Document pbnn0O6gxLVBbOqe1aDo3rVX
FILE NAME Brakes BRK
DATE 1981
DOC BRK138
DOCUMENT DESCRIPTION US Government Report - Assessment of Asbestos Concentration on Marine Vessels Maintenance and Repair
930-81027
FEBRUARY 1981
ASSESSMENT OF ASBESTOS
CONCENTRATION ON MARINE VESSELS
MAINTENANCE AND
measurements
Add mont 2 p 436
valves
U.S. DEPARTMENT OF COMMERCE
ADMINISTRATION OFFICE OF RESEARCH AND DEVELOPMENT
Technical Report
ASSESSMENT OF ASBESTOS CONCENTRATION ON MARINE VESSELS MAINTENANCE AND REPAIR
eee
Oe Prepared By
David R. Jones IIT Research Institute
10 West 35th Street
Chicago Illinois 60616
February 1981
Prepared For
U.S. Department of Commerce
Maritime Administration
Office of Research and Development
Rate
Fd
oral
~
CONTENTS
a
2 i i
Foreword
'...
. . et eweee List of Tables
ee
ee
. . ee
1. SUMMARY
2...
eee
ete
2. INTRODUCTION
3. CONTAINING MATERIALS 2... ..020C+~~ * ' e@' # '
4. PROCEDURES
.. we eee
4.1 Protective Devices .
4.2 Sampling
...
eee
ee
eee
4.3 4.4
Analysis . os.
Quality Assurance .....0.0202.,
5. TEST OPERATIONS AND RESULTS
.
.,
5.1 Lagging and Pipe Repairs . 5.2 Welding Operations
5.3 Brake Cleaning and Operation . 5.4 Valve Rebuilding Operations .. 5.5 Cleaning and Miscellaneous Operations .
5.6 Background Measurements
5.7 Evaluation of Safety Precautions .
5.8
Discussion of Operations
..
6. CONCLUSIONS AND RECOMMENDATIONS
.. . ll dl;
6.1 Conclusions ....04.,
6.2 Recommendations
Report Optional Form
Documentation
vii
Potential Sources of Asbestos Aboard Ship Partial List .
Asbestos Categories 1... wee ee ee et eet
Empirical Ranking of Exposure Potential During Repair or Maintenance of Containing Shipboard Materials . .
Test Operation Test Operation
Pipe Lagging Removal and Replacement
Pipe Repair Operations Removal and Dismantling of Pipe Systems
Test Operation Welding Operations
....
7
Test Operation Brake Operations
Test Operation Valve Repair and Gasket Cutting .
23 23
9
Test Operation Clean After Lagging Repair .
2525
10 10
Operation Clean From Piping Repair
11 11
Test Operation Monitoring of Engineroom Personnel
Background Engineroom Samples
Viii
~.
1. SUMMARY
The objective of this study was to identify exposures of shipboard
personnel to airborne asbestos fibers during typical board repair and
maintenance operations Asbestos fibers have been causally related to several
respiratory diseases and were extensively used in shipbuilding until 1975. A
previous study detected the presence of low concentrations of asbestos in
ships enginerooms This present study measured the exposure levels to the
ships personnel performing routine maintenence
tions are made on how to modify work practices and the
tion control and personal protective devices
operations Recommendaapplication of ventilarespirators
first
asbestos fibers aboard ship and to rank the probability of disturbing the
containing material Literature sources were reviewed and asbestos-
containing materials were evaluated for fiber releasability frequency of
a
disturbance and categorization of materials This effort resulted in the
selection of the following operations as candidates for evaluation
* pipe lagging repair
* boiler or turbine insulation repair + clutch or brake maintenance
hotel system repair
-
* electrical rewiring and repair * welding operations
The final selection from the list of candidate operations was done
two trips on U.S. Flag
other a North Atlantic
Vessels One trip was a long coastal voyage trip The actual tests monitored were
and
during
the
* pipe lagging repair
*
pipe repair
'
* welding operations
*
Jones D. Assessment of Asbestos Concentrations in the Engineroom Environment of Marine Vessels Phase I IIT Research Institute Report J6449001 IIT Research Institute Chicago Ill 60616. 1979
1
brake cleaning and operation - valve rebuilding operations
clean procedures for asbestos waste
In addition the ships background fiber concentration and the exposure of crew members standing watches were measured
The samples were analyzed using the Occupational Health and Safety
Administration OSHA specified
procedure enumerates all fibers
NIOSH Analytical Method CAM 239.2 greater than 5 ...m in length present
This
on filter
samples using contrast microscopy The method does not specifically identify asbestos fibers The fiber counts obtained are combined with the
volume of air filtered to determine the concentration of fibers in the air
The concentration fibers centimeter fibers of air then
compared to two limits The first is the hour time weighted average and the second is the ceiling exposure limit CEL both defined in 29
THA
CFR
1910.1001 Currently the limits are 2.0 fibers for the TWA and 10.0
,
fibers for the CEL
The results of the fiber enumeration showed that during several test
operations concentrations exceeding 2.0 fibers were measured These operations were performed over short time periods If these or similar operations were conducted over an hour time period the exposure levels
would exceed the OSHA TWA limit
One test situation brake cleaning resulted in exposures in violation
of the OSHA CEL for airborne asbestos fibers A concentration of about 70
fibers was measured during cleaning which used velocity air to blow
the accumulated dust out of the brake box The cleaning of brake enclosures using forced air blowing should be stopped
The following procedures resulted in airborne fiber concentrations above
the 2.0 fibers limit and are considered potentially hazardous operations_
depending on the duration of the operation
2
U.S.
Department of Health
Education and Welfare
National
Institute for
Occupational Safety and Health Revised Recommended Asbestos Standards
77-169 1977. Available from Public Health Service Robert H. Taft
Laboratories 4676 Columbia Parkway Cincinnati OH 45268
2
7
.
:
.
:
r
piping clean after up to 3.4 fibers
or lagging repair with broom
of * operation an open brake drum inside the ship 2.1 fibers
welding 5 fibers
Currently OSHA has proposed a reduction of the TWA to 0.5 fibers If this
proposed change in the rule becomes effective the term potentially hazardous operation will also apply to
lagging removal 0.2-1.1 fibers
vacuum clean of piping repair waste 0.2-0.9 fibers
Background
quarters of the method On two
samples collected in various areas of ship were below or near the detection
the engineroom and living
limit for the analytical
successive nights however higher levels of airborne fibers
were detected in the engineroom fidley Four samples of twelve collected on
two nights showed tration being 1.0
elevated fiber concentrations with the highest fiber concenfibers The cause of the elevated levels is believed to
be the lagging on a vertical pipe entering the bottom of the deaerator which
had eroded to the extent that the insulation inside the wrapping had worn to
an eliptical shape almost touching the outside wrap Since the affected samples
were collected on successive nights the elevated airborne fiber levels existed for 24 hours This type of potential exposure could could contribute
term health effects
probably
to long-
The following conclusions are drawn from the study
* It is unlikely that the OSHA TWA of 2.0 fibers is exceeded during routine repair by ship's personnel
The current practice of blowing dust from brake
enclosures exceeds the CEL limit and is not a safe work practice
+ The next highest exposures were measured during
-
clean after repairs
:
There are many sources of exposure to airborne fibers
during routine repair and maintenance operations involving containing materials
A housekeeping problem is present as a result of open brake operation in ventilated areas
generation Spontaneous
generation
Spontaneous
of
of
concentration can result
ssigniifgicannt isignifficant isicgnaifincatnt airborne airborne airborne
from eroding lagging
by the ship's motion or vibration
fiber
fiber
fiber
caused
- Disposable or powered respirators are adequate protection during most repairs involving asbestoscontaining materials
* Work rules to minimize emissions can be readily formulated
The following recommendations are made
* Respirators should be used when cutting or exerting mechanical force on containing materials
* Clean should use vacuum cleaners equipped with
High Efficiency Particulate Air HEPA filters or wet
methods to minimize emissions Vacuum cleaners with
efficiency filters should not be used
- Control of access to repair areas should be part of each type of task Scrap and dust generated during repairs should be contained by drop cloths and local ventilation
- Procedures for the disposal of containing materials should be developed and implemented
- Stricter personal hygiene procedures should be adopted the procedures should include methods to change and launder outer clothing extensive wash or shower before eating or smoking after working with containing materials and a continuing education program to alert the personnel to the potential hazards of asbestos
Consideration of local exhaust ventilation in the shop areas to prevent accumulation of dust which may contain
asbestos fibers
2. INTRODUCTION
There There
is
anan
increasing increasing
increasing
increasing
awareness
of the
significance
of
environmental
factors in causing illness The fibrous minerals known as asbestos used in
many applications and products have entered the environment in both occupa-
tional and occupational settings The lung disease asbestosis and some cancers of the lung abdomen and other parts of the body are clearly related to asbestos exposure. Asbestos was used in the shipbuilding industry shipyard workers both those who worked directly with asbestos and those who were
indirectly exposed have a higher incidence of asbestos diseases than
the general population Recently there is evidence that some ships personnel
are exhibiting symptoms typical of asbestos exposure This evidence led to
the study Assessment of Asbestos Concentrations in the Engineroom Environment of Marine Vessels Phase I with the limited objective of establishing the feasibility of measurement methods and developing a plan to survey the U.S. Merchant Marine fleet The study was conducted by IIT Research Institute
for the U.S. Maritime Administration under Contract No. 5-38072 The final
report on the study was issued in January 1979.
