Document QJKKYqmqkdJExByJDdn15ZK38
MONSANTO COMPANY
ORGANIC CREMIGES DIVISION
W.G.K'*'
^tiANT
STANI''
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\
Supersedes: Process I k 2,4-Dichlorc
FOR
^ f -..U -. :*V S.V"
.or Manufacture of Crude/V^.;^ '.
, dated April, *1965; , \ ^
'
*s'.V- ..-"r V;\y. V,.V-1*!'
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Prepared by . Paul A. Erzer
Approved by
H-
* Malone.^pw^L>/*"^ .
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i--. H . . f i . C s t v p t - ' . ^
This report contains confidential information .which is*'th^'-.^
property of; the Monsanto Company and which shall .-be.,disclosed;./"ViV
only, to duly authorized persons. The r e c i p i e n t s held
,.;;-
accountable for the filing and safe custody of 'the report
.-u '/
which must be returned on demand. *'.
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/to U' Issued: fajnasbe*, 1968
,
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Copy 7 of_ / 3 L .
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K03109q
MONSANTO COMPANY ORGANIC CHEMICALS DIVISION
W.G.KRUMMRICH PLANT
STANDARD MANUFACTURING PROCESS FOR CRUDE 2,4 - DICRLOROPHENOL
Supersedes :
DEPARTMENT 236 '
`j i 1,
. lift',
-V.. -
Prepared by
This report contains confidential information .which is\the'1 r ' *
property of :the Monsanto Company and which shali-be,. dis closed.
only, to duly authorized persons. The recipient is held
V
accountable for the filing and safe custody of the report :;Y|. " .
which must be returned on demand.
:-'r.--'
/io ia Issued: fuygsmUn, 1968
Copy y of_
j.
K3lO 98
DISTRIBUTION SHEET
1 . Technical Information Center - JFQ
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2. Technical Infonnation Center - JFQ,
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3 . Central Reports - GO (Forward to permanent file in El Dorado/'Ark.)
4. Technical Production Manager - H. C. Carder - GO
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3. Production Generl Superintendent - E. D. Malone"S*WGK\. .
6 . Production Supervisor - R, L. Fields * - WGK v:;.
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7.
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WGK Technical Services Department Group Leader-- T.--E;'tGre`enman;'c:% ..
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8 . -WGK Process Research Section - CD. <C. Armstrong ? *
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9. WGK Plant Library
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K03L099
SECTION I SECTION II SECTION III
* SECTIO N IV
A PPEN D IX A A PPEN D IX B A P P E N D IX .' C* A PPEN D IX D A PPEN D IX E A PPEN D IX F . A PPEN D IX G A PPEN D IX H A PPEN D IX I A PPEN D IX J A PPEN D IX K A PPEN D IX L A PPEN D IX M A PPEN D IX N
TABLE OF CONTENTS
; PAGE
SYNOPSIS O F PRO CESS
FLOW SHEETS
- 3 ' /: .
P R O C E S S IN D E T A IL A . CHARGING CHLORINATOR AND
. SCRUBBER B . CHLORINATION C. PU M PIN G AND AERATION D . HC1- H A N D L IN G
CO M M EN TS ON PR O C ESS
A . RAW M A TERIA L YIELDS
B . CA PACITY
C. QUALITY
.
:
EQ U IPM EN T LIST
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FINISHED GOODS AND RAW M ATERIA L ' ;-.1 4 r - '- -
SPECIFICA TIO N S
. ">777-~*./r-.
s' ". * : Vi--'-,,*- 7 P H Y S IC A L C O N S T A N T S D A T A S H E E T S ' . * V"-Vl ' 1 5 - ^ 7 7 ; -7-7 *. .
U TILITIES
7 :;7,77
-77,;7;7 =
PERSONNEL
PACKAGING AND SH IPPIN G ' M A TERIA L BALANCE
7 --. - -
.;;.
'-V`7 7 7 197 27 7 # > ;
A T M O S P H E R E - S T R E A M D IS C H A R G3E .* '* v s '2 2 7 7 7 - 7 . 7 '
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PROCESS CONTROL
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....
SA FETY AND TOXICITY DATA AND
24
ACCIDENT R EPO RTS
-rfv' 7
v . - -V*r BACKGROUND OF PRO CESS AND ANNUAL
REMARKS
*l/ '"*\:i;* -
TIM E CYCLES
26' ;
Q UALITY CONSIDERATIONS
- 27/
M ISCELLA N EO U S
28
K031IOO
a m en d in g r e c o r d s h e e t
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K 03II0I
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Dept. 236 - Process Description
CRUDE 2,4 DICHLOROPHENOL
<v \
SECTION I. - SYNOPSIS OP THE PROCESS
-
-'
.
Crude 2,4 Dichlorophenol is produced by the batchwise chlorination . of phenol and high parachlorophenol content fractions (minimum- ratio '
of phenol to ortho, of 4:1) from Dept.,237 using;snift gas chlorine, at a pressure of 2-4 psig. The chlorination is carried out between 70-90C. to a specific-gravity of 1.400-1.4o4.' The finished-product contains approximately 88# 2,4-Dlchlorophenol', 7-5#.2,6-Dichlorophenol, 2.5# 2,4,6-Trichlorophenol and 2# Monochlorophenol'The chlorinated product is transferred to a storage tank.to await loading
into tank cars.
- ' j
-'1
The product is used exclusively for production of 2,4-Dichiorophen-.
oxyacetic acid (2,4D.) in Department 262.
: . . * 'r
By-product HC1 gas is scrubbed with phenol, cooled..to ;-condense/out chlorophenol vapor, 'and scrubbed with sulfuric- acick The' HCl' -gas is then either transferred directly to Dept. 217 by pipeline or'absorbed in water and sewered. HC1 gas is used in Dept. .217 for the manufactur
The standard yield on phenol has been established as 9 6 .99# of ' .theory. The standard usage of phenol is calculated as follows:
Std, Lbs, of Phenol Used Cwt. 2,4-DCP Produced
57 *13 = 0.9o9
_ 59 *52 Lbs,/cwt. " -----
1/n11 in?
Dept, 236 - Process Description
SECTION I
- SYNOPSIS OF THE PROCESS
>7 '
YIELDS i (contd.)
The theoretical usage of chlorine is calculated-as
Theo. Lbs, of Chlorine Used _ (2).(70.91) :
. Cwt7 2,4-DCP Produced .
" .163.01 . ,
01 Lbs ;/cwt
The standard yield on chlorine has been established-as. 95< so% :
of theory.
v 7/;Y
The standard usage of chlorine is calculated as. follows': ;
Std, Lbs, of Chlorine Used Cwt. 2,4^-DCP Produced
87.01 07958
9 1 OO Lbs./Cwt,
i
--*X ; - * *
K031103
J.
