems at Consumer Sites,
NFPA No. 568-1965.
(vi) High-pressure oxygen manifolds shall be provided with approved pressure-regulating devices.
(3) Low-pressure oxygen manifolds (for use with cylinders having a Department of Transportation service
pressure not exceeding 200 psig (1.36 MPa)), (i) Manifolds shall be of substantial construction suitable for use
with oxygen at a pressure of 250 psig (1.7 MPa). They shall have a minimum bursting pressure of 1,000 psig (6.9 MPa)
and shall be protected by a safety relief device which will relieve at a maximum pressure of 500 psig (3.4 MPa). DOT4L200 cylinders have safety devices
which relieve at a maximum pressure of 250 psig (1.7 MPa) [or 235 psig (1.6 MPa) If vacuum insulation is used).
Do Not Connect High-Pressure Cylinders Maximum Pressure--250 psig (1.7 MPa)
(4) Portable outlet headers, (i) Portable outlet headers shall not be used indoors except for temporary service where the conditions preclude a direct supply from outlets located on the service piping system.
(ii) Each outlet on the service piping from which oxygen or fuel-gas is withdrawn to supply a portable outlet
header shall be equipped with a readily accessible shutoff valve.
(iii) Hose and hose connections used for connecting the portable outlet header to the service piping shall comply with paragraph (e)(5) of this section.
(iv) Master shutoff valves for both
oxygen and fuel-gas shall be provided at the entry end of the portable outlet' header.
(v) Portable outlet headers for fuel-gas service shall be provided with an approved hydraulic back-pressure valve installed at the inlet and preceding the service outlets, unless an approved
pressure-reducing regulator, an approved back-flow check valve, or an approved hydraulic back-pressure valve is installed at each outlet. Outlets
provided on headers for oxygen service may be fitted for use with pressurereducing regulators or for direct hose connection.
(vi) Each service outlet on portable outlet headers shall be provided with a valve assembly that includes a
detachable outlet seal cap, chained or otherwise attached to the body of the valve.
(vii) Materials and fabrication procedures for portable outlet headers shall comply with paragraphs (d)(l),(d)(2), and (d)(5) of this section.
(viii) Portable outlet headers shall be provided with frames which will support
the equipment securely in the correct
operating position and protect them from damage during handling and operation.
cylinders connected to a portable manifold inside a building shall not exceed 3.000 cubic feet (84 m 3) of gas.
(v) Acetylene and liquefied fuel-gas cylinders shall be manifolded in a vertical position.
(vi) The pressure in the gas cylinders connected to and discharged simultaneously through a common manifold shall be approximately equal.
(d) Service piping systems--(1) Materials and design. (i)(A) Piping and fittings shall comply with section 2, Industrial Gas and Air Piping Systems, of the American National Standard Code for Pressure Piping ANSI B31.1, 1967, insofar as it does not conflict with paragraphs (d)(l)(i)(A)(7) and (d)(l)(i)(A)(2) of this section:
(1) Pipe shall be at least Schedule 40 and fittings shall be at least standard weight in sizes up to and including 6inch nominal.
(2) Copper tubing shall be Types K or L in accordance with the Standard Specification for Seamless Copper
Water Tube, ASTM B88-68a. (B) Piping shall be steel, wrought iron,
brass or copper pipe, or seamless copper, brass or stainless steel tubing, except as provided in paragraphs (d)(l)(ii) and (d)(l)(iti) of this section.
(ii) (A) Oxygen piping and fittings at pressures in excess of 700 psi (4.8 MPa), shall be stainless steel or copper alloys.
(B) Hose connections and hose
complying with paragraph (e)(5) of this section may be used to connect the outlet of a manifold pressure regulator to piping providing the working pressure of the piping is 250 psi (1.7 MPa) or less and the length of the hose does not exceed 5 feet (1.5 m). Hose shall have a minimum bursting pressure of 1,000 psig (6.8 MPa).
(C) When oxygen is supplied to a
service piping system from a lowpressure oxygen manifold without an intervening pressure regulating device,
(ii) Hose and hose connections subject to cylinder pressure shall comply with paragraph (e)(5) of this section. Hose shall have a minimum bursting pressure of 1,000 psig (6.0 MPa).
(iii) The assembled manifold including leads shall be tested and proven gas-
(5) Manifold operation procedures, (i) Cylinder manifolds shall be installed under the supervision of someone familiar with the proper practices with
reference to their construction and use.
(ii) All manifolds and parts used in methods of manifolding shall be used
the piping system shall have a minimum design pressure of 250 psig (1.7 MPa). A pressure regulating device shall be used at each station outlet when the
connected equipment is for use at pressures less than 250 psig (1.7 MPa).
(iii) (A) Piping for acetylene or
tight at a pressure of 300 psig (2.04 MPa). only for the gas or gases for which they
The fluid used for testing oxygen
are approved.
acetylenic compounds shall be steel or wrought iron.
manifolds shall be oil-free and not
(iii) When acetylene cylinders are
(B) Unalloyed copper shall not be
combustible.
coupled, approved flash arresters shall used for acetylene or acetylenic
(iv) The location of manifolds shall
be installed between each cylinder and compounds except in listed equipment.
comply with paragraphs (c)(2)(ii),
the coupler block. For outdoor use only,
(2) Piping joints, (i) Joints in steel or
1
(c){2](iii). (c)(2)(iv), and (c)(2)(v) of this section.
and when the number of cylinders
wrought iron piping shall be welded,
coupled does not exceed three, one flash threaded or flanged. Fittings, such as
(v) The following sign shall be
arrester installed between the coupler
ells, tees, couplings, and unions, may be
conspicuously posted at each manifold: block and regulator is acceptable.
rolled, forged or cast steel, malleable
V\/V ooi29S5
13704 Federal Register / Vol. 55, No. 70 / Wednesday, April 11,1990 ,/ Rules and Regulations
iron or nodular iron. Gray or white cast
iron fittings are prohibited. (ii) Joints in braes or-copper pipe shall
he welded,"brazed, threaded or flanged. If of the socket type, they.ghall be
brazed withsilver-brazing alloyor similar high melting point{not less than 6Q01F (42r?CJ)iillfirimetaL
{iii) JointsinseamlesSsCopper, brass,
or stainless-steel tubing-shell be approved gas tubing fittings-orthejoints shall be brazed. If of the socket type, they shall be brazed with silver-brazing alloy or.similarlugh melting point (not lessthanS00*.F(427*C))-fiiler-metal.