This study found airborne asbestos fibers in the enginerooms of ships
The measured fiber concentrations were well below current and proposed regulations governing the occupational exposure to workers However no safe level
of asbestos has been established and it is impossible at this time to
confidently estimate the degree of risk associated with level exposures The U.S. Environmental Protection Agency EPA and the scientific community
3
Anon
Containing Materials in School Buildings A Guidance
Document Part I U.S. Environmental Protection Agency Office of Toxic
Substances Washington D.C. 20460. March 1979
* Selikoff I.J. et al
Asbestos Disease in United States Shipyards Annals .
of the New York Academy of Science Vol 330 1979. of Science 2 East 63rd St. New York N.Y. 10021
The New Academy
5
Dr. Robert N. Jones
Testimony before the House Subcommittee on Coast Guard
and Navigation Available from the subcommittee librarian H2550 House Annex
2 Washington D.C.
*
See Reference 1 page 1
See Reference 2 page 2
_
ON
A
-
r
ge t ta
0
believe that any exposure to asbestos involves a degree of risk Critique of
the Phase I study indicated that an extensive program to assess asbestos fiber concentrations aboard ship was needed More crucial however was the deter-
mination of asbestos exposures during routine repair and sea maintenance operations involving containing materials Therefore the current study was undertaken
The objectives of the current study were to define the repair or maintenance operations which could result in potentially hazardous exposures to air-
borne asbestos concentrations to test several typical operations and to provide
data needed to improve work rules and practices that would reduce or eliminate potentially hazardous exposures During the study the major uses of asbestoscontaining materials aboard ship were identified Repair and maintenance
operations involving containing materials were performed under existing work practices albeit with adequate worker protection Samples were
collected to determine exposure levels and work practices were observed to
determine where revisions might reduce asbestos exposure
Asbestos in the workplace is regulated by the Occupational Safety and
_
Health Administration OSHA The current OSHA time weighted average TWA for an hour exposure is 2.0 fibers greater than 5 ...m in length The ceiling exposure limit CEL is 10 fibers Reduction in the permissible
levels is under consideration
*
The current limits are found in 1910.1001
6
a
3. CONTAINING MATERIALS
extensively during Asbestos
and
asbestos
containing
Asbestos and asbestos containing materials were used
the construction of ships from World War II until recently Ships completed as
late as 1975 contain some asbestos materials The uses of asbestos board
ships are numerous due to the excellent fire retardancy resistance to thermal degradation and durability of asbestos fibers Table 1 lists materials
containing asbestos which may be found aboard ship is given the numerical rankings mean
A releasability ranking
1 Free fibers locked in at all
2. Fibers locked in but releasable in normal use or where
handling is such that intentional abrasion cutting
sanding etc. is expected to occur Fiber release
may occur if there is a defect in the product's performance
3. Fibers locked in and not likely to be released in normal use Potential for release exists if a user engaged in
rtieopnaiorccuarcscidbeenctaaulse aobfraasgiionng morodwiefairciantgioonf tor he ifprdoedtuecrtiora-
4 Fibers locked in and unlikely to be released under almost
all foreseeable circumstances
Table 1.
POTENTIAL SOURCES OF ASBESTOS ABOARD SHIPS6 Partial List
Source
Pipe lagging and wraps
Gloves Paint Gaskets
Fire retardant wallboard
Floor tile
Spray thermal insulation
Electrical insulation Electrical tapes
Releasability Ranking
2 2
Ase P. et al Exposure to Asbestos IITRI Report No. 06438C01 IIT Research
Substances Institute Chicago IL 60616. February 8 1979.
Special Report prepared for Office of Toxic
USEPA
Grant R806269010 USEPA Washington
D.C.
7
Simpson F.
Memorandum
U.S.
Consumer Product Safety Commission
1978
May 1978 1978 1978
7
27)
2
eo
re In consultation with persons having shipboard experience the asbestos-
containing materials board ships were placed in the following categories
Pipe lagging and wraps - Spreadable insulation
turbine
Friction products clutch
" Caulks and joint compounds
;
* Personal protection
fighting suits
Construction materials
Miscellaneous
An estimate of the maintenance frequency and dust emission level of typical operations performed at sea with containing materials in each of the above categories is given in Table 2. Frequent maintenance work includes repair of pipe insulation welding gasket making repacking valves
and the use of gloves High dust levels are associated with repairs involving
welding spreadable insulation friction materials and pipe insulation
Several attempts were made
shown in Table 2. However the
to rank
current
the exposure potential for each category data base was judged insufficient to
support a sound ranking system In addition shipboard observations showed that
large variations existed the spatial restrictions
in the physical condition of very under which repair or maintenance
similar materials was performed and
the ventilation in the areas Based on the limited maintenance opera-
tions observed and sampled during this program an empirical exposure rank was
developed Table 3. The exposure rank indicates the relative exposure from
current work practices and serves to set priorities for reducing or eliminating
exposure to airborne asbestos fibers Note that cleaning the brake housing
an infrequent maintenance practice sea and clean after insulation repair
a frequent practice head the list
Type of Material
Pipe Insulation
Lagging Wraps , Trowled or Spread Insulation
Boilers
Turbines
Friction Materials Clutches or Brakes
Caulks & Joint Compounds
Air Duct Joints
Personal Protective Devices
Gloves
_
Construction Materials Marinite Wallboard Transite Electrical Enclosures Paints
Welding
Miscellaneous Gaskets
Packing
Floor Tile
Frequency of Repair
Maintenance or Use
Dust Level
High High
Low Low
Low
Low
Moderate to high
- Low
High during only
High
removal
Very high
High dust frequently located in poorly ventilated areas
High
Low
Low Low Low Low
High
High High
Low
Moderate Moderate Moderate
High
Low Low Low
9
Table 3 EMPIRICAL RANKING OF EXPOSURE POTENTIAL DURING y REPAIR OR MAINTENANCE OF ASBESTOS CONTAINING
*
SHIPBOARD MATERIALS
- Type of Repair or Maintenance
Cleaning of Brake Housing
Cleaning after Insulation Repair
Handling Containing Scrap
Removal of Insulation
Reinsulating Procedures Shop Operations with Noninsulation Routine Clean of Area
Materials
Rank
H 2
3 4
5
6
7
Using existing work practices
10
:
4. PROCEDURES
The equipment the sampling and analytical procedures used in this study are described Safety and personal protective devices are discussed in Section 4.1 sampling and analytical equipment and procedures are discussed in Section 4.2 Quality Assurance is discussed in Section 4.3
4.1 PROTECTIVE DEVICES
The test plans included provisions to protect both the ships personnel and IITRI engineers from exposure to airborne asbestos fibers The protective
devices available included
MSA 9910 disposable face masks
* MSA Type F powered respirators
* W298-50 system half compressed air respirators
* Tyvek Model 2127Z impermeable hooded jump suits with
attached Model 2200 shoes
* Plastic sheeting and bags for containment of asbestoscontaining wastes contaminated filters respirators and clothing
Although no specific regulations are in place for shipboard repair
tenance operations the protective equipment was selected based on the guidelines
appearing in 29 CFR 1910.1001 The protective equipment was made available to
the ships personnel IITRI recommended but could not mandate its use The
Tyvek jump suit was unsuitable for use
The maintenance operations were
in the warmer restricted in
parts of the engineroom scale in part by consider-
ation of ships personnel safety and decontamination problems
4.2 SAMPLING
4.2.1 Personal Samples
Both MSA Model G and DuPont Model 4000 operated personal sampling pumps were used to sample the airborne dust levels Samples were
collected on Millipore 37 mm diameter 0.45 um pore size membrane filters
at flowrates from 1.7 to 2.5 liters per minute 2pm The filter holders were
11
Chemina enhance
airborne
airborne
fiber
fiber
concentration
concentration concentration concentration
concentration
phase
CIS
The
The
method
method
method
required
by
required by
the
the
OcOcccuuppaattioinaoOlccunpatioanal lOccupational
Safety
Safety Safety
and and
procedure the the
is
NIOSH
procedure
described described described
in
OHEN
NIOSH
NIOSH NIOSH procedure described described
OHEN
NIOSH
. fibers fibers fibers greater than all all Basically Basically
mote
-
Basically
Basically .