Dept. 236 - Process Description
CRUDE 2 , V D C P SECTION III - PROCESS IN DETAIL
A. CHARGING CHLORINATOR AND SCRUBBER
The starting raw materials are U.S,P.Phenol -plus fractions, from'; ' .
distilled, chlorophenols operation and "snift" gas chlorine.; Phenol
is transferred at 65C. from the Phenol Department;by steel"pipe v:; .line into a-1 6 ,000 'gallon steel fractions (DCP) strage.' .tanki^;
Fractions are transferred from Dept. 237 receivers into the-':V;'''
- Fractions. (DCP) Storage Tank (Item 103 ) . The ratio-of ;phenol'- to,. .
orthochlorophenol is maintained at a 4:1 minimum in this-tank.* , -
This is necessary in order to insure production of' specification'
grade Crude DCP. Chlorine is delivered from, the Chlorine1;Dept.
directly by steel pipe line.
.;;v*
The batches are charged by transferring th Phenol-S'rubber J v / 1;; charge to the chlorinator. The phenol-chiorphenoi'fractions' r '.-
blend from the Fractions Storage Tank is then charged';to 'the.
Phenol Scrubber to a 40" outage. Additional-fractions frV-/
charged to the chlorinator to increase the quantity of material to 46" outage (#5 chlorinator) or 44-53" outage ("1,2,'3 r'4j'chlorinato dependent on gravity of Phenol Scrubber btch).
B. -CHLORINATION
Th U.S.P. Phenol is chlorinated batchwise`I-t\'a ra'toX5P0"2500 lbs./hr. in a monel system which consists of .a .1,300 glori'/}t;... chlorinator and an 1,150 gallon phenol scrubber. -; The ..chlorinator
is equipped with an internal cooling c.oil and a chlorine,.^sparger
In addition, #3 chlorinator is equipped with a'.steel'shell^arid. ;;;//
tube.cooler. The contents of this chlorinator are continually
circulated through this unit, where they are cooled with well
water.
-. --a \
The Phenol Scrubber Is a Jacketed vessel equipped with/a Turbo- '*
Mixer agitator. This special agitator is used to increase .the
contact of the chlorinator off-gas with the contents'.of they.. ..
Phenol Scrubber. '
. v - / / ; ' / //!; ' '1
While charging the batch, well water Is applied to'.the..coils'in the chlorinator and scrubber. After the batch is .charged, chlorinflow Is started. The chlorine rate is automatically controlled to give a chlorination temperature of 80-90C. The phenol scrubbe: temperature Is controlled at 35-45C. by manual control of cooling water to the jacket. The chlorination Is continued until- the batch end-point gravity of 1.402 at 45/15*5C.(for virgin phenol raw material} to 1.404 at 45/15.5 C. (for fractions and phenol- as raw material) is reached. The specific gravity of the reaction mass is checked at two-hour intervals until the specific gravity reaches about 1.35* After this the gravity is checked more frequently.
K031105
Dept. 236 - Process Description______
..-',5.J ,
CRUDE 2, 4 DCF
V"
SEC TIO N III - P R O C E SS IN D E T A IL
---
-- " *
~~
C. FINISHED BATCH TRA N SFER
t j v ;.-
\\ -
'7
A t th e end of the c h lo rin atio n , the c h lo rin a to r b atch is tra n s fe rre d to
th e 20, 000 gallon s te e l C ru d e D C P sto ra g e tan k (Item 105), /F ro m
h e r e th e m a t e r i a l i s lo a d e d in to t a n k c a r s f o r t r a n s f e r to th e 2 , -4 -D ,>V';Vr, . %
A cid D ept. (D ept. 262).
'
D. HC1 HANDLING
T hroughout th e ch lo rin atio n , the b y -p ro d u ct HCl fro m the chlo rination
p ro c e ss is scrubbed w ith phenol in-the phenol sc ru b b e r by m eans of a
d ra ft tube and ag itato r. H ere, unreacted chlorine fro m th e.ch lo rin ato r
is rem oved by rea ctio n w ith the phenol. T e m p e ra tu re s of 35; -/45C . a re "
m a in ta in ed d u rin g th is ex o th erm ic re a c tio n by co n tro llin g the w e ll'w a te r
flow to th e ja c k e t. '
7 7 - 1 v
E n tra in e d ch lo ro p h en o ls in th e cooled H Cl o ff-g as leav in g the; s ru b b e r
a re re c o v e re d in a B rin k M ist E lim in a to r and re tu rn e d to the P e n ta -
c h lo r o p h e n o l p r o c e s s . T h e H C l o f f - g a s is th e n c o o le d in t h e 'M o n e l o f f - :,*;"
g a s c o n d e n se r (Item 156) to a te m p e ra tu re of 20 - 30 C. T h e c h lo r o -
p h e n o ls r e m a i n i n g in th e H C l g a s a r e r e m o v e d b y s c r u b b in g w i t h 's u l f u r i c /*
a c id in a V e n tu ri c o n ta c to r. T he v irg in su lfu ric a c id h a s a 9 8 % 'assay ; :
A 8 t h e s u l f u r i c a c id i s c o n ta c te d w ith s u l f u r i c a c i d , i t s assay ,an d ;-.;..; ./$'*//
re a c tiv ity d e c re a se and its c o rro siv e n e ss in c re a s e s ./ The su lfu ric acid
is t r a n s f e r r e d to th e s p e n t a c id s to ra g e ta n k w h en its a s s a y is re d u c e d ... 1
to 85% f r e e H^SO*. F r o m h e r e th e s p e n t a c i d i s . l o a d e d in to J t a n k 't r u c k s -
f o r s h ip m e n t to th e to x ic d u m p . O ne 8, 000 g a llo n ta n k c a r .of 98% HjSO* ;
is u se d e v e r y 3 - 1 /2 to 4 - 1 /2 w e e k s w hen s c ru b b in g H C l fro m the" P e n ta - '
c h lo r o p h e n o l, C r u d e D C P , a n d C r u d e P a r a c h l o r o p h e n o l (D ept*/-237 )
c h lo rin a tio n s .
'\Vi-v , v ; : 7
T he clean ed H C l is piped to D ept. 217 fo r u se in th e p ro d u ctio n of c h lo ro - -
s u lf o n ic a c id . E x c e s s H C l i s a b s o r b e d in w a t e r a t a 'd r o w n i n g j e t a n d ;; -r
s e w e r e d . P r e s s u r e 'd r o p th r o u g h t h i s s y s t e m r e s u l t s in th e c h l o r i n a t o r
and phenol scru b b er operating under 2 - 4 psig back p re ssu re . /T h e , :
c h lo rin a to rs a r e equipped w ith a 20 p sig safety ru p tu re d isc , /T h e phenol
s c r u b b e r s a r e e q u ip p ed w ith a 10 p s ig s a fe ty r u p tu r e d is c ,.