(3) Installation, ,(i) Distributionlines
shall be.installed andmaintained ina safe-operating-condition.
(ii) All pipingshall be run as directly as practicable, protected against
physical damage, proper allowance beingmade for expansion and contraction, jarring and vibration. Pipe
laid underground in earth shall he located below.the frost line and protected against corrosion. After
assembly,piping shall be thoroughly blown out with air..nitrogen, or carbon
dioxide to remove foreign materials. For oxygen piping, only oil-free air. oil-free nitrogen, or oil-free carbon dioxide shall be used.
(iii) Only piping which has been
welded or brazed shall be installed in tunnels, trenches or ducts. Shutoff valves shall be located outside such conduits. Oxygen piping may be placed in the same tunnel, trench or duct with fuel-gas pipelines, provided there is good natural or forced ventilation. -
(iv) Low points in piping carrying
moist gas shall be drained into drip pots constructed so as to permit pumping or draining out the condensate at necessary intervals. Drain valvesshall be installed for this-purpose having outlets normally closed with screw.caps or plugs. No open end valves or
petcocks shall be used, except that in
drips located out of doors, underground,
and not readily accessible, valves may be used at such points if they are equippedwith means touecure them in
the closed position.'Pipes leading to the surfaced the ground shall bexased or jacketedwhere necessary to prevent
loosening or breaking. (v) Gas cocks-or valves shall be
provided for-all'buildings at points where they will be readily accessible for shutting off the gas supply to these buildings in any emergency.There shall also be provided a shutoff valve in .the discharge linefrom the generator, gas
holder.manifold or other source of
supply. (vi) Shutoff valvEsahall not be
Installed in safety relief tines in-such a manner that the safety relief device can be rendered ineffective.
{vii} Fittings and lengths of;pipe shall
be examinedinternally before assembly and.if necessary fepedfromscale or dirt Oxygen piping and fittings shall be washed out witha suitable solution which will effectively remove grease _
and dirt but will not react with oxygen. Hot water solutions of caustic soda or trisodium phosphate areeffective cleaning agents for this purpose.
(viii) Piping shall be thoroughly blown
out after assembly to remove foreign materials. For oxygen piping, oil-free air, oil-free nitrogen, or oil-free carbon
dioxide shall be used..For other piping, air or inert gas may be used.
(ix) When flammable gas lines or other parts of equipment are being purged of air or gas, open lights or other
sources of ignition shall not be permitted near uncapped openings.
(x) No welding or cutting.shall be performed on an.aceiylene or oxygen
pipeline, including the attachment of hangers or.supports. until the line has been purged..Only oil-Iree air. oil-free
nitrogen.'or oil-free carbon .dioxide shall
be used to purge-oxygen lines.
(4) Painting andsigns, (i) Underground pipe and tubing and
outdoor ferrouspipe and tubing shall be covered or painted with a suitable material forproteclionagainst corrosion.
{ii} Aboveground piping systems shall be marked in accordance with the American-NationalStandard Scheme for the Identification ofitiping Systems,
ANSI A13.1-195& (iii) Station outlets shall be marked to
indicate the name ofthe gas.
{5} Testing, ji) Pipmg systems shall be
tested and proved gastight atlft times the maximum operating pressure, and shall be thoroughly purged of air before being placed in service. The material
used for testing oxygen lines shallbe oil free and noncombustible. :Flames shall not be used'to detectleak*.
(ii) When flammablegas lines orolher parts of equipment are being purged of air or gas. sources of ignition shall not be permitted-near uncapped openings.
(e) Protective equipment, hose, -and regulators--(1) General. -Equipment shall be installed and used only in-the service for which it is approved and as recommended by the manufacturer.
(2) Pressure relief devices. Service piping systems shall beprotected by pressure relief devices-set to function at notmore than the-design pressure of the systems anddischarging upwards to a safe location.
(3) Pipingprotective equipment (i)
The fuel-gas and oxygen piping systems. Including portable-outlet headers shall incorporate the protective equipment shown in Figures Q-l. Q-2, and Q-^. -When only a portion of a fuel-gas system is to be used with oxygen, only that portion need comply with this paragraph (e)(3)(i).
VVV 000012986
Federal Register / Vol. 55. No. 70 / Wednesday, April 11, 1990 / Rules and Regulations 13705
LEGEND
Pf--Protective equipment in fuel gas piping S,--Backflow prevention device(s)
Vf---Fuel gas station outlet valve
at fuel gas station outlet
v0--oxygen station outlet valve ts.
S0--Backflow prevention device(s) at oxygen station outlet
(ii) Approved protective equipment (designated Pp in Figures Q-l, Q-2, and Q--3) shall be installed in fuel-gas piping to prevent:
(A) Backflow of oxygen into the fuelgas supply-system;
(B) Passage of a'flash back into the fuel-gas supply system: and
(C) Excessive back pressure of oxygen in the fuel-gas supply system. The three functions of the protective equipment fnay be combined in one device or may be provided by separate devices.
(J) The protective equipment shall be
located in the main supply line, a's in
figure Q-l or at the head of each branch bne, as in Figure Q-2 or at each location ^here fuel-gas is withdrawn, as in figure Q-3. Where branch lines are of 2jnch pipe size or larger or of substantial length, protective equipment (designated
as Pf) shall be located as shown in either Q-2 and Q-3.