Basically
Basicaly
all
fibers
greater
than
fibers
: _
mmicriosccopr y omicsrosccopy opy a at t 40 -50 X microscopy
; .
-
ane Filter is
:
between
between
the the
the
fibers
fibers
fibers
asbestos
of
asbestos asbestos asbestos asbestos asbestos asbestos workers
izion
izion
ppositove sitive
identification identification identification
identification identification
identification
reported reported reported
hus
reported hus
represents
#iger
#iger
:)
ntration
)
]
ntration ntration
ntration
nnttrraatitoinon ntration
will
will
be
be
4
ara =
oaconios
maximum
and
and
_
<
Ta
.
Preparation
Prior Prior
Prior Prior
counting
counting
to
counting counting
counting
the the
a
fibers
fibers
a
cheard
cheard cheard
The
The
clearing
clearing
processprocess
process process
involves
involves
-
J
Ster
is
is
from from
from
saturating saturating saturating
the
saturating saturating
saturating
saturating
the
eet
oY
Le
pores of
the
the
structure
structure
A
solvent
mixture
mixture
re
Bee :
ey
no
n n -
ee
0a
ter
oc
ter
dichloroethane
and
dioxane
is
dichloroethane
and p
dioxane
is
saturated saturated saturated saturated
saturated
saturated
collapsed collapsed
collapsed collapsed
used
used
used
collapsed collapsed
as as
ret ret
. eee
aa
.
eu
. ~
oe
-
Membrane
Document
Document
) Document Document
Document
Filver Filver
Document Document
76-187 76-187 76-187
Millipore
755012 Millipore Filter Corporation Milipore
Milipore
Filter
Corporation
Bedford
MA
Bedford
Corpation
Asbestos
ne -
-
o
-
4 PROCEDURES
The equipment the sampling and analytical procedures used in this study are described Safety and personal protective devices are discussed in Section 4.1 sampling and analytical equipment and procedures are discussed in
Section 4.2 Quality Assurance is discussed in Section 4.3
4.1 PROTECTIVE DEVICES
The test plans included provisions to protect both the ships personnel and IITRI engineers from exposure to airborne asbestos fibers The protective
devices available included
MSA 9910 disposable face masks
* MSA Type F powered respirators
* W298-50 system face compressed air respirators Tyvek Model 2127Z impermeable hooded jump suits with
attached Model 2200 shoes
* Plastic sheeting and bags for containment of asbestoscontaining wastes contaminated filters respirators and clothing
Although no specific regulations are in place for shipboard repair
tenance operations the protective equipment was selected based on the guidelines
appearing in 29 CFR 1910.1001 The protective equipment was made available to
the ships personnel IITRI recommended but could not mandate its use The
Tyvek jump suit was unsuitable for use
The maintenance operations were
in the warmer restricted in
parts of the engineroom scale in part by consider-
ation of ships personnel safety and decontamination problems
4.2 SAMPLING
4.2.1 Personal Samples
Both MSA Model G and DuPont Model 4000 operated personal
sampling pumps were used to
collected on Millipore fi 37
sample the airborne dust levels Samples were mm diameter 0.45 um pore size membrane filters
at flowrates from 1.7 to 2.5 liters per minute 2pm The filter holders were
11
Fieg
PS
placed onto a clean glass microscope slide cleared by exposure to acetone
vapors and a drop of 1.505 refractive index fluid added The preparation is completed by covering the cleared filter with a clean coverslip The clearing procedure differs from the one recommended in the NIOSH procedure its advantage is a permanent sample mount
Lightly loaded samples present the microscopist with the special problem
of locating and maintainitnhge filter surface in the focal plane oxide
spheres 1 ...m in diameter were added to these samples to insure that counts were made in the correct plane Blank samples with the iron oxide spheres demonstrated that no artifact fibers were introduced with the spheres This procedure is similar to the addition of aluminum oxide particles to the suspensions used for preparation of the PAT samples PAT described in Section 4.4 Quality Assurance
4.3.2 Counting Rules
Prescribed fiber counting rules are used to assure valid statistical results Fields of view are selected selected for fiber counting at random along a traverse line The fields of view are defined by a Porton graticle placed in the eyepiece ofthe microscope The graticle is calibrated using a stage micrometer The specific counting rules are
1. All fibers particles with an aspect ratio of 1 completely contained in the field of view and over 5 ...m in length are counted
2. Fibers with one end within the field of view and
over 5 ...m in length are counted as fibers
3. A minimum of 20 fields of view are counted to insure
valid counting statistics
4. Counting continues until 100 fibers are enumerated
or 100 fields are examined
4.3.3 Computations
The concentration of airborne fibers is computed using the following equation
where
FA
C
nevs
airborne fiber concentration fibers
number of fibers counted in all fields of view
13
5. TEST OPERATIONS AND RESULTS
The test plan submitted during the early portion of this program
identified sources of containing materials aboard ship and the routine maintenance tasks associated with these materials that were performed by
n
ships personnel at sea The final selection of tasks to be monitored was made
site based on both crew availability and location of a suitable site
The tasks monitored were
" Lagging repair
Piping repair|
Welding * Enclosed brake box cleaning . Open brake operation + Valve rebuilding
In addition clean procedures and ships background fiber levels were
monitored
5.1 LAGGING AND PIPE REPAIRS
Two separate repairs involvinginvolving lagging lagging
were carried out during this during
program These repairs are described below
5.1.1 Lagging Repair
Operations short section of steam pipe immediately behind a valve was
partially exposed The steam line was not active during the repair thus
everything was cold The exposed section was irregular and it to cut away a portion of the existing lagging prior to repair section of lagging was removed and the end squared off a total
was necessary After an 8 in
length of about
18 in of new lagging was installed
Personnel Protection and Sampling to beginning the test activity a respirator powered issued to each of the crew members performing the test Both the crew members and IITRI personnel decided against using the impermeable Tyvek suits on the basis of the small size of the operation and the potential for heat stress in the area
15
preparing In
respirator
for this task one crew member had difficulty in fitting the
With assistance the respirator was fitted and sealed before
the beginning the test The experience brought home an important fact
facial
characteristics of various personnel must be considered when selecting styles
and sizes for respirator inventories
_ During the repair task the crew member performing the test observers wore personal samplers Two area monitors one upwind
and the two
of the repair
site and one downwind were also operated The filters were changed at specified
intervals to obtain samples representing the following activities
- removal of the old lagging installation of the new lagging clean after initial removal of the large pieces
of lagging and gross dustremoval
Additional area samples were collected during the time the area was hosed down and mopped Background samples had been acquired prior to the repair
The results of the test samples are shown in Table 4. The highest value
0.87 fibers was measured directly downwind of the work area The worker
and observer were exposed to lower levels of airborne fibers
Table 4 TEST OPERATION PIPE LAGGING REMOVAL AND REPLACEMENT
Code 010211
Type Area
010208 010221 010220 010215 010214 010215
Area Personal Personal Personal
Area Area
Duration
min
24
24 24 24 24 37 37
Sample
Location or Description
Approximately 3 from work area air
draft toward this pump
Approximately 7 from work area Observer upwind side of test area
downwind of work area
Worker sample
as 010211 as 012008
Samples taken after lagging repair and prior to cleanup
Fiber Concentration
cc
0.87
0.08 ND
0.19 0.08 0.09
ND
* ND = no fibers detected
sample during period independent The [
The
collected
this
this
period
is
considered
independent
is considered an
test
operation in the category of cleaning practices
A
16
5.1.2 Pipe Repairs
~