/
v *i'.W.'.rvM
K031106
D ent. 236 -- P ro c e s s D e sc rip tio n
CRUDE 2. 4-D C P
SEC TIO N IV - C O M M EN TS ON P R O C E S S
A, RAW M A TER IA L YIELD5
1 P h enol and C hlor ine Y ield
a) C hlorina to r and S cru b b er E n train m en t
The D e p a rtm e n t 237 c h lo r in a to r (#5) is e q u ip p ed w ith a n im p ro v e d
3 -rin g sp a rg e r. W hen th is re a c to r is used fo r C rude D C P m a n u
fa c tu re , th e c h lo rin e flow to th e top rin g is sh u t off w hen b a tc h *
g ra v ity re a c h e s 1. 300. This--is n e c e s s a ry in o rd e r to re d u c e th e
c a rry -o v e r of en train m en t to and out of the phenol scru b b er.a n d the .
re s u lta n t y ie ld lo s s . A t p r e s e n t th e D ep t. 236 C h lo rin a to r (#3)
w hich is u sed p rim a rily fo r C rude D C P, is n o t equipped w ith the im
p ro v e d s p a r g e r. T h is m a k e s it u n n e c e s s a ry .to u s e th e p ro c e d u re
u sed on #5 C h lo rin ato r on the #3 u n it.
.
... :
T he follow ing d ata show s the d ifferen ce in lo s se s w hen the ,,chlorine' ( / '
flo w to th e to p r i n g i s s h u t o ff a t a b a tc h s p e c if ic g r a v i t y o i l . 300:- .
-, ..
;
-
/ . /
T o tal L o ss of E quivalent Phenol f r o m ' #5 C h l o r i n a t o r 8c S c r u b b e r
S hutting off c h lo rin e flow to top r in g a t 1. 300 b a tc h - s p e c if ic g r a v ity .
V 73 lb s. /b a tc h
"
-*
M ain tain in g c h lo rin e flow to a ll sp arg er rin g s for en tire batch.
v . 772 lb s, /b a tc h
r,;
The tab le above is actu al data based on m a te ria l balanc lo sse s over 3-m onth p e rio d s, using o p e ra to r stick m e asu re m e n ts.
" * - , - .**.
b) V apor L o sse s fro m C h lo rin ato r and S c ru b b er
r :V*
In o rd e r to m in im ize v ap o r lo sse s fro m th ch lo rin a to r and scrubber* i t i s n e c e s s a r y to c o n t r o l t h e i r t e m p e r a t u r e s a t 90C . a n d 50 C .
re sp e c tiv e ly o r le ss . If the te m p e ra tu re s in c re a se above th ese m axim a, vapor lo sse s ris e significantly. N orm al to tal m a te ria l balance lo sse s of equivalent phenol fro m the ch lo rin ato r and scru b b er range fro m 0 - 1 0 0 lbs. /b atch .
2. B y -P ro d u c t H ydrogen C h lo rid e G as Y ield
K03H qj
T he re c o v e ry of ch lo ro p h en o l HC1 gas is a fu nction of the ch lo ro su lfo n acid d e p a rtm e n t's ab ility to m atch th e ir dem and w ith th e chlorophenoL HC1 gas g e n eratio n ra te . M ajo r lo s s e s of th is g as a r e in c u rre d when it is n e c e s s a ry to drow n and sew er the g as.
P lu g g ag e of one o r both HC1 tra n s m is s io n lin e s w ith ch lo ro p h en o ls cai
r e s u lt in m a jo r lo s s e s of HC1 gas due to dro w n in g and se w e rin g . T he
p r e s s u r e d ro p fo r a flow of 450 C FM th ro u g h one lin e sh o u ld b e in thf
^ TT ^
n rp sR iirp . d r cvds th r o u g h th e tw o t r a n s -
Dept. 236 - Proccsa Description
^ *7;.
CRUDE 2",4-PCP
SECTION IV - COMMENTS ON PROCESS (contd.)
.
/'
/.
2. By-Product Hydrogen Chloride Gas Yield ( ,./;) . ^
.Improper setting of the Dept. 236 contro. dve to the HC1
drovming Jet can cause significant losses- .f HC1, .This -,
valve should be set to open when the IIC1 pressurein the v-. .
transmission lines reaches 35 in H20. A lower setting will
result.in increased HC1 losses. A higher setting may result
in-flow of chlorophenol HC1 to Dept. 2l8 with the resultant
chlorophenol contamination of their food grade muriatic acid :
production.
. - i:v
I-
Leakage of HC1 gas through"the Dept. 236 control:viv to. ;
the HC1 drowning Jet can also result in high l o s s e s T h i s
can be checked by shutting off water to the-Jet when-the.
valve position indicator shows the valve is closed .^i-A blind
flange on the catch tank (for the drowning Jet discharge)
should be removed to determine whether HCl -is leaking
through.
V;'
Chiorine assay also affects HC1 recovery; The 1ower'the
chlorine assay (due to greater concentration.of air).tue
lower the HC1. recovery. This is because the. HC1-transmission
lines are flow limiting at high HC1 generation rtes Chlorine
assay normally runs in the 80-90# range . V This --is based, on.'
measurements made in 1967
Dept. 236* with a -continuous
in-line chlorine analyzer.
''
3, Sulfuric Acid Yield
The primary factor affecting sulfuric acid usage'Vis ^6penatiori
of the HC1 off-gas condenser. With th condenser out of- . V-
operation the usage is about 8.0 Ibs./cwt. Mol ten'-.Penta
and Crude DCP. With the condenser in operation,', .the-usage
is about 2.0 lbs./cwt. Molten Penta and -Crude DCP.V .These
usages are based on a 20-25C. temperature of the gases
leaving the condenser.
*.
B. CAPACITY
Capacity of the Crude DCP chlorinators is a function of cooling capacity and chlorine flow rate.
The capacity limiting variable for the #5 chlorinator under normal conditions is chlorine flow. Under present conditions, with a clean chlorinator cooler, the chlorination time should be about 4 hours.
The* capacity limiting variable for the #3 chlorinator is also chlorine flow. Under present conditions, the chlorinatic time should be about 5*5 hrs. However batches have been run with a 4-hour chlorination time, when the chlorine flow was adequate.
Dept. 236 - Process Description '
- - 8.
CRUDE 2,4-PCP
SECTION IV - COMMENTS ON PROCESS (contd.)
B. 'CAPACITY (contd.)
The capacity limiting variable for the #1, #2, or #4 chlorinator for Crude DCP is cooling capacity.
C. QUALITY
The primary quality consideration for Crude DCP is the 2,4
Diehl orophenol assay.
^
1. Chlorine Sparger Design _
v V :\.'