(2) Backflow protection shall be provided by an approved device that will prevent oxygen from flowing into the fuel-gas system or fuel from flowing into the oxygen system (see Sr, Figures Q-l and Q-2).
(J) Flash-back protection shall be provided by an approved device that will prevent flame from passing into the fuel-gas system.
(/) Back-pressure protection shall be provided by an approved pressure-relief device set at a pressure not greater than
the pressure rating of the backflow or
the flashback protection device, whichever is lower. The pressure-relief device shall be located on the downstream side of the backflow and
flashback protection devices. The vent from the pressure-relief device shall be at least as large as the relief device inlet
and shall be installed without low points that may collect moisture. If low points are unavoidable, drip pots with drains closed with screw plugs or caps shall be installed at the low points. The vent terminus shall not endanger personnel or property through gas discharge: shall be located away from ignition sources; and shall terminate in a hood or bend.
(iii) If pipeline protective equipment incorporates a liquid, the liquid level shall be maintained, and a suitable antifreeze may be used to prevent freezing.
(iv) Fuel gas for use with equipment
not requiring oxygen shall be withdrawn upstream of the piping protective devices.
(4) Station outietprotective equipment (i) A check valve, pressure regulator, hydraulic seal, or combination of these devices shall be provided at
VVV 000012987
13706 Federal Register / Vol. 55, No. 70 f Wednesday. April 11. 1990 / Rules and Regulations
each station outlet, including those on portable headers, to prevent backflow,
as shown In Figures Q-l, Q-2, and Q-3 and designated as Sr and SQ.
(ii) When approved pipeline protective equipment (designated PF) is located at the station outlet as in Figure Q-3. no additional check valve, pressure regulator, or hydraulic seal is required.
(iii) A shutoff valve (designated Vr and V0) shall be installed at-each
station outlet and shall be located nn the upstream side of other station outlet equipment.
(iv) If the station outlet is equipped
with a detachable regulator, the outlet shall terminate in a union connection that complies with the Regulator Connection Standards. 1956. Compressed Gas Association.
(v) If the station outlet is connected
directly to a hose, the outlet shall terminate in:a union connection complying with the Standard Hose
Connection Specifications, 1957, Compressed Gas Association.
(vi) Station outlets may terminate in pipe threads to which permanent connections are to be made.-such as to a machine.
(viij Station outlets shall be equipped with a detachable outlet seal cap secured in place. This cap shall be used
to seal the outlet except when a hose, a regulator, or piping is attached.
(viii) Where station outlets are'
equipped with approved backflow and flashback protective devices, as many as four torches may be supplied from one station outlet through rigid piping, .provided each outlet from such piping is
equipped with a shutoff valve and provided the fuel-gas capacity of any one torch does not exceed 15 cubic feet (0.42 m3) per hour. This paragraph .(e)(4){viii) does not apply to machines.
(5) Hose ondhose connections, (i) Hose for oxy-fuel gas service shall comply with the Specification for Rubber Welding Hose. 1958,
-Compressed Gas Association and Rubber Manufacturers Association.
(ii} When parallel lengths -of oxygen
end-acetylene hose are taped together -for convenience and to prevent tangling, not more than 4 inches (1(L2 cm) out of 12 inches (30.5 cm) shall be covered by `tape.
~ (iii) Hose connections shall comply with the Standard Hose Connection Specifications. 1957, Compressed Gas Association.
(iv) Hose connections shall be clamped or otherwise securely fastened in a manner that will withstand, without leakage, twice the pressure to which
they are normally subjected in service, but in no case less than a pressure of
-300 psi (2.04 MPa). Oil-free air-or an oilTree inert gas shall be used for the test.
'.(v) Hose showing leaks, bums, worn -places, or other defects rendering it unfit for service shall be repaired or replaced.
(6) Pressure-reducing regulators, (i) Pressure-reducing regulators shall be used only for the gas and pressures for which they are intended. The regulator inlet connections shall comply with Regulator Connection Standards, 1958, Compressed Gas Association.
(ii) When regulators or parts of . regulators, including gages, needxepair. the work shall be performed by skilled mechanics who have been properly instructed.
(iii) Gages on oxygen regulators shall be marked "USE NO OIL"
(iv) Union nuts and connections on regulators shall be inspected before use
to detect faulty Beats which may cause leakage of gas when the regulators are attached to the cylinder valves.
(f) Acetylene generators--(1) Approval and marking, (i) Generators shall be of approved construction and shall be plainly marked with the maximum rate of acetylene in cubic feet per hour for which they are designed; the weight and size of carbide necessary for a single charge; the manufacturer's name and address; and the name or
number of the type of generator. (ii) Carbide shall be of the size
marked on the generator nameplate. (2) Rating and pressure limitations, (i)
The total hourly output of a generator shall not exceed the rate for which it is approved and marked. Unless specifically approved for higher ratings, carbide-feed generators shall be rated at 1 cubic foot (0.028 m3) per hour per pound of carbide required for a single complete charge.
(ii) Relief valves shall be regularly operated to insure proper functioning. Relief valves for generating chambers shall be set to open at a pressure not in
excess of 15 psig (103 kPa gauge pressure). Relief valves for hydraulic bade pressure valves 6hall be set to pen at a pressure not in excess of 20 psig (137 kPa gauge pressure).
(iii) Nonautomatic generators shall not be used for generating acetylene at pressures exceeding 1 psig (7JcPa gauge pressure), and all water overflows shall
be visible. '(3) Location. The space around the
generator shall be ample foriree. unobstructed operation and
maintenance and shall permit ready
adjustment and charging. {4} Stationary acetylene generators
(automatic andnonautomatic). (i)(A)
The foundation shall be so arranged that the generator will be level and so-that no excessive strain will be placed on the
-generator or Us connections. Acetylene
generators shall be grounded.