The pipe repair task consisted of repairs to an line strainer and
valve in the steam whistle system This repair was performed in
the system could not be isolated and shut down at sea American
port since . Flag vessels
do not use shore personnel in foreign ports except for essential repairs thus
this task was within the purview of the program
The section of 1 in pipe which required stripping was about 15 in in length The lagging was badly deteriorated due to a steam leak however the lagging was dry The stripped lagging covered a short length of pipe a valve and an line strainer After stripping the lagging inspection showed that
the only steam leak was from the strainer seal thus the valve was not torn
down The strainer seal was repaired a new gasket installed and the parts reassembled The steam line and fittings were cleaned for relagging The replacement lagging was clearly labeled asbestos free and was therefore
not included in the test
Personnel Protection to the test each person whose presence was
required was fitted with either a disposable asbestos approved respirator or
a face powered respirator The deck mechanic performing the repair
was instructed to take special precautions to avoid dropping the lagging and
to wash thoroughly preferably to shower and change clothes immediately upon
completion of the task
Sampling to the specific geometry of the test site the deck mechanic
was not fitted with a personal sampler However one IITRI observer was
stationed within 3-4 feet of the operation and a second approximately 6-9 feet
away Both IITRI observers wore personal samplers Three area samplers were
located in the area removal another near
One
one
of the samplers was placed within
exhaust duct and the third about
2 feet of the 10-12 feet from
the operation The third sampler was mounted on a rail in the center of the
access route to the work area through the deck below the work area and at a
height of about 5-6 feet above the deck
The results of analysis of the samples are presented in Table 5
The highest fiber concentration 1.14 fibers was measured at the
exhaust ventilator intake The exposure of the worker and observer were about
17
4=4
aa
_
te
=
4
|
0.4 fibers This was higher than the exposures measured during the lagging repair test which averaged 0.14 fibers
Table 5.
TEST OPERATION PIPE REPAIR OPERATIONS-LAGGING REMOVAL AND DISMANTLING OF PIPE SYSTEMS
Code
010405
Type Area
010713 010718 010506 010719 010507
Area Area Area Personal Personal
Duration
min
Sample
Location
Location
or
Description
Description
360
360 23 23
Background prior to operations
Breathing zone near repair site Background near exhaust ventilator Near repair area
Near exhaust ventilator intake
23 ~=
23
Os bserver near worker feet
Observer about 7 from worker just
below exhaust intake
Fiber
Concentration cc
0.05
0.01 0.50 1.14 0.35 0.44
5.2 WELDING OPERATIONS
The welding operations were evaluated in two steps first in the shop
where a new support frame for the emergency radio was assembled and second during the installation of the support frame to the deck in the emergency generator room The material being welded was standard angle iron to itself and to the ships deck It has not been determined whether or not the welding rods used contained asbestos as part of the outer flux coating
Both area and personal samples were collected at each location The personal sampler worn by the welder was attached to his shirt front outside
his welder's helmet
Personal protective devices for asbestos were not used during the welding tests IITRI judged the exposure levels to be low in the welding areas and
felt the welder's helmet afforded some protection
Significant quantities of fumes were emitted during the welding operations In addition to a potential asbestos hazard welding fluxes emit fluorides and metal fumes which are of industrial hygiene concern especially in poorly
18
ventilated or enclosed areas One common technique used to control welding
fume emissions is to incorporate a local exhaust ventilation system into the
welding electrode Such equipment is commercially available and can be readily adapted to shipboard use Its capability to remove asbestos fibers can be
measured and if required improved Such equipment could reduce several
potential health problems The results are presented in Table 6
.
Table 6. TEST OPERATION WELDING OPERATIONS
Code
Type
Duration
min
Sample Location or Description
Fiber Concentration
cc
010404 Personal
16
010606
Area
26
010511 010522
Personal Area
10 120
010722
Area
120
4
Worn by observer acting as assistant
Dust background during set for welding port wall 15 from test site
Worn by observer acting as assistant
Port wall from test site 2 hr
sample following test
Port followed previous area
sample
4.5-5.0 est 0.2
2.2 est
0.4
0.2
*
Concentration too heavy to count accurately due to
loading
large total
particle
Two of these samples 010404 and 010511 presented the analyst with a
special problem Welding fumes form straight chain agglomerates These chain
agglomerates are counted as fibers when adhering strictly to the NIOSH procedure
The the 10
fiber concentrations reported are estimates of the fibers present excluding welding agglomerate artifacts The concentrations reported represent about of the total fiber count obtained using the NIOSH procedure Due to the
difficulty in the analysis and the heavy
it was concluded that these tests do not
loading of fibrous metal fumes
permit the assessment of exposure to
airborne asbestos fibers from welding operations It is again mentioned that
welding produces fluoride and heavy containing fumes that are subject to
OSHA regulations
19 19
5.3 BRAKE CLEANING AND OPERATION
One of the most common uses of asbestos is in friction materials such as brake shoes and clutches Asbestos emissions resulting from a large number of
brake applications have been measured in the ambient air near toll
collection points by Murchio During one voyage an open brake drum in an enclosed minimal ventilation cordage storage area was tested as was a winch
motor whose brake was enclosed
* 5.3.1 Enclosed Brake Box Cleaning
-
It was determined that the anchor winch brake box had not been opened for
cleaning or repair for slightly over one year and arrangements to clean the
brake enclosure were made The method suggested was to moisten the dust and
then brush or wipe the dust into a bucket of water The assigned personnel elected to use a portable blower to save time
High exposure levels were anticipated from this air blowing technique and all nonessential personnel were removed from the area those whose presence was required were stationed upwind of the operation and fitted with respirators
ERNE
ERNE
8,
ten
or Me
9
Oe
AN
e
ee
ee
ee
ena
Oe Te
vnmer
oak
operator's legs on the opposite side of the cloud
The operation was interrupted and not completed for two reasons
+ the presence of rain squalls in the area
rs
or > the intervention of the first engineer at IITIIRTRII''sITRI'ss request to cease the test
Even though the cloud dissipated rapidly it was the concensus of the technical
mae
observers that an alternative technique must be developed to clean enclosed
brake boxes
confirmed by
That the potential exposure
the visible discoloration of
from this operation was high the area sampler filter
was
The sample collected from the dust cloud presented an analytical problem Since it was very heavily loaded with material a dilution step was necessary prior to analysis of the sample A wedge representing fourth of the
Murchio J.C. et al Asbestos Fibers in Ambient Air of
one
California Air Resources Board Sacramento CA. March 1973
eT
20
OR
we
filter was cut and suspended in particle water an ultrasonic bath was
used to remove the particles from the filter wedge and suspend them in the
water The suspended particles were filtered onto a second filter which after
drying was analyzed in the usual manner
The
accuracy
of
the
result
result
given given
given
in
in in
Table value
7 is considered due to losses of
to be 25 to 30 with a tendency to be
material during the dilution process
below
the
true
Code 010513 010501
v
Type Area Area
Table 7. TEST OPERATION BRAKE OPERATIONS
Sample
Duration
_ min
Location or Description
4
Approximate 1 ft from dirty
area of brake
4
Within 10-12 of operating open
brake drum The brake was
operated 10 times in a 10 min
period
.