\ `\
The improved sparger installed in the Dept. 237 chlorinator
(#5) made possible an increase of 1 - 1 ^ in-the Crude' DCP
assay (from 8 7 .5^ to 88.5-89$). Work has been initiated
to install a similar sparger in the #3* chlorinator in
Dept. 236. *
V-/ 7 ' * ' \
2. Raw Material Composition
The present`specification for Crude DCP calls for an'8 7 .0^ ..
minimum assay.
/ *.
X
The chemistry of the Crude DCP chlorinations -is as follows:
a) Parachlorophenol chlorinated to the'Crude DCP stage / .gives 100$ 2,4-Diehl orophenol. The mechanism for this reaction is as follows:
OH
+ 2 c l2
2 HC1 +
Cl'
Cl Cl
b) Orthochlorophenol chlorinator to the Crude DCP stage (l.400-1.404 S.G.) gives material having the following composition:
K031109
Dept. 236 - Process Description CRUDE 2 j4-PCP SECTION IV - COMMENTS ON PROCESS (contd.) C, QUALITY (contd.)
OH Cl + Clg
OH HC1 +
r
V
Cl
77# 2 ,4 -D C P
(equation'not balanced)
-10*
__ 0
9.
OH OH
r^
V.
ci ci
-C l
+ ' ; .*.
.v
Cl -.
^
1 9 # - *" . V 4 ' g v ; x
2 ,6-rDCP
2y4,6-TCP
c) Phenol, chlorinated to the Crude DCP stage yields materials .
having the following composition:
.
88.5# 2,4-DCP
7.3#
3.5# f '-:0 .2# -, 0 .5#
2,6-DCP 2,4,6-TCP PCP . . OCP .
Based on this work and actual experience, the^following operating guidelines have been set:
a) Fractions from the Parachlorophenol refining operation csn be used as fraw material for Crude DCP If they are blended, with phenol to maintain a 4:1 phenol-orthochlorophenol weight ratio.
b) T h e l a s t 50% o f ^the d r y f r a c t i o n c u t f r o m th e P a r a c h l o r o p h e n o l refining operation can be used as raw material for producing specification grade Crude DCP, without blending with phenol. This Is possible because of the high parachlorophenol content of these fractions.
K031110
Dept. 236 - Procesa Description
- 10.
CRUDE 2,4-DCP
SECTION IV - COMMENTS ON PROCESS (contd.)
.C, QUALITY (contd.)
c ) .Fractions from the Refined DCF refining operation'cannot'be used as raw.material for producing specification grade Crude DCF. V? v Water boritent of* Raw Material
The present maximum control limit for water content.of,ravr .
material used for Crude DCP is 0.1# HgO. An increase*in. water
content to 0.15# will result In a rise of approximately.0.5# in =
the -6-Dichlorophenol content of' the finished Crude DCP?';. An -
increase in water content to 0";20# will result In about .a 1# '"
rise in the.2,6-DCP content of the finished.product.This can
be a good indicator of a cooling coil or cooler leak in the Crude
DCP chlorlnatoy.
-
4.. Degree of Chlorination
Both over and under, chlorination can result in the/productidh'of low assay Crude DCP. At the present time the endpoint; control points for Crude DCP specific gravity are 1-.402 (for phenol raw .) material) and 1.404 (for fractions and phenol raw material) at
4 5 /1 5c.
The graph In Figure 1.indicates the effect of the degree of
chlorination on Crude DCP assay.
v^:-Vr
An experimental in-line Infra-Red (IR) analyzer has been5;installe on the #5 chlorinator for use in determining Mono chlorophenol and
Crude DCP'endpoints (in place of the present specific'gravity ..
method). Successful use of this unit will- result in a 0,5-1-0# `
increase in the average Crude DCP assay. . The IR analyzer will
enable chlorination termination at the maximum, assay on-each bate
i '
.
t
5 . HC1 Off-Gas Quality
HC1 off-gas quality is a function of the quantity.of chlorophenol remaining in the gas when it is transmitted to Dept. 217. This,
'** In turn, is dependent on the efficiencies of the Phenol Scrubber, the Brinks Demister, the HC1 Off- Gas Condenser, and the. H^SOij. Scrubbing System. Since the total efficiency of these units approaches, but does not equal 100#, the HC1 contains a small
.Quantity of chlorophenols, For this reason, chlorophenol HC1 gas cannot be used for making food grade muriatic acid in Dept. 218. Chlorophenol-HC1 gas Is used only In the production of Chlorosulfonic Acid in Dept. 217.
K03IX11
J j A '.-~* 0
SXmL
JJj?.h:LJ.i"
5o e.
C "oay:-ijj-ina*'
i
. '
* 'rMi oi n
'
nnnuwD
nm
'MJ
c:
oix
51
"V*_Vf fvi*
Dept. 2^6 - Process Description
12.
CRUDE 2.4.-DP
APPENDIX A - EQUIPMENT LIST
. -,
/.V `
Both Crude DCP and.Molten Pentachlorophenol are manufactured'in-the ' Dept. 236 equipment center. The number of Dept. 236 chlorinators used
for Crude DCP manufacture varies depending on Crude DCP demand and
refined chlorophenols production. The equipment list below is typical
of the equipment used and shared by Crude DCP.
NAME
ITEM NO.
EQUIPMENT NUMBER
'EQUIPMENT - U :. DESCRIPTION " *
Chlorophenol Fractions (Crude DCP) Storage Tank
Chlorophenol Fractions Tank Pump
103 21-3491 104
13' I.D.x 1 6 1 'High i6;000 Gai. uninsulated vertical, steel
storage tank,. Tank equipped ` with heating coil. :,.;; .
*:-, . v 4
.. . .
#3 Chlorinator . #4 Chlorinator
ll6 118
21-2015 21-3096
4'^9." I.D. x 1 0 ' Sigh 1300 Gal.' vertical insulated monel
tank, equipped with.a monel cooling coll (area-1 3 3 . f t . )
#5 Chlorinator
' 122
21-3058
Same as'above but'without'coil Vessel*, located in Dept. 237J
#3 Phenol Scrubber. 117 #4.Phenol Scrubber. 119
1
21-2016 21-3097
\
6.'.I.D. x 5 * high vertical,
1200 Gal. Jacketed monel
uninsulated tank, equipped .
with a Turbo-Mixer .Agitator'``
system/.
*. / -
#5 Phenol Scrubber 123
#3 Chlorinator Cooler.
129
21-1914 38-2751
Same as above except located
in Dept. 237
''
Steel shell and tube heat
exchanger,. Water on tube side
and process on shell side. Area 480 ft. 2 -
#5 Chlorinator Cooler
^127
38-5714
# 3 -Cooler Circu lating Pump
128
18" O.D. x 15* long steel shell and tube heat exchanger, Water on 8-pass tube side. Process on 2-pass shell side. Area 700 ft. 2
3 " x l" cast iron centrifugal pump equipped with mechanical seal, 1800 RPM, 10 H.P.motor.