(B) Generators shall be placed where
water will not freeze. The use of .
common salt (sodium chloride] or other
corrosive chemicals for protection
against freezing is not permitted. (For
heating systems see paragraph (f)(6](iii)
of this section.)
(C) Except when generators are
prepared in accordance with paragraph
(f](7)(v) of this section, sources-of
ignition shall be prohibited in outside
generator houses or inside generator
rooms.
(D) Water shall not be supplied
through a continuous connection to the
generator except when the generator is
provided with an adequate open
overflow or automatic water shutoff
which will effectively prevent overfilling
of the generator. Where a
noncontinuous connection is used, the
supply line shall terminate at a point not
less than 2 inches (5 cm) above the
regularly provided opening for filling so that the water can. be observed as it
enters the generator.
(E) Unless otherwise specifically
approved, generators shall not be Gtted
.with continuous drain connections
leading to sewers, but shall discharge
through an open connection into a
suitably vented outdoor receptacle or
residue pit which may have such
connections. An open connection for the
sludge drawoff is desirable to enable the generator operator to observe leakage of
generating water from the drain valve or
sludge cock.
(ii)(A) Each generator shall be
provided with a vent pipe.
(B) The escape or relief pipe shall be
rigidly installed without traps and so
that any condensation will drain back to the generator.
(C) The escape or relief pipe shall be
carried fulksize to a suitable point
outside the building. It shall terminate in
a hood or bend located at least 12 feet
(3.7 m) above the ground, preferably
above the roof, and as Tar away as
practicable from windows or other
openings into buildings and as far away
as practicable from sources of ignition
such as flues or chimneys and tracks
used by locomotives. Generating
,
chamber relief pipes shall not be inter
connected but shall be separately led to
the outside air. The hood or bend shall
be so constructed that it-will not be
1
obstructed byxain. snow. ice, insects, or
birds. The outlet shall be at least 3 feet
(OS m) from combustible construction.
(iii}(A) Gas holders shall be -
constructed on the gasometer principle,
the bell being suitably guided. The gas
bell shall move freely without tendency {
VVV 00001298
Federal Register / VoL 55, No. 70 ( Wednesday, April 11, 1990 / Rules and Regulations 13707
to bind and shall have a clearance of at . (C) When the gas holder is not located each supply line. The low-pressure
[east 2 inches {5 cm) from the shell.
within a heated building, gas holder
protective device shall be located
(8) The gas holder may be located in seals shall be protected against freezing. between the gas holder and the shop
the generator room, in a separate room or out of doors. In order to prevent
(D) Means shall be provided to stop
piping, and the medium-pressure
the generator-feeding mechanism before protective device shall be located
collapse of the gas bell or Infiltration of the gas holder reaches the upper limit of between the compressor or booster
) i
air due to a vacuum caused by the compressor or booster pump or cooling of the gas, a compressor or booster
cutoff shall be provided at a point 12 inches (0.3 m) or more above the landing point of the bell. When the gas holder is
its travel.
(E) When the gas holder is connected to only one generator, the gas capacity of the holder shall be not less than one-
third of the hourly rating of the generator.
(F) If acetylene is used from the gas
pump and the shop piping (see Figure Q4). Approved protective equipment (designated Pp] is used to prevent:
Backflow of oxygen into the fuel-gas supply system; passage of a flashback into the fuel-gas supply system; and
located indoors, the room shall be
holder without increase in pressure at
excessive back pressure of oxygen in
ventilated in accordance with paragraph some points but with increase in
the fuel-gas supply system. The three
(f](6}(ii) of this section and heated and
pressure by a compressor or booster
functions of the protective equipment
lighted in accordance with paragraphs
pump at other points, approved piping
may be combined in one device or may
(f)(8)(iii) and (f)(0)(iv) of this section.
protective devices shall be installed in be provided by separate devices.
LOW-PRESSURE PIPING
te if
jr
o
PIPING PROTECTIVE DEVICE
a
/. Figure Q-4
1
r-:vi
(iv) (A) The compressor or booster system shall be of an approved type.
(B) Wiring and electrical equipment in compressor or booster pump rooms or
enclosures shall conform to the Provisions of $ 1910.324 of this part for '-'ass I, Division 2 locations.
(C) Compressors and booster pump
equipment shall be located in wellVentilated areas away from open flames.
electrical or mechanical sparks, or other ignition sources.
(D) Compressor or booster pumps
shall be provided with pressure relief
valves which wtH relieve pressure exceeding 15 psig (103 kPa gauge pressure) to a safe outdoor location as provided in paragraph (f)(4)(ii) of this section, or by returning the gas to the inlet side or to the gas supply source.
(E) Compressor or booster pump discharge outlets shall be provided with approved protective equipment. (See
paragraph (e) of this section.)
(5) Portable acetylene generators, (i)
(A) All portable generators shall be of a type approved for portable use.
(B) Portable generators shall not be used within 10 feet (3 m] of combustible material other than the floor.
000012989
4
13708 Federal Register / Vol. 55, No. 70 / Wednesday, April 11, 1990 / Rules and Regulations
[C) Portable generators shall not be walls or roofs. The venting areas shall
(B) Lamps installed outside of wired-
used in rooms of total volume less than be equal to not less than 1 square foot
glass panels set in gas-tight frames in
35 times the total gas-generating
(0.09 m2) per 50 cubic feet (1.4 ma) of
the exterior walls or roof of the
capacity per charge of all generators in room volume and may consist of any
generator house or room are acceptable.
the room. Generators shall not be used one or any combination of the following: (v)Electric switches, telephones, and
in rooms having a ceiling height of less Walls of light, noncombustible material all other electrical apparatus which may'
than 10 feet (3 m). (To obtain the gas
preferably single-thickness, single
cause a spark, unless specifically
generating capacity in cubic feet per
strength glass; lightly fastened hatch
approved for use inside acetylene
charge, multiply the pounds of carbide covers: lightly fastened swinging doors generator rooms, shall be located
per charge by 4.5.)
in exterior walls opening outward;
outside the generator house or in a room
(DJ Portable generators shall be
lightly fastened wails or roof designed or space separated from the generator
protected against freezing. The use of
to relieve at a maximum pressure of 25 room by a gas-tight partition, except that
salt or other corrosive chemical to prevent freezing is prohibited.