Fiber Concentration
cc
70 est
2.09
*
This sample was heavily loaded and the sample could only be counted after
a fourfold dilution
The concentration level 70 fibers found in the cloud generated by blowing out the brake enclosure was the highest found during the study and exceeded
the ceiling exposure of 10 fibers forced air blowing should be stopped
It is concluded that brake cleaning by
5.3.2 Open Brake Operation
The winch used to had an open brake drum
release during braking
take the hawser used at the dock to tie the ship located in a room in the stern of the ship Asbestos has been a matter for controversy in the scientific
community One report to asbestos minerals
states
by the
that the asbestos in temperature rise due
brake linings is coverted to the friction during
operation Another study shows a significant rise in ambient asbestos levels
observed near toll booths where use of vehicle brakes is mandated Since
11
Jacko M.G. et al
81 38-40 1973
Bow Much Asbestos Do Vehicles Emis Auto Engr
21
it is possible that fiber emissions may result from use of an open brake a
-test was made to measure fiber emissions during use of the brake An area
sampling pump was set up with the filter face filter was suspended down at a
suspended near the brake distance of 12-15 in from
The the
opennearest
edge and
of the
during
brake shoe a minute
The test personnel went to the controls on the stern
period operated the winch ten times The sample was
then secured and the test operation ended
As can be seen in Table 7 the operation of the open brake produced
concentrations of 2.09 fibers If personnel were exposed to this concentra-
tion for an hour period the OSHA standard of 2 fibers would be exceeded
While use of the brake system results in allowable fiber concentrations in the
room during operation
the airborne asbestos
of the fibers
winch the lack of adequate generated will result in an
ventilation to remove accumulation of asbestos
fibers in the area through settling These settled emissions can be reentrained
when the area is cleaned or the cordage disturbed for use The material can
also spread throughout the ship
and
It isrecommended that
brake to prevent direct
such rooms be unoccupied during
exposures or the brake enclosed
use of the winch to eliminate the
direct emissions The latter solution is dependent on the development of
brake cleaning techniques combining dry vacuum cleaning wet wiping drop cloths and other good housekeeping practices This action would eliminate open brakes as sources of airborne asbestos emissions within the working and living
quarters of ships as well as avoid extreme exposures during routine cleaning
of the enclosed brakes located on the open deck
5.4 VALVE REBUILDING OPERATIONS
There are several steps required to remove rebuild and reinstall a valve or to regasket a flange two of the more common performed repairs involving containing materials The basic steps required are
valve or flange removal flange cleaning and packing removal * gasket cutting packing cutting and shaping valve repair only assembly
installation
22
The first two and last two steps are part of pipe and insulation repairs
The shop operations of gasket cutting for the flanges and preparing new
packing rings for valves are the steps included in this test
A valve was selected for the test from the spare parts storage area The
valve was a 2 in packed valve The worker spent time attempting to cut two
gaskets for the flanges
material was labeled as
from an old dried piece of gasket material containing asbestos and tore rather than cut
This The
gaskets were then cut from Everseal HP jointing material which also had an
asbestos caution label
The gaskets were cut using a pin and blade compass device Each gasket required an inside and outside cut The bolt hole locations were
marked and the material removed using a punch
1
In preparation for fabrication of the packing rings the worker brushed
the scraps and crumbs of gasket material out of his way The packing rings
were prepared by tightly wrapping packing around the valve stem seven or eight times cutting the rings to length and flattening the square packing with a hammer prior to shaping the circular rings The tools used were a homemade
knife sharpened hacksaw blade and a hammer
Samples of the two gasket materials shop area samples and personal samples measuring the exposure of the worker were obtained during this operation The results of analysis of the air samples are given in Table 8
Table 8. TEST OPERATION VALVE REPAIR AND GASKET CUTTING
Code 010505 010502
Type
Personal
Area
010501
Area
Sample Duration
min
Location or
Description
33
Worn by operations participant
29
Near work bench about 5 from
operations
360
Background after test includes
clean
Fiber Concentration
cc
0.23 0.17
0.02
23 23
^'
of of exposure
exposureexposuerxeposure exposure
found foundfoundfoundfound were were were low lowlow , well well wel wel below below below below the the
fibersfibers / the level the ( 2.0 2.02.0
fibers fibers fibers fibers
and
) cccc andand
:
a
the the
proposed proposed proposed propospedroposepdroposedproposed
OSHA OSHA OSHA levellevel level
intersting detcion interestinginteresting interesting interesting interesting interesting interesting interestinginteresting about aboutabout about about this this thisthis test test test test is is thethethe
detectiondetection detection detection
detction detection detection
of
of
fiber fiber
that
rules
detcion While While While While this this this this
test test shows showsshowsshows thatthatthat that accordinagccording according according
according acording to to
test levl lev l logic in in an acceptableaceptable acceptable aceptable aceptable aceptable aceptable exposurexposure exposure exposurexposureexposureexposure exposure levellevel
,
logic logic logic logic and and and experience experience experience experience
an
aceptable clean gasket gasket
gasket gasket removalremovarlemovalremoval removal removal
from from a
flange flange flange
or or clean clean clean clean - out
,
ofof aged aged aged aged packing
indicate indicate
would operations operations Another out valve valve wouldwould would
be farfarfar dustier dustier dustier dustier dustier dustier operationsoperations operations operations
operations operatioonsperations .
AnotheArnother Another Another Another Another
important
important important important important important
fact
would indicates indcates betwen between between betweebnetweenbetween
the
areaarea area and
personaplersonal personal personal personal personal samplesasmplessamples samples samples samples samples , which which which
indicatesindicates
the relatively personal conetraion relatively uniform shop shop
work
work
areaarea area
waswas was at at a relatively relatively relatively
relativelyrelatively relatively uniform
uniform uniform uniform uniform concentratiocnoncentration concentrationconcentration concentration concentration concentration concentration concentration
concentration
.
work
cored during during during during during during the the the study studystudy study study . SpecificaSlpeycifical ySpecificaly Specificaly Specifcaly Specificaly Specifcaly Specificaly SpecificalySpecifical ySpecifcaly Specificaly , theytheytheythey areare are :
?