K031113
4
Dept, 236 " Process Description
CRUDE 2,4-PCP
APPENDIX A - EQUIPMENT LIST (contd.)
NAME
ITEM NO.
EQUIPMENT NUMBER
#5 Cooler Circulating Pump
124
Crude DCP Transfer Pump
120
Crude DCP Storage 106 Tank Pump
#5 Phenol Scrubber 125 Transfer Pump
Crude DCP
107
Neutralizing tank.
21-2471
Crude DCP Storage 105 21-3519 Tank
HC1 Brink Demister
Chlorine Brink . Demister
HC1 Off-Gas Condenser System
Sulfuric Acid Scrubbing System
Chlorophenol Air Scrubbing System
'
- -v- .
13.
-
EQUIPMENT V` : DESCRIPTION'
/
4 ,f x 3" ductile^ cast iron centrifugal pump equipped
with outside mechanical seal', 1800 RFM,- 25 H.P.motor. Nominal capacity;
' ' f ` ..
' .< - `7
-?'i , \ " ,, l- .
-V':>VV
6* I .D . x 7 ' highavertical, uninsulated 1500 gal.y steel
tank. '
1 3 ' I.D. x;i9V-6'riiilh,':, :' insula tjed, vertical ;..20,000 . gal. Bteel tahk;:vTank:equipp: with nickel eoiTv\ -
See Molten =Penta SMP '
:
'A-l': .-itf-V
.
. .vis <,;Y
.>,;';*,
. ;
-
.* VV.' ;*" H:,r;'
:: , , 7
' :: ; y;';; .. .
I;!*"' ' -' .11 ;^ . y
'""* -
.. i
K031114
Dept, 236 - Process Description
14
CRUDE 2,4-DCP
APPENDIX B - FINISHED GOODS AND RAW MATERIAL SPECIFICATIONS'//
The following'raw materials are used in the process: ,
RAW MATERIAL
Phenol Chlorine (Snlft Gas) Sulfuric Acid (98^)
CODE NO.
810.40 810.59 815.03
The finished Product produced in the process i s :
Crude 2,4-Dichlorophenol
810.83
Specifications for the materials follow on succeeding pages: ;* '
; -Pi
K031115
Monsanto
OftOANIC CHEMICALS DIVISION
FINISHED PRODUCT S P E C IF IC A T IO N
PRODUCTION W. J . W ilson
ALES. W. E . Ault
c cwen al DESCRIPTION
FROOuCT PLANT
PH E N O L (USP) PHOOUCT CODE
OCPT. 223
use
WGK DATI EFFECTIVC
1- 2 1 - 6 6 '
APPROVALS NESCAHCH
81040 ALLS CODE
SALES
7100-100-03-003
J . F . Quinn QUALITY CONTROL (C bU t ChemtaO
.1 ..t . .
W. J. G resham
CHEMICAL FORMULA
MOLITT. 9 4 .1 1 SUPERSEDES SPECS. OP
9/30/65 & 10/31/62
CHARACTERISTIC
AMPLE FOR ANALYSIS 2 x 8 oz., GGS B o ttle
LIMITS
tSCUCD OY
UNRESTRICTED INFORMATION (R) A p p earan ce
C rystalline solid
i,
l ' :.:
(R) C o lo r of M elt: Shipped in Nickel*; Stainless Steel or Lined C ontainers
"r. APHA 10, m a x . *
' V
jf.r P , P r a d e r METHOD
^ j,
Ai 10 *!s l 5 ' ; ';:'' '
" -*v" 0 / 3 2 3
Shipped in Steel C o n tain ers
AFHA 50, m ax. *
(R} F o r e ig n O dor (R) Tufrbidity of M elt
None
. . - : ;*
a r.7 34
!
:.'' v.
S ta n d a rd No. 0, m a x . (None) > :10 /3 2 4 ^
(R) C ry sta lliz in g P o in t
Non-Volatile Residue @ 100% m a x .
4 0 . 6 0 t' C . , m i n , 0.01%, m ax.
;-^;C'0;322 V; 1 0 , 3 2 5 '*
Solution in: W ater (1:15) 10% N aOH (1:10)
C lear and C olorless C lear and C olorless
10,326
D istilling R ange: ** F irst Drop 100% R ange 50% to D ry P o in t
180.0C., m in. 2, 0 C ., m ax. 0. 2 C, , m a x .
.10,329
* At tim e of loading
** To be d eterm in ed on one c a r sam ple each day and a ll c a r and lot sam ples with a c ry stallizin g point low er than 40.65*C
K 0 3 I1 1 6
RAW MATERIAL
Dale Approved-PPZ.Af.i35S,.
For Dept.Z2 s...ZJ.y-/"
Monsanto
OROANIC CHEMICALS DIVISION
FINISHED PRODUCT S P E C IF IC A T IO N
PRODUCTION T . W. D alton
SALES
OCNCRAL DESCRIPTION
PRODUCT
1" "PLANT
C h lo rin e (Snift G as)
PRODUCT COOK
USE
232
WGK
01059
SALES CODE
In te rn a l
1 0 /1 8 /6 6 '
* ' V
APPROVALS RKSEAHCH
M. A. T erp stra QUALITYCONTROL (ChltsfChomliO
W. J. G resham CHEMICAL FORMULA
11
M ixture
MOL WT.
up erseoc? s pe c s , op 1 2 /2 3 /6 3
CAMPLE FOR ANALYSIS 100 c ,c . G as B urette
cKAnACTcniaric
limiti
UNRESTRICTED INFO RM A TIO N C h lo r in e (C l2)
T ypical A nalyses 8o%,- B y V olum e
O xygon (Oz)
3% "
h
C a r b o n D io x id e ( C 0 2) C arb o n M onoxide (CO)
1.5% " 0,1%
If u.
H y d ro g e n (H2)
1.0% "
h
ISSUED BV
J. P , P rader
method
' *. v *
: j;rV ;
' . *__ ,
'J; `
** 'i',`v*
y .V'.v'v''
In e rt G a ss e s (By d iffe re n c e ) 8.4% "
M o is tu r e (H20 ) @ Std, C onditions
.2 .4 X 10" 5 l b s ./ f t .s
(A verage)
*-
_
; v '
D irect pipeline tra n s fe rs to using D epts
233, 236, 237, 246
...
T his sp ecificatio n is fo r in te rn a l u se a t WGK P lan t only,
. ' i >
DateRmAAoWWproveMd.AJXUEMRl5JL9S.3
For Dept.
K03U18
71 ""
.