(ii) (A) Portable generators shall be cleaned and recharged and the air mixture blown off outside buildings..
(B) When charged with carbide, portable generators shall not be moved
by crane or derrick. (C) When not in use, portable
generators shall not be stored in rooms in which open flames are used unless the generators contain no carbide and have been thoroughly purged of acetylene. Storage rooms shall be well ventilated.
(D) When portable acetylene generators are to be transported and operated on vehicles, they shall be securely anchored to the vehicles. If transported by truck, the motor shall be turned off during charging, cleaning, and generating periods.
(E) Portable generators shall be located at a safe distance from the welding position so that they will not be exposed to sparks, slag, or misdirection of the torch flame or overheating from hot materials or processes.
(6) Outside generator houses and inside generator rooms for stationary acetylene generators, (i) (A) No opening in any outside generator house shall be located within 5 feet (1.5 m) of any opening in another building.
(B) Walls, floors, and roofs of outside generator houses shall be of
noncombustible construction. (C) When a part of the generator .
house is to be used for the storage or manifolding of oxygen cylinders, the space to be so occupied shall be separated from the generator or carbide storage section by partition walls
pounds per square foot (0.G01 MPa).
where the generator system is designed
(F) The installation of acetylene
so that no carbide fill opening or other
generators within buildings shall be
part of the generator is open to the
restricted to buildings not exceeding one generator house or room during the
story in height: provided, however, that operation of the generator, and so that
this will not be construed as prohibiting residue is carried in closed piping from
such installations on the roof or top floor the residue discharge valve to a point
of a building exceeding such height.
outside the generator house or room,
(G) Generators installed inside
electrical equipment in the generator
buildings shall be enclosed in a separate house or room shall conform to the
room.
. provisions of Subpart S of this part for
(H) The walls, partitions, floors, and ceilings of inside generator rooms shall be of noncombustible construction
, having a fire-resistance rating of at least 1 hour. The walls or partitions shaii be
continuous from floor to ceiling and shall be securely anchored. At least one wall of the room shall be an exterior wall.
(I) Openings from an inside generator room to other parts of the building shall be protected by a swinging type, self closing fire door for a Class B opening and having a rating of at least 1 hour. Windows in partitions shall be wired glass and approved metal frames with
fixed sash. Installation shall be in accordance with the Standard for the Installation of Fire Doors and Windows,
NFPA 80-1970. (ii) Inside generator rooms or outside
generator houses shall be well ventilated with vents located at floor and ceiling levels.
Class I, Division 2 locations. (7)Maintenance and operation, (i)
Unauthorized persons shall not be permitted in outside generator houses or inside generator rooms.
(A) Operating instructions shall be posted in a conspicuous place near the generator or kept in a suitable place
available for ready reference. (B) When recharging generators the
order of operations specified in the instructions supplied by the manufacturer shall be followed.
(C) In the case of batch-type generators, when the charge of carbide
is exhausted and before additional carbide is added, the generating chamber shall always be flushed out with water, renewing the water supply
in accordance with the instruction card furnished by the manufacturer.
(D) The water-carbide residue mixture drained from the generator shall not be
(iii) Heating shall be by steam, hot
discharged into sewer pipes or stored in
water, enclosed electrically heated
areas near open flames. Clear water
elements or other indirect means.
from residue settling pits may be
Heating by flames or fires shall be
discharged into sewer pipes.
prohibited in outside generator houses
(ii) The carbide added each time the
or inside generator rooms, or in any
generator is recharged shall be sufficient
enclosure communicating with them.
to refill the space provided for carbide
(iv) (A) Generator houses or rooms
without ramming the charge. Steel or
continuous from floor to roof or ceiling, of the type of construction stated in paragraph (f)(6)(i)(H) of this section.
shall have natural light during daylight hours. Where artificial lighting is
necessary it shall be restricted to
other ferrous tools shall not be used in distributing the charge.
(iii) Generator water chambers shall
Such separation walls shall be without electric lamps installed in a fixed
be kept filled to proper level at all times
openings and shall be joined to the floor, position. Unless specifically approved
except while draining during the
other walls and ceiling or roof in a
for use in atmospheres containing
recharging operation.
manner to effect a permanent gas-tight acetylene, such lamps shall be provided
(iv) Whenever repairs are to be made
joint.
with enclosures of glass or other
or the generator is to be charged or
(D) Exit doors shall be located so as to noncombustible material so designed
carbide is to be removed, the water
be readily accessible in case of
and constructed as to prevent gas
chamber shall be filled to the proper
emergency.
vapors from reaching the lamp or socket level.
(E) Explosion venting for outside
- and to resist breakage. Rigid conduit
(v) Previous to making repairs
generator houses and inside generator . with threaded connections shall be
involving welding, soldering, or other
rooms shall be provided in exterior
used.
hot work or other operations which
000013990
Federal Register / Vol. 55, No. 70 / Wednesday, April 11. 1990 / Rules and Regulations 137G9
produce a source of ignition, the carbide charge and feed mechanism shall be completely removed. All acetylene shall .
be expelled by completely flooding the generator shell with water and the generator shall be disconnected from the
piping system. The generator shall be kept filled with water, if possible, or positioned to hold as much water as possible.
(vi) Hot repairs shall not be made in a room where there are other generators unless all the generators and piping have been purged of acetylene.
(g) Calcium carbide storage--(1) Packaging, (i) Calcium carbide shall be contained in metal packages of sufficient strength to prevent rupture.
The packages shall be provided with a screw top or equivalent. These packages shall be constructed water- and air-tight Solder shall not be used in such a
manner that the package would fail if exposed to fire.