} *
clean clean clean - up up fromfrofmromfrom the the the piping piping piping piping piping piping andandand
routine routine routine routine routine routine routine cleaningcleanig cleanincgleaning cleaning cleanig cleaning cleaning byby a wiper wiper wiper wiper wiper
repairs
lagginlgagginlgagginglag ing laging lagging laging repairs repairs repairs repairs repairs repairs
standers during during during
the the the
night night watchwatch watch watch watch during
measure measure measure measure measure measure
airborne airborne airborne airborneairborne airborne airborneairborne
Fiber
Fiber
Fiber Fiber Fiber
attributable atributable
atributable atributable atributable
atributable atributable atributable atributable
atributable atributable
at ributable
to to all all all
and and and the the the night night night night
watch watch
activities activities activities activities activities activities activities activities activities activities , includ includ includ includ includ includ 7 a (5
.
oX tht
-
f
During During During During
the the the day day day work work work work period period period period period period , no no repair
During control control control control area area area area .
,
r
repair a ) 40
-
1} "
PisingPising Pising Pising Pising Pising andanad nd Lagging Lagging Lagging LaggingLagging Lagging Lagging Repair RepairRepairRepair RepairRepair CleanCleanClean Clean Clean -Up Up
were were
were two
two
repairs
repairs
reparires pairs repairs repairs
repairs
performed
performed performed performed performed pperformeed rformed performed
duringduringduring during during during
requires
containg two materials The were
asbestos - containing
containing containing containing containing containg containing containing
waste waste
waste
waste
materials .
The
on
relay
relay
or
or
,
oO. :
:
24 24
bucket The scraps were thrown or dropped into the scrap buckets with no precautions taken to minimize dust release
After the
larger
picked up the two clean procedures
diverged In one instance the into a dust pan and dumped into
superficial dust and smaller chips were swept
the scrap bucket In the other clean
procedure a standard shop vacuum was used to pick up the dust from all sur-
faces including adjacent equipment and the personnel This procedure should
have been superior to the first but the vacuum either had a faulty bag or
the the
bag
air
was an inefficient filter A visible dust cloud could from the vacuum cleaner exhaust This resuspension of
be seen entering
dust into the
air where it can be inhaled is unsatisfactory unsatisfactory The vacuum cleaner should be
powerful and fitted with a High Efficiency Particulate Air HEPA filter
Under these conditions a vacuum cleaner is the best available dry cleaning
method
The crew that used a
Preliminary data indicate Improper application of a
wet down and wash away
broom completed cleaning by hosing the area
that the hose may have been too vigorous water jet can aerosolize the dust it is intended to
Table 9 presents the results of samples collected during the lagging repair clean Table 10 presents the results of samples collected during the clean after the piping repair
Table 9. TEST OPERATION CLEAN UP AFTER LAGGING REPAIR
Code
010210 010219 010218 010212 010213 010223 010222
Type
Area Ss Area Personal Personal Personal
Area Area
Duration
min
4 4 4 4 4 120 120
Sample
Location or Description
Approximately3 downwind of repair Approximately 7 upwind of repair downwind of clean Observer area of clean This pump failed to function properly
3 from work area
7 from work included the final
hosedown
*
ND = No fibers detected
25
Fiber Concentration
cc
2.5 2.6 3.3 2.4
-
NO 0.12
Table 10. TEST OPERATION CLEAN FROM PIPING REPAIR
Code
Type
010912
=
010720
010917
Area
= Area
Area
010716 Personal
010508 010701
Personal Personal
Duration
min
22 22 22 22
22 4
Sample
Location or Description
Located one deck below repair site
,
Near exhaust ventilator intake
Near repair site
Observer near wiper cleaning up lagging
Observer near vacuum cleaner exhaust
Worker transferring lagging waste for final disposal 3-5 min period during which clouds of dust were
visible
Fiber
Concentration cc
0.11 0.85 0.27 0.24
1.92 3.40
The clean procedures following the two operations involving the removal of pipe lagging show some of the highest exposure levels measured during the program The magnitude of the exposure levels suggests that asbestos waste
clean procedures are inadequate and need to be modified Dry sweeping or
ee
e dumping of these wastes should be avoided since exposure
OSHA limit for an hour work shift may be generated
levels
exceeding
the
The vacuum clean of the work area after the piping repair operation
e generated exposure levels lower than after the lagging repair The greatest
exposure was near the vacuum cleaner and resulted from dust penetrating the
ee
filter bag Attachment of a more efficient filter such as a HEPA filter to
the vacuum cleaner is recommended for clean of containing debris
5.5.2 Routine Duties of a Wiper -
During one watch a wiper wore a performing his routine duties
personal
sampling
pump
and
filter while
The duties performed during the monitoring period included
26
wet mopping
dusting and sweeping of machine shop done both in the morning and afternoon
* cleaning area where welding had been performed
* storing the arc welder power cables
ion
* cleaning electrical shop
* conducting miscellaneous cleaning chores
The total monitoring time associated
work was approximately 2 hours A fiber
measured as seen in Table 11
with the wiper's
concentration of
engineroom cleaning
0.11 fibers was
5.5.3 Monitoring of Watch Standing Personnel
Much of the project activity consisted of collecting background samples and samples of specific activities being done aboard the ship On one day
when the personnel involved in the test operations were occupied with essential duties two of the IITRI staff stood a watch wearing personal samplers One
trailed the deck mechanic and the other the watch engineer The engineer and
mechanic shared the duties of making the rounds During the inspection and data logging trips the watch personnel inspected most of the areas in the
three lowest decks of the engineroom the rooms containing refrigeration equipment and the steering mechanism at the stern Personal sampling pumps were operated throughout the watch
A similar test was performed at night mechanic on duty during the watch
A personal sampler was worn by the
The in Table
results of monitoring engineroom 11 showed that the wiper whose
personnel during normal duties routine duties include dusting
given
and
mopping was exposed to a low but significantly higher than background level
of airborne fibers The watch standers had exposure levels of 0.01 to 0.04
fibers during the hour watch periods
8.
+ 2 eee
fanene
i T lrew ndenen nem ee der a
venir
:
ee ee
an
-:
: a
: -
pr
Table 11. TEST OPERATION MONITORING OF ENGINEROOM PERSONNEL
Code 010610
Type Personal
010519 Personal
010512 010414
= Personal
...Personal
Duration
min |
150
240 240 240
Sample
Location or Description
Worn by wiper during normal cleaning
duties
Worn by engineer pm watch
Worn by mechanic pm watch
Worn by mechanic standing 8-12 pm
=
-
watch
Fiber Concentration
cc
0.11
0.01 0.04 0.01
5.5 BACKGROUND MEASUREMENTS
Table 12 presents the results from background samples collected in the engineroom and at other selected locations and times during With four exceptions the levels are very low ranging from no fibers 0.06 fibers for the hour sampling periods
each night
the program detected to
On October 3 1980 a high fiber concentration of 1 fiber was obtained
sample near the bottom of the deserator
010515
0.13 fibers was obtained on level 7 one level
A concentration of above the deaerator
On the
following night ,
October October 4
1980
1980
elevated ffibier befr ibefirber concentration concentration
levels levels
were
were
obtained two levels below the deaerator sample sample 010518 and at the intake of
the engineroom exhaust fan sample 010608
On October 9 1980 it was noted by the IITRI staff and the first engineer
that a long section of lagging had eroded It is believed that the high fiber
concentrations between sea
were a
ships
direct result of the erosion
motion and elevated background
This apparent relationship
fiber counts may be a
potential source for regular relatively high exposure to airborne These exposures would be independent of any personnel activities
fibers
5.7 EVALUATION OF SAFETY PRECAUTIONS
The specific safety precautions taken
during all of the test operations
consisted of using either
The use of such equipment
disposable or
for personnel
self powered air purifying
protection is approved for
respirators
concentrations
28
Table 12.