M omC'Awto C h e m ic a l C o m pa n y
INORGANIC CHEMICALS DIVISION
FINISHED PRODUCT
SPECIFICATION
DATE EFFECTIVE
6/1/66
ISSUE NO.
p r o d u c t io n (Plait Manager)
E . !.. Boehm
s al es (Salti Manager)
A . . R*; .H a n d le m a n
au t h o h iz eo (Qdity Control Director)
J. S. M etcalf
PRODUCT
PLANT
S u lfu ric A cid COUE NO,
----------------- --
WGK
8300-098'
GRADE
98%
.
nUFCHSEOES
102 4 /1 5 /6 3
--
--
APPROVALS
RESEARCH {Asr.t. U i i C C i s r )
E, E . M oore
QUALITY CONTROL (Uf Utzdtt)
W, J. G re sh a m
'
`
G ? K ? ei h ' . O S f lC W IP T lO N
An essentially clea r co lo rless vipcous liquid.
; -. *; ,
..
(R) '
CHAi:ACTi;;;rsYtcs A ppearance
(R). C o l o r
(R) T u r b i d i t y _
(R.) A s s a y
, (AI)
N itrate as H N 03
(Al) - i r o n a s F e
LUOTO . W ater white to light .. y e l l o w l i q u i d . . 150 A F H A , M a x ] *'
250 A P H A , .'Max, -98.0 - 99.5% . 0, 001%, M ax, 0, 020%, M ax,
" TYPCAL VALUES"*
' .'**- ' ..
".
METHOD HO.
. ...i o o .a p h a ' .
;/ TO, 215
60 A P H A ;-
*
9.9,2%,-
vi / 10, 2 1 7 '
: * ?*
* 'l 2 i 6 '5 4 `
":i 3 ' 1 0 . 2 1 9 :
(RI ROUTINE ANALYSIS (Al) C f f E C m ? AT INTERVALS
RAW MATERIAL
Date Approved"? ) ! i. U l5^
For Dept. -XSjJ-ZZ
' ? *4 c y .6 T "-.
K03U19 / I-
u-juiiouiuu
ORGANIC CHEMICALS DIVISION
FINISHl-.D PRODUCT SP E C IF IC A T IO N
PRODUCTION W. J . W ils o n
ALE*
central description
2,4-Dichlorophcno.lj Crude b-Urade
LANT
PRODUCT COOS
U3C
--
WGK
"Jdra'te
APPHOVAL* flCSLARCII
1ALL8i CIOOOOH3
In tern al
Use
DeDt.. 262----
R, Vi, B u c k n e l l QUALITV CONTROL (C h lst Cheutlrt)
W./J. Gresham CHEMICAL FORMULA
''
MOLWT.
SUPERS COESSPECS. 0"
12-22-611 CHAflACTCH15TIC
.1 11
ample for analysis
2 X l 6 o z . GGS B o t t l e s
LIMIT*
(R) A ppearan ce and C o lo r
Amber L iq u id o r C r y s ta llin e Mass
(R) 2,4-D C P Iso m er
87. o, m in .' (1 )
(R) -W ater
0. 10$ , m ax.
(R) S p. G r. @1*5/15.5 c Anhydrous B a sis
R eport
(R) A c id ity (a s HCl)
0 .1 0 $ , max.
1
.. 1!
11
*-T* V
/ ^ 1 >mZ.- 1.
BTI M B U C O
M .- D, B e a ly METHOD
,~
11308 .
* -V '
. '-
V'
12782 11310
11879 . '
`P T T T 'r -B cF is o m e r c o n t e n t w i l l a v e r a g e 8 8 $ m inim um .
A pproxim ate iso m e ric co m p o sitio n o f th is p ro d u c t i s :
/
2 , 4 - D ic h lo r o p h e 'n o l 87 . - 90$
2 ,6 -D ich lo ro p h en o l
6 -8 $
*
T richlorophenol
1*- 5$
M onochlorophenol
*'0 - 1$
T his s p e c ific a tio n is fo r in te r n a l use, only.
(R) Routine Analysis, All others Analysed by request Only
K031120
Dept, 236 - Process Description CRUDE 2,'4-DCP APPENDIX C - PHYSICAL CONSTANTS
.15,
Dept, 236 - Process Description
16.
CRUDE 2,4-PCP
APPENDIX D - UTILITIES
The following types and amounts of utilities are used In the process:
TYPE Steam (80 psig) Electricity '
AMOUNT 1000 M#/mo.
40 CKWH/mo.
Water (Purchased) 450 M Gal./mo.
(Plant)
6000 M Gal./mo.
* V -v USE V '8
-
Stg. tank.coils/ tracers.
Pump motors, instruments, lights.
Equipment w a s h e s . ^ Chlorinator cooling coils, Phenol Scrubber cooling Jackets, HC1.drowning'jets, / floor* washes. '
K031122
Dept* 236 - Process Description
17.
CRUDE 2,4-DCP
APPENDIX E - PERSONNEL
The- following personnel are required to maintain operations:
CLASSIFICATION NUMBER OF MEN'
JOB DESCRIPTION-
Premium Operator Chief Operator
l/shift As required
Complete control of cfilorination to include charging raw material determining chlorination endpoin air blowing finished product, transferring product to finished product storage, procurement of necessary data and samples, and operation of sulfuric acid scrub
j.
Receive phenol from Dept. 223, empty and recharge sulfuric acic scrubber.
"'A " Operator
As'required
Receive high para fractions fron Dept. 237
nB" Operator 237 Operator
As required
As required
Transfer of finished product frc storage to tank cars'/-
Transfer high para fractions to Dept. 236. ..
K031123
Dept. 236 - Process Description
18.
CRUDE 2,4_-DCP
APPENDIX F - PACKAGING AND SHIPPING
Crude 2,4-Dichlorophenol is packaged exclusively in tank cars for shipment to Dept. 262. The following cars are currently used for storage and shipment of the product:
CAR NUMBER
GATX 95388 NATX 18205 MONX 803 MONX 806 GATX 77006 MONX 824
NATX 18135 MONX 814 SHPX 22772 GATX 95286 SHPX 88727 NATX I8l4l SHPX 23866
GATX 76573
'
NOMINAL CAPACITY
10,000 8,000
G al .
8,000
8,000 8,000 8,000
it 11 11
8,000
8,000 8,000
11
10,000 10,000
8,000 8,000 8,000
it 11 11 11 11
MATERIAL OP CONSTRUCTS
Sttteel 11 11
h
11
h
M
K031U4-
Dept. 2 3 6 '- Process Description
* CRUDE 2t4-DCP
19.
APPENDIX G - MATERIAL BALANCE
The material balance Is based on monthly inventory Information, since 6/66.
Actual production observations were used when more formal information was not available.
(6
K031U!
Dept, 236 - Process Description CRUDE 2,4-DCP APPENDIX G - MATERIAL BALANCE (contd.