(ii) Packages containing calcium
carbide shall be conspicuously marked "Calcium Carbide--Dangerous If Not Kept Dry" or with equivalent warning.
(iii) Caution: Metal tools, even the socalled spark resistant type may cause ignition of an acetylene and air mixture when opening carbide containers.
(iv) Sprinkler systems shall not be installed in carbide storage rooms.
(2) Storage indoors, (i) Calcium carbide In quantities not to exceed 600 pounds (272.2 kg) may be stored indoors in dry, waterproof, and well-ventilated locations.
(A) Calcium carbide not exceeding 600 pounds (272.2 kg) may be stored indoors in the same room with fuel-gas
cylinders. (B) Packages of calcium carbide,
except for one of each size, shall be kept
sealed. The 9eals shall not be broken
when there is carbide in excess of 1 pound (0.5 kg) in any other unsealed package of the same size of carbide in the room.
(ii) Calcium carbide exceeding 600 Pounds (272.2 kg) but not exceeding 5,000 pounds (2,263 kg) shall be stored:
(A) In accordance with paragraph (g)(2)(iii) of this section;
(B) In an inside generator room or outside generator bouse: or
(C) In a separate room in a one-story building which may contain other occupancies, but without cellar or basement beneath the carbide storage section. Such rooms shall be constructed ,n accordance with paragraphs
(f)(G)(i)(H) and (f)(G}(i){I) of this section and ventilated in accordance with paragraph (f)(6)(ii) of this section. These rooms shall be used for no other Purpose.
(iii) Calcium carbide in excess of 5,000 pounds (2.266 kg) shall be stored in onestory buildings without cellar or
basement and used for no other purpose, or in outside generator houses. If the storage building is of noncombustible
construction, it may adjoin other onestory buildings if separated therefrom by unpierced firewalls; if it is detached less than 10 feet (3 m) from such building or
buildings, there shall be no opening in any of the mutually exposing sides of such buildings within 10 feet (3 m). If the storage building is of combustible construction, it shall be at least 20 feet (6.1 m) from any other one- or two-story building, and at least 30 feet (9.1 m) from any other building exceeding two stories.
(3) Storage outdoors, (i) Calcium carbide in unopened metal containers may be stored outdoors.
(ii) Carbide containers to be stored outdoors shall be examined to make sure that they are in good condition.
Periodic reexaminations shall be made for rusting or other damage to a container that might affect its water cr air tightness.
(iii) The bottom tier of each row shall
be placed on wooden planking or equivalent, so that the containers will not come in contact with the ground or ground water.
(to) Containers of carbide which have
been in storage the longest shall be used first.
1910.254 Arc welding and cutting.
(a) General--(1) Equipment selection. Welding equipment shall be chosen for safe application to the work to be done as specified in paragraph (b) of this
section. (2) Installation. Welding equipment
shall be installed safely as specified by
paragraph (c) of this section. (3) Instruction. Workmen designated
to operate arc welding equipment shall
have been properly instructed and qualified to operate such equipment as specified in paragraph (d) of this section.
(b) Application of arc welding equipment--(1) General. Assurance of consideration of safety in design is obtainable by choosing apparatus complying with the Requirements for Electric Arc-Welding Apparatus. NE\A EW-1-1962, National Electrical Manufacturers Association or the Safety Standard for Transformer-Type ArcWelding Machines, ANSI C33.2--1955,
Underwriters' Laboratories. (2) Environmental conditions, (i)
Standard machines for arc welding service shall be designed and constructed to carry their rated load
with rated temperature rises where the
temperature of the cooling air does not exceed 40 *C (104 *F) and where the
altitude does not exceed 3.300 feet (1,005.8 m), and shall be suitable for operation in atmospheres containing gases, dust, and light rays produced by
the welding arc. (ii) Unusual service conditions may
exist, and in such circumstances machines shall be especially designed to
safely meet the requirements of the service. Chief among these conditions
are: (A) Exposure to unusually corrosive
fumes. (B) Exposure to steam or excessive
humidity.
(C) Exposure to excessive oil vapor. (D) Exposure to flammable gases. (E) Exposure to abnormal vibration or shock.
(F) Exposure to excessive dust.
(G) Exposure to weather. (H) Exposure to unusual seacoast or
shipboard conditions. (3) Voltage. The following limits shall
not be exceeded: (i) Alternating-current machines
(A) Manual arc welding and cutting-- 80 volts.
(B) Automatic (machine or mechanized) arc welding and cutting--
100 volts. (ii) Direct-current machines
(A) Manual arc welding and cutting-
100 volts. (B) Automatic (machine or
mechanized) arc welding and cutting-100
volts. (iii) When special welding and cutting
processes require values of open circuit
voltages higher than the above, means
shall be provided to prevent the operator from making accidental contact with the high voltage by adequate
insulation or other means. (iv) For a.c. welding under wet
conditions or warm surroundings where .
perspiration is a factor, the use of reliable automatic controls for reducing no load voltage is recommended to reduce the shock hazard.
(4) Design, (i) A controller integrally mounted in an electric motor driven welder shall have capacity for carrying rated motor current, shall be capable of
making and interrupting stalled rotor current of the motor, and may serve as the running overcurrent device if provided with the number of overcurrent units as specified by Subpart S of this part.
(ii) On all types of arc welding
machines, control apparatus shall be enclosed except for the operating wheels, levers, or handles.
(iii) Input power terminals, tap change devices and live metal parts connected
vvv 000012991
13710 Federal Register / Vol. 55. No. 70 / Wednesday. April 11. 1990 / Rules and Regulations
to input circuits shall be completely enclosed and accessible only by means of tools.