BACKGROUND ENGINEROOM SAMPLES
nan
Sample
Date
Sample
Code
Location
9/23/80
10/3/80 10/4/80 10/5/80 10/6/80
8
10/6/80 10/7/80 10/8/80 10/9/80
010204
010207
010203 010206 010202
010205
Control console area Near front side boiler Near starboard side boiler Lower starboard boiler
Lower level boiler
Field blank
010709 010604 010810 010515 010609
Control console area Turbine generator area Level near steam return manifold
Level port side near deaerator Level foreward hot water return
010521 010611 010518 010614 010608
010710 010607 010817 010818 010705
010709 011613 010902
Control console area
Level -- machine shop Level crosswalk above deck Level crosswalk above deck
Level near starboard exhaust ventilator
Control console area
Level near boilers
Level Level Level
near boilers damage to insulation attached to lube oil gravity tank
near starboard exhaust ventilator
Control console area
Level starboard stairs wall Level starboard exhaust ventilation
010422 010421 010417 010416
Air conditioner intake plenum
Control console area Level foreward
Level starboard exhaust ventilator
010520 010601 010413 010510 010612
010603 010412 010423 010702
010724 010405 010713
Control console area
Machine shop Open brake cordage storage area
Level near starboard exhaust ventilator
emergency generator room
Control console area
Level afternoon boilers
= Level starboard exhaust ventilator
Air conditioner intake daytime
Control console area
Level near prospective repair area Level starboard exhaust ventilator
2 Background sampling time = 6 hours
* NO = no fibers detected
29
Fiber
Concentration cc
0.01 0.03 0.04 0.06 0.01
ND
0.01
ND
0.01 1.00 0.13
0.02 0.03 0.13
ND 0.41
ND ND 0.01 ND 0.03
0.03 0.01 0.03
0.06 0.02 0.02
ND
0.01 0.02 0.03 0.01 0.01
0.01 0.02 0.03 0.05
0.03 0.05 0.01
=
limits PEL During the work in the
up to ten times the permissible exposure
no enclosed spaces
concentrations exceeding these values were found thus the
While the estimated local concentrarespiratory protection used was adequate tion during the brake box cleaning exceeded the limits the working and observing
personnel were not breathing the highly concentrated dust cloud Only one
person was close to the cloud and a brisk breeze swept the cloud away from his
breathing zone
i Personal sanitation under the direct control
and laundering of contaminated clothing were not
of the IITRI personnel however instruction advice
the benefit of good examples were used to encourage the use of proper
and
were cleaned
practice in these important areas All contaminated respirators
and the disposable filters or respirators packed in plastic bags sealed and
labeled asbestos waste by IITRI staff The bags were given to the ships
crew for ultimate disposal
The protective devices used during this study adequately protected the
personnel involved in conducting and observing the operations However the operations were small in size Potential repair zones were observed
fiber concentrations might exceed those experienced in the present study
all where due
to combinations of local ventilation and the magnitude of the mainten-
ance operation Ships personnal informed the IITRI staff that the more extensive repairs are usually done in American ports or dock by shore
personnel Since this study was limited to repairs routinely carried out by shipboard personnel no effort was made to have the crew undertake larger repairs on this study However since larger repairs may be made by shipboard personnel in emergency situations the potential hazards of larger operations
should be considered when revising work practices
5.8 DISCUSSION OF OPERATIONS
During the tests formulated to minimize
current work practices were observed and recommendations emissions and exposures There are two categories of
repair to Emergency
result in
piping and other repairs were not
similar exposure
insulated emergency and routine maintenance part of this study although emergency repairs can
of ships personnel to airborne asbestos fibers
Routine maintenance of piping and insulation sea is performed selectively
30
based on manpower and safety considerations and the priority pairs to
other operating systems aboard ship
When repairs involving the removal or disturbance of lagging or insulation
are performed several precautionary measures not currently used are recommended
to reduce emissions and limit exposure to asbestos These include the
following
Personnel not actually involved in the repair should
be excluded from the work area . -
i
+ Plastic sheets should be arranged to catch falling
insulation
* Insulation insofar as practical should be wetted prior to removal
+ The removed pieces of lagging or insulation should be placed in a plastic bag which contains water
+ All personnel whose duties require them to enter or pass within 15-20 feet of the operation should wear respiratory protection
+ Ships personnel engaged in the repair should wear either disposable or special clothing upon completion of the repair the clothes should be changed and
personnel should shower immediately - ATTclean of containing waste should be
done using wet methods or vacuums fitted with highefficiency particulate air HEPA filters
* Contaminated clothing should be placed in clearly
marked containers
* Protocols for the final disposal of asbestos debris and contaminated articles need to be developed
Shipboard personnel were noted to have varying attitudes regarding working
with asbestos The attitudes range from avoidance to so what it's too late
for me
Ge
To
~
6. CONCLUSIONS AND RECOMMENDATIONS
In this section the conclusions based on all the data are detailed detailed first followed by IITRI's recommendations
6.1
;
CONCLUSIONS maintenance The test data clearly indicate severalseveral shipboard repair and maintenance maintenance | eemee
| to airborne fibers At this point the data
ee
operations that involve exposure
ee
reveal that shipboard personnel are frequently exposed Neither the
Re
do nontot reveal
hour time weighted average TWA OSHA limit of 2.0 fibers per cc cc or
wee
| the ceiling exposure limit CEL of 10 fibers is regularly exceeded
| The data show that during certain maintenance operations and the
associated clean fiber concentrations exceed 2 fibers The operations monitored involved time periods of less than a full work shift thus the TWA
is below OSHA limits However if these operations or similar tasks were
conducted over longer time periods the
exists One operation the cleaning of
potential to exceed the OSHA limits brake boxes using air exceeded the
CEL limit The existence of a situation where either the TWA or the CEL
exposure limits can OSHA regulations to
be expected to be exceeded requires
eliminate or control the emissions
an industry covered by Thus this brake box
cleaning procedure should be eliminated controlled or modified to reduce the
emissions
In several operations fiber concentrations were measured at levels
sufficient to warrant concern by MarAd the ship owners and the personnel
performing the tasks represent the greatest
Clean procedures used after
cause for concern followed by
lagging lagging
or pipe repair removal The
short term exposure levels measured during these operations exceeded 2 fibers
Welding operations require further study Due to the heavy fume emissions the
fiber counts reported are questionable However asbestos is not the only nor
perhaps even the primary health hazards associated
respirable
with other
material emitted during welding Potential
emissions may govern any action taken
Two maintenance events were observed that require attention
32
These are erosion of lagging and the operation of open brakes within
enclosed spaces
Common ship
| above background
operations
levels but
and routine daily clean gave fiber
well below current OSHA standards
Crew and officer attitudes toward asbestos hazards should be
concentrations of concern
4
The training of personnel and enforcement of any preventive and protective
measures taken will require methods more effective than those currently in
3
place
The conclusions are summarized below
The time weighted average of shipboard workers does
not exceed 2.0 fibers the current allowable maximum maximum
* One operation brake box cleaning using air to blow the accumulated dust from the enclosure exceeds the ceiling
exposure limit of 10.0 fibers
* Higher exposures were measured during the clean of asbestos lagging materials than during the removal
operations
Asbestos waste clean procedures produced short term concentrations exceeding 2.0 fibers
* The use of a vacuum cleaner reduced the exposure of the
clean personnel at the point of pick but increased
exposure at the vacuum cleaner exhaust
+ The standard vacuum cleaner very efficiently puts fibers
into the air Vacuum cleaners used to clean asbestos debris should be fitted with HEPA filters
+ Detectable concentrations of airborne fibers are generated during small tasks such as gasket cutting and repacking
of valves
+ Personnel who perform routine cleaning stir up small