RAW M A T E R IA L U S A G E S - L B S ./ C W T .
Phenol C h lo rin e
O rth o c h lo ro phenol P a ra c h lo ro phenol
T o ta l
How
<ro to to
*
ON 1
If=- CO
ON i *O-3
o33 .
o 33
.?
33
LO cr\
H *ro
o
-4 VJl vo --Q - - on
o -UvQoi__ o _Q__
M O o
o ro
H* M
r0o0
VO -*3
VJl 4=__ cel _ PN_
1-* H* LOON i UO)N hO-* bM
o
O J
^3
00 00
VJl VJl L O VJl
v0o0 !--1 o
> L;. --l ro 0 _Q__ VJ1 VJl
__ -Pr 00
^3 H -fr
H -t=-4
-P= H
1
ro 0 o * ro LO O
O O K 33 / Q 33 > > / s a s: / 33 ct / O 33 /
ss t r / i-3 //CO 3333
-4 o
v4or
?
// SWSPi // SfeMCO
vo o
I-1 H
Vr-0*` .
b C h lo rin e ^ o Tn--
vo P h e n o l & ^
b F ra c tio n s
o
C ru d e DCP
^
HC1 O f f - --
! Gas
o
"O
R ecovered
F ra c tio n s
o -o H C l O f f - &
Gas '
HCl O ff- ^
o o
Ga3
LO I-*
O
ro -^4
ro M
b o
ro -4
H
-Ol=r
HCl O ff-
Gas 3
S u l f u r i c rrA c id : ~
Spent A c id
"P
HCl O ff- P Gas P
I
c
ro. o
Dept.- 236 - Process Description APPENDIX G - MATERIAL BALANCE
21.
. 'SUMMARY.OF MATERIAL BALANCE RESULTS
RAW MATERIAL
USAGES LBS./lOO LBS.PROD. MATERIAL BALANCE
THEORY
Material Bal.
Usages lbs./lOO* lbs. Product
1. Phenol
57.730
59.000.
57.730 Process
.-1.27 HgSO^ Spent Aci
59..O0"
2. Chlorine
87.000
91.00 . *
87.600 . Process
2.00
HgSb^ Spent Acj
.1.4 91.000
To atmosphere *`/:0 .
r * . i*V 1
, ;r- /:f.
>*
" ' ...'
L-p'
-S
aa
" * ,
. '
'f
v * ' v.>,:*' vt' " ' ;` *'
K031127
Dept. 236 - Process Description
22.
CRUDE 2 A DC?
APPENDIX H - ATMOSPHERE -STREAM DISCHARGE
Summarized below are materials discharged from the Crude 2,4 DCP process to the atmosphere or sowers. The quantities listed are based on the material balance shown in the previous section. Existing problem areas are listed even though actual quantities are unknown.
Discharge'to Atmosphere ITEM
tba/lOO lb. Pi ''.'duct
1 . Phenol storage tank
Unknown
vent (only phenolics)
2 ., HCI drowning jet
Unknown
3. Vent on DCP Storage
Unknown
Total l b s , per Month based on Production Rate of 1 ,700,000 lbs./mo.'
Unknown
Unknown -
Unknown
HC1 and Phenolic Discharge to Sewer
1. . a . HC1 from drown ing Jet (under normal operations)
a.
HC1 19.1 b. Phenolics-trace
324,300 -------
b. HC1 from drown ing Jet (when 217 shut down)
a.
HCi 46.55 b. Phenolics 0.20
-792*,000 3,400
2. Drain line to sewer on
Dept. 217 HCI line.
Unknown
Unknown
Dept. 236 - Process Description
23.
CRUDE 2,4 DCP
APPENDIX I - PROCESS CONTROL
SAMPLING POINT
FREQUENCY
REASON FOR SAMPLE
1. Chlorinator Every 2 hrs. Specific gravity
& more
is indication of
toward end degree of chlor-
of batch.
ination.
2 : Tank Car
Once from
every full tank car. 1 -2 tank cars/day.
To compare
against' speci
fications for Dept, 262. (2,4-D Mfg.)
NORMAL RANGE
50 gravity points/hr. Finished product 1.4021.404
45/15.5c-
METHOD
_ # ___
Operator test (1131
Appearance & Color
Amber, liq.or . 11-308 crystalline mass.
Water
0.01-0.10# 1310
Acidity
2,4 DCP isomer
0.01-0.10#' 8 7 .O-90.O#
I879 I2782
K 0 3 U 29
Proce** Area Or Step
C 'HLCRIKATION }*
foriable Or forameter
. 1. Scrubber Iff-Gas temperature
Description of Parameter As It irfects Safety, Quality, Yield late Or Other tffcct* yield.
1
' s. Cooling Water
Affect* rate, yields, quality.
Bange For Best Frequency
r
Known Process Of Monitoring
Performance
By Supervision
35 - 50C ,
. Hourly by operator [Hot logged)
-
Measurement of Variable requency Method 1 Accuracy
Jontinuous Temperatur Recorder
1C
j
Full water on coll if running v/o exchanger. Fll water on exchanger if using #3 chlorInator
Hourly by operator (Hot loagcd)
Continuous Valve pos ition with exchanger. Plow in dicator with coll.
Unknown
f. Entrain Affects quality, rate* ment
Low entrain ment as definet by operator one foreman exper ience.
Hourly by perator
Continuous Site glass
11
2. Batch Data
i. Batch
Indicate* proper level to achieve
Gravity
quality
1.1*00-1.1*03 at T0C
final batch gi V Ity b y operate
fvery hour Operator intil ap gravity proach end analysis point and lien as iceded
+ 0.002
i. Aaaay
Quality
07-90^ 2,1*OOP
i'c-iclne
Hon Routine
Laboratory Analysis
.
'
Interaction With Other Variables
How Control Variables
Conn
High temperature In Lower scrubber
dicates entrainment temperature by
hot ecrubVcr, under increasing cool
charged scrubber,
ing and reduce
or bole in draft
chlorine rate if
tube.
needed. Check
that scrubber Is
not undercharged.
Chlorine added au tomatically to maintain tempera-
Maintain flow
The need t
rate ln range at ally reduci
maximum penalsoa- Indicates 1
ture. Water rate
ble by entrain ment error
determines chlorine ment. Do not use separator 1
rate and consequent' call when using
ly process rate.
external heat
High flow rates can exchanger.
chiarinato charge, or chlorine a
cause excessive en
trainment.
High entraiment
Control process
can cause poor
within ranges.
quality on next
Determine devia
batch. Accompanied tion or problem
b y high chlor. off If entrainment
gas temperature,
occurs. Reduce
and scrubber temp. rate If necessary Results from plugget
separator, or too
fast gas addition.