(iv) Terminals for welding leads ` should be protected from accidental electrical contact by personnel or by
metal objects. t.e,, vehicles* crane hooks, etc. Protection may be obtained by use of: Dead-front receptacles for plug
connections; recessed openings with nonremovable hinged covers; heavy insulating sleeving or taping or other equivalent electrical and mechanical
protection. If a welding lead terminal which is intended to be used exclusively for connection to the work is connected to the grounded enclosure, it must be
done by a conductor at least two AWG sizes smaller than the grounding conductor and the terminal shall be marked to indicate that it is grounded.
(v) No connections for portable control devices such as push buttons to be carried by the operator shall be connected to an a.c. circuit of higher than 120 volts* Exposed metal parts of portable control devices operating on circuits above 50 volts shall be grounded by a grounding conductor in the control cable.
(vi) Auto transformers or a.c. reactors shall not be used to draw welding current directly from any a.c. power
source having a voltage exceeding 60 volts.
(c) Installation ofarc weldinq equipment--(1) General. Installation
including power supply shall be in accordance with the requirements of Subpart S of this part.
(2] Grounding, (i) The frame or case of the welding machine (except engine-
driven machines) shall be grounded under the conditions and according to the methods prescribed in Subpart S of this part.
(ii) Conduits containing electrical conductors shall not be used for completing a work-lead circuit. Pipelines
shall not be used as a permanent part of a work-lead circuit, but may be used during construction, extension or repair
providing current is not carried through threaded joints, flanged bolted joints, or caulked joints and that special precautions are used to avoid sparking at connection of the work-lead cable. -
(ill) Chains, wire ropes, cranes, hoists, and elevators shall not be used to cany welding current.
(iv) Where a structure, conveyor, or fixture is regularly employed as a
welding current return circuit, joints
shall be bonded or provided with adequate current collecting devices. - (vj All ground connections shall be
checked to determine that they are
mechanically strong and electrically adequate for the required current.
- (3) Supply connections and conductors. (i) A disconnecting switch
or controller shall be provided at or near each welding machine which is not equipped with such a switch or
controller mounted as an integral part of
the machine. The switch shall be in accordance with subpart S of this part. Overcurrent protection shall be provided as specified in subpart S of this part A disconnect switch with overload protection or equivalent
disconnect and protection means. permitted by subpart S of this pail, shall be provided for each outlet intended for connection to a portable welding
machine. (ii) For individual welding machines,
the rated current-carrying capacity of the supply conductors shall be not less than the rated primary current of the welding machines.
(iii) For groups of welding machines,
the rated current-carrying capacity of conductors may be less than the sum of the rated primary currents of the welding machines supplied. The conductor rating shall be determined in each case according to the machine loading based on the use to be made of
each welding machine and the allowance permissible in the event that all the welding machines supplied by the
conductors will not be in use at the same time.
(iv) In operations involving several
welders on one structure, d.c. welding process requirements may require the use of both polarities: or supply circuit limitations for a.c. welding may require distribution of machines among the phases of the supply circuit In such cases no load voltages between electrode holders will be 2 times normal in d.c. or 1.1.41,1.73. or 2 times normal on a.c. machines. Similar voltage differences will exist if both a.c. and dc. welding are done on the same structure.
(A) All d.c. machines shall be connected with the same polarity.
(B) All a.c. machines shall be connected to the same phase of the
supply circuit and with the same instantaneous polarity.
(d) Operation and maintenance--(1) General. Workmen assigned to operate or maintain arc welding equipment shall be acquainted with the requirements of this section and with 5 1910.252 (a), (b)
and (c) of this part; if doing gas-shielded arc welding, also Recommended Safe Practices for Gas-Shielded Arc Welding,
A8.1-1966. American Welding Society.
(2) Machine hook up. Before starting operations all connections to the machine shall be checked to make
certain they are properly made. The work lead shall be firmly attached to the work; magnetic work clamps shall be
freed from adherent metal particles of spatter on contact surfaces. Coiled welding cable shall be spread out before use to avoid serious overheating and damage to insulation.
(3) Grounding. Grounding of the
welding machine frame shall be checked. Special attention shall be given to safety ground connections of portable
machines. (4) Leaks. There shall be no leaks of
cooling water, shielding gas or engine fuel.
(5) Sw//cAes. lt shall be determined that proper switching equipment for shutting down the machine is provided.
(6) Manufacturers' instructions. Printed rules and instructions covering operation of equipment supplied by the manufacturers shall be strictly followed.
(7) Electrode holders. Electrode holders when not in use shall be so placed that they cannot make electrical contact with persons, conducting objects, fuel dr compressed gas tanks.
(8) Electric shock. Cables with splices within 10 feet (3 tn) of the holder shall not be used. The welder should not coil or loop welding electrode cable around parts of his body.
(9) Maintenance, (i) The operator should report any equipment defect or
safety hazard to his supervisor and the use of the equipment shall be discontinued until its safety has been assured. Repairs shall be made only by
qualified personnel. (ii) Machines which have become wet
shall be thoroughly dried and tested before being used.
(iii) Cables with damaged insulation
or exposed bare conductors shall be replaced, joining lengths of work and electrode cables shall be done by the use of connecting means specifically
intended for the purpose. The connecting means shall have insulation
adequate for the service conditions.
1910.255 Resistance welding.
(a) General--(1) Installation. All
equipment shall be installed by a qualified electrician in conformance with subpart S of this part. There shall be a safety-type disconnecting switch or a circuit breaker or circuit interrupter to open each power circuit to the machine, conveniently located at or near the machine, so that the power can be shut off when the machine or its controls are to be serviced.
(2) Thermal protection. Ignition tubes
used in resistance welding equipment shall be equipped with a thermal protection switch.
(3) Personnel. Workmen designated to operate resistance welding equipment shall have been properly instructed and
vvv 000012992
Federal Register / Vol. 55, No. 70 / Wednesday, April 11, 1990 / Rules and Regulations 13711
judged competent to operate such equipment
(4) Guarding. Controls of all automatic
or air and hydraulic clamps shall be arranged or guarded to prevent the operator from accidentally activating them.