quantities of fibrous dust
* Open brakes on winches and hoists emit measurable quantities of fibrous dust
motion
* Ship vibration and motion can erode lagging causing higher than normal fiber concentrations in localized
areas for at least 24 hours
+ Most minor repairs in ventilated areas require only the use of a disposable or powered respirator to provide adequate protection for the worker
continued
33
Some changes in work practices and in equipment would
eliminate most of the exposures found during the study
Additional emphasis on crew awareness of asbestos hazards
are needed and a method to enforce safety rules is essential
6.2 RECOMMENDATIONS
A number of standard work practices aboard ship should be modified to
reduce the overall exposure of shipboard workers to airborne asbestos fibers - one practice should be abandoned Recommendations are given below
Based on the data the cleaning of any enclosure containing a mechanical
brake by means of air blowing or a compressed air hose and nozzle should be
prohibited unless all personnel in the area are equipped with powered
respirators impervious protective coveralls and the area itself is isolated
from the balance of the ship Isolation includes all air intakes and passages
available to any unprotected personnel A negative pressure airlock shower
room
and
change
area would
also
be
required
for this
practice
to
to to
be
acceptable
The development and use of an alternate cleaning procedure is recommended Candidates are water jet cleaning which would include a thorough wetting of the dust before hosing application of a cleaning fluid followed by manual wiping and brushing of the dampened dust a combination of these two methods i.e. wetting the dust with scraping and wiping of the bulk of the material into a container followed by pressure water cleaning of the enclosure or vacuum cleaning of the enclosure using a velocity nozzle Any procedure
selected should be evaluated to determine exposure levels and the need for
personal protection Any vacuum cleaner used to clean up wastes suspected to contain asbestos must be fitted with HEPA filters Protocols for a safe method
to empty the bag and dispose of the hazardous waste resulting from collection
of containing materials must be developed and implemented
Based on the observed distribution of the labor time it is possible that
exposure levels exceeding OSHA standards could result during larger repairs
e
ee
where more lagging is removed and more time is spent on a particular job or
Oe
when the repairs are conducted in poorly ventilated locations These factors
owe
plus
that
evidence supporting a lowering of the TWA as
an educational program should be implemented
proposed by OSHA indicate for shipboard personnel
34
The educational program should provide an awareness of the hazard skill in
use of personal protective devices and knowledge of appropriate disposal
procedures and good work practices
The shipboard work rules should include
Use of approved respirators when handling cutting or removing materials known or suspected to contain asbestos
clean approved equipment Limitation of
up methods and
to
vacuum cleaners and wet methods
. vacuumcleaners must be of a type approved
for asbestos collection
wet methods must include prewetting procedure before general hose
- Special instruction on personal hygiene use of either disposable clothes or change and special laundering procedures
full shower or thorough clean immediately following asbestos contact and prior to eating or smoking
Control of access to areas when containing
materials are being worked
:
Control of spread of waste asbestos by means of
drop cloths local ventilation when needed and wetting of all asbestos waste upon primary pick
* Modifications to disposal methods to minimize emissions during removal or handling of asbestos wastes * make a single repository available * clearly label waste containers as an
asbestos hazard
Personnel may be exposed to asbestos and other airborne particulate
matter welding fumes in particular in the shop area If well ventilated
the shop area may not be a significant source of exposure It is recommended
that efforts be made to assure that each shop is well ventilated and that the
ventilation is designed to exhaust air from the bench grinder lathe and
other potential emission sources out of the ship
It is recommended that the
ventilation be ducted into the
blown into other larger spaces
boiler or independently exhausted
for dilution
rather
than
The results of this program indicate that some additional effort is needed
35
to determine the numbeorf open brakes in enclosed spaces and that effort be
made to eliminate the potential exposure from these open sources of emissions
At a minimum shipboard personnel should be kept out of the area when the
equipment is operating The preferred solutions are either to enclose the
brake completely or to exhaust the emissions through a hood Since enclosing the barke leads back to the worst case emissions found during the study the
recommendation of this report is to provide electrically interlocked exhaust hoods to remove the airborne asbestos fibers from the area as they are generated Asbestos toxic brake shoes should be obtained if available The
replacement of all enclosed brake shoes with alternate asbestos toxic
ens
material is the best term solution to this problem
cote
The study also indicates that an immediate going inspection of pipe
lagging for actual and potential erosion or vibration wear should be begun The pipe lagging erosion noted during this study if repeated with different
ventilation and traffic patterns could produce a significant exposure to
shipboard personnel
ee
e The recommendations are summarized and highlighted as follows * Change the cleaning procedures for enclosed Drake boxes
Prepare and put into practice work rules to include
e
Use of powered respirators during disturbance to suspected containing
material
Use of special equipment and during clean of suspected containing materials
procedures
asbestos-
+ Improve personal hygiene and laundry practices for personnel working with
suspected containing materials
Control access to work sites
Improve waste disposal and handling
practices
+ Measure and if required improve ventilation in the shop area
- Take measures to eliminate or enclose open brakes
operating in enclosed spaces
35
Institute an inspection and maintenance program to
materials
locate and repair eroding containing materials
IITRI recommends that any future tests be under greater control of the
personnel responsible for the test Control of test conditions should include
authority over personnel especially with regard to equipment and work practices
control of access to the test site
~ Yy
control of decontamination and waste disposal operations
scheduling and site selection
37
REFORT DOCUMENTATION
i FAGE
fte - Subtrie
. 1. REPORT NO
*
930-81027
~
1 Assessment of Asbestos Concentration On
Maintenance and Repair
7. Autho
TT
.
7
David R. Jones
;
7. Pamming Organization Organization Henue and Address
Marine
*
--
Fe . Vessels
IIT Research Institute 10 West 35th Street
Chicago Illinois 60616
.
{
:
i fP
-
amoring Organization Name and Aduress
U.S. Department of Commerce
Maritime Administration
14th and E Streets N.W.
Washington D.C. 20230
.
15 Sumentan Sumentan Nues
Project Officer Mr. J. Seelinger 377-4826
11. Recipient's Accessi~ im Ni
3. Report Date
~~ os
, February 1981
rs
8. Performing Organization Rep Na
: C6483 Final
. 10. Task.WoTr ask.k Work Unit Ha
|
Contract
Grant
7 111. MA-SA- C-01008
C.
SAC
(Gs
11. Type of Regum & Period Ci Ci
:
Final
* 34
2/80 to 2/81
|
--
16. Anbar Limo 300 Wran
This report contains a listing of containing materials board
ships and the repair or maintenance tasks during which the materials might be disturbed Tests measure the potential exposure to airborne asbestos fibers
during routine repair and maintenance operations were done Included in the
test operations were pipe repairs shop work welding and cleaning both routine and of containing wastes Background fiber concentrations
were measured
The primary exposure risks were found during cleaning operations and removal of pipe lagging One routine operation cleaning brake enclosures produced airborne fiber concentrations exceeding the ceiling exposure limit
and several operations have potential to exceed the permissible exposure limit for airborne fibers
Exposures can be minimized by proper use of personal
and of modified work practices
protective equipment
7 ni ;
:
|
;
' t
lo;
|3
{
|
| me:
t {
!
i
1
: :
'
,
ene
~
!
.
us Sep - Anal 813 Descripters Descripters
Asbestos Fibers
Hazardous
Exposure
Procedures
bident.lem bident.lem Over Indied Term
Emissions
Occupational Exposure
|3
-
ol:
:
;
COSATI FiekerGrous
10. Auditaminy Statemer Approved for Release
National Technical Information
Springfield Va 22161
Service Service Service top Cine Cine Repai
20. Security Class in I
1500 237.181
See instrucimas am Hoontre
8h NJ al Pog
38
'
32Face
|
OPTIONAL FORM 272
2"