[b) Spot and seam welding machines (nonportable)--(1) Voltage. All external weld initiating control circuits shall
operate on low voltage, not over 120 volts, for the safety of the operators.
(2) Capacitor welding. Stored energy
or capacitor discharge type of resistance welding equipment and control panels involving high voltage (over 550 volts) shall be suitably insulated and protected
by complete enclosures, all doors of which shall be provided with suitable interlocks and contacts .wired into the control circuit (similar to elevator
interlocks). Such interlocks or contacts shall be so designed as to effectively
interrupt power and short circuit all capacitors when the door or panel is open. A manually operated switch or suitable positive device shall be
installed, in addition to the mechanical interlocks or contacts, as an added safety measure assuring absolute
discharge of all capacitors. (3) Interlocks. All doors and access
panels of all resistance welding machines and control panels shall be
kept locked and interlocked to prevent access, by unauthorized persons, to live portions of the equipment.
(4) Guarding. All press welding machine operations, where there is a
possibility of the operator's fingers being under the point of operation, shall be
effectively guarded by the use of a
device such as an electronic eye safety circuit, two hand controls or protection similar to that prescribed for punch
press operation, $ 1910.217 of this part. All chains, gears, operating bus linkage, and belts shall be protected by adequate guards, in accordance with 1910.219 of this part.
(5) Shields. The hazard of flying sparks shall be, wherever practical,
eliminated by installing a shield guard of safety glass or suitable fire-resistant plastic at the point of operation.
Additional shields or curtains shall be installed as necessary to protect passing
persons from flying sparks. (See 5 1910.252(b)(2)(i}(C) of this part.)
(6) Foot switches. All foot switches shall be guarded to prevent accidental
operation of the machine. (7) Stop buttons. Two or more safety
emergency stop buttons shall be provided on all special multispot ^elding machines, including 2-post and
4-post weld presses. (8) Safety pins. On large machines,
four safety pins with plugs and
receptacles (one in each comer) shall be
provided so that when safety pins are removed and inserted in the ram or
platen, the press becomes inoperative. (9) Grounding. Where technically
practical, the secondary of all welding transformers used in multispot, projection and seam welding machines shall be grounded. This may be done by permanently grounding one side of the
welding secondary current circuit. Where not technically practical, a center
tapped grounding reactor connected
across die secondary ox the use of a safety disconnect switch in conjunction with the welding control are acceptable alternates. Safety disconnect shall be
arranged to open both sides of the line when welding current is not present.
(c) Portable welding machines--(1) Counterbalance. All portable welding
guns shall have suitable counterbalanced devices for supporting
the guns, including cables, unless the design of the gun or fixture makes counterbalancing impractical or
unnecessary. (2) Safety chains. All portable welding
guns, transformers and related equipment that is suspended from
overhead structures, eye beams, trolleys, etc., shall be equipped with
safety chains or cables. Safety chains or cables shall be capable of supporting the
total shock load in the event of failure of any component of the supporting
system. (3) Clevis. Each clevis shall be
capable of supporting the total shock
load of the suspended equipment in the event of trolley failure.
(4) Switch guards. All initiating
switches, including retraction and dual schedule switches, located on the portable welding gun shall be equipped
with suitable guards capable of preventing accidental initiation through contact with fixturing, operator's clothing, etc. Initiating switch voltage
shall not exceed 24 volts. (5) Moving holder. The movable
holder, where it enters the gun frame,
shall have sufficient clearance to prevent the shearing of fingers
carelessly placed on the operating movable holder.
(6) Grounding. The secondary and
case of all portable welding transformers shall be grounded. Secondary grounding may be by center tapped secondary or by a center tapped
grounding reactor connected across the secondary.
(d) Flash welding equipment--(1) Ventilation and flash guard. Flash welding machines shall be equipped
with a hood to control flying flash. In
cases of high production, where materials may contain a Aim of oil and
where toxic elements and metal fumes are given off, ventilation shall be provided in accordance with 9 1910.252(c) of this part
(2) Fire curtains. For the protection of the operators of nearby equipment, fireresistant curtains or suitable shields shall be set up around the machine and in such a manner that the operators movements are not hampered.
(e) Maintenance. Periodic inspection shall be made by qualified maintenance personnel, and a certification record maintained. The certification record shall include the date of inspection, the signature of the person who performed the inspection and the serial number, or other identifier, for the equipment inspected. The operator shall be instructed to report any equipment defects to his supervisor and the use of the equipment shall be discontinued until safety repairs have been completed.
$ 1910.256 Sources of standards.
Sec.
Source
1910.251_________ 1910.252-.2S5-----
ANSI 249.1--1967, Safety in Welding and Cutting.
(a) NFPA--51-1969, Welding and Cutting Oxygen Fuel Gas System.
(b) ANSI Z--49.1-1967, Safety In Welding and Cutting.
(c) NFPA--51B-1962, Cutting and Welding Processes.
(d) 41 CFR 50-204.7.
S 1910.257 Standards organizations.
Specific standards of the following organizations have been referenced in this subpart. Copies of the referenced standards may be obtained from the issuing organizations. The names and addresses of the issuing organizations are as follows:
(a) American National Standards Institute (ANSI), 1430 Broadway, New York. NY 10018.
(b) National Fire Protection Association, Batterymarch Park, Quincy, MA 02289.
(c) Compressed Gas Association, Inc., 1235 Jefferson Davis Highway, Arlington, VA 22207.
(d) American Petroleum Institute, 1220 L Street NW,, Washington, DC 20005.
(e) American Welding Society, 550 NW. Lejeune Road, P.O. Box 351040,
Miami, FL 33135.
(f) Rubber Manufacturers Association; 1400 K Street NW., Washington. DC 20005.
[FR Doc. 90-7799 Filed 4-10-90: 8:45 am|
6ILUNO CODE 4St-2t-M
VVV 000012993