Low gravities mean Take adequate
low 2,4 assay and
hydrometer reod-
an excess monochlori .lng near end of
Eligh gravities mean hatch to be able
a trlchlor excess, to control ln
again with low 2,4 range. Stop chlor
assay.
ination while
analyzing if near
end point.
lorrelatcs with
Controlled by
natch gravity direct -batch specific
ly up to 1.402 and gravity.
inversely after that 1 L.e. assay Increase
is gravity increase!
ind then decrease*
lfter passing optl-
Dun point. High vote r
In feed, low phenol/
jrtho feed ratio, at i
ilgh e n t r a i m e n t car
:ause isomer shift 3
:hat low assays may
iccur even if gravll y Ln control range.
KC
t
Process Area Variable Or
Or Step
parameter
Description of Parameter As It M f e c t s Safety, Quality, Yield Rate Or Other
V.W MATERIALS
1. Blended fractions
a. Phenol/ Ortho Ratio
Affects isomer split causing low 2,k leaner product.
Range For Beat Frequency
r
Known Process Of Monitoring
Performance
By Supervision
_
Measurement of Variable
"requency Method
Accuracy
At least 5
After blend at]
parts Phenol
once per day
to 1 part Orthc
Dally by iterator
aLC anal ysis by Lab
0.1?
b. Water c. Iron
Causes 2-6 shift, builds up nickel salts, and causes corrosion*
<0.08? *
Darkens product and also 2-1*D ncld 18 pita max. In 262.
Dully by chief operator.Poremi ,, by exception.
(>0 .10 ?)
D i-'y by operator
lobatory Analysis
Hon Boutina
ton Routine
1a b o r a t o r y Analysis
0 .1 ?
1. Color
lolor of feed propagates to final product
1
<5 0 0 APHA
tor. Routine
tou Routine
Laboratory Analysis
10 Ap h a
2. Chlorine
a. Header
Indicates proper pressure at BD to 25-30 p-ig
Hourly by ape
Jontlnuovu Pressure Unknown
Pressure maintain standard rates.
ator on each
Recorder
batch sheet
UATOH CHVYJIIC
b, Demister Inlet Pressure
Indicates some os header pressure.
S5-36 pslg
Monthly by foremai\
1. Chlorlna- Indicates proper charge to malntalr 1*8-52" outage Each butch bjl
tcr Charge rate, quality.
operator
-
2. Chlorlna- Time to drop scrubber to chlorinator Charge tor affect rate. Time
30 min. .2 5 min.
Each butch by. operator
bntl u '.Vj -_ [Pressure Oage
Unknown
Each bate) Stick by opera seasurcmenl tor
1 V2'1
Each Batch
Time
Interaction With Other Variables
How Control Verlables
Comments
A high percentage Maintain at least 2-6 Isomer usua
of ortho present
a 5/l ratio. Max 6-7? of batch,
will convert to the imise fractions
higher, run QIC
undesirable 2-6
usage.
check of fecdst
Lscner resulting In a 2-k lscner reduc
Control of pher and fractions 1;
tion. Extremely
la essential tc
high ratio can causi
good blended fr
a build-up of frac
quality.
tions Inventory due
to under-use.
/Ugh water content Rely on phenol
causes an Increase department to con
In 2-6 leaner.
trol HpO, control
fractions water
content In 2 3 7 *
High iron darkens Minimire recycle
the color of all
of washout batc)ec
phenollce
Dilute with water
white plteno1 to
lower color.
Resulks in dark
Control iron.
Visual cl<eck m
product. Usually
chief operator
caused by iron.
dally basic. 1
dark, requeet
to be 1 jn by 1
low pressure cuts Contact cltlorlnc
chlorination rate dept, to determine
since must lover
cause of problem.
cooling water flow Check demister In
to maintain temper let pressure to
ature . Low pressure tree pad is not
eans low gas flow plugged.
which can cause pool
isomer distribution.
Interacts with bead- Clean or replcrc
r:r pressure directly demister pad wb'n iHigh pressure dif A P exceeds 3 pel
ference .
or once per ye.-.
Overcharge causes cr - Charge to
If vc' iaicU m
trmlimcnt loss.
proper level. li:ft
scrub
Undercharge cause
sft-r drop, 1
rate loos.
affect ?-k Is.
subsequent ba
Dong drops means
Clteck tracers if
Line blockage
time of drop is
too long.
'1
K<
Proce* Area Variable Or
Or Step
Parameter
r wren c h a r g i n g *
|. Scrubber JSpecific
iravlty
Ascription of Parameter As It Effects Safety/-Quality, Yield Rate Or Other
Gravity determine* following batch quality and yield.
Range For Best Frequency
Known Process Of Monitoring
Performance
By Supervision
1.0 5 0 - 1.2 5 0 Each batch by
at 70C
operator
Measurement of Variable
frequency Method
Accuracy
Bach Satch
Hydrometer 0 .0 0 1 test by
operator
i-.
r
1
li. Scrubber Charge
Indicate* proper level to prevent :Xce*sive entrn j.nment or Clg > :mi**lon.
1*0 " I" outage
Each batch by operator
Bach Batch
>
Stick Measure ment
l/2 "
1N
C. CHLORINATION 1
1 . Oa* Addition . Chlorinator Temp.
Effects yields and product quality.
90 - 1D0C
Hourly by operator
Continuous Temp. Recorder Controller A 12 pt Recorder
1C 1C
a. Scrubber temperature
Affects ylcld3, air pollution.
liO - 50WC
Hourly by operator
Continuoui Temp. Recorder
* 1C
c. Chlorlna- Affects quality. tar Off-Gaa Temperature
5 - loooc
Hourly by
o n t m u o u c Temp.
operator
Recorder
(Not logged)
Interaction 'Jltli Other Variable:-
How Control Variables
Can
High gravities can Monitor gravities
cause an lBomer
for each charge.
shift, reducing
With low gravity
2-k l*oraer. Low
observe entrain
gravities can re ment and reduce
sult In high en rate if needed.
trainment on sub With high gravi
sequent batch.
ties, process the
Do not ho] batch as 1 suit in pc when the t finally di chlorinetl
batch but reduce
rate to improve quality of follow
ing scrubber.
I f outage high,
Add feedstock to
'off gas from chlorproper outage.
inetor will not be
scrubbed letting
chlorine gas Into the HCl system und
eventually to the a tew sphe re. low
outage result In
excessive phenol losses to the off gaa system.
low temperature re Position controll :r
sults In slow rates set point at pro
since cooling be
per temperature.
comes limiting at
Low batch/coil temp
llfferences. High
temperaturea result
in excessive carry
over to the scrubbei
U g h temp give high Manual adjust
aff gaa temperature cooling water
ind resui'-o in yielc flow to Jacket to
Loss to HOI mystem. maintain temper
Indicative of poor ature .
chlorinator opera
tion or low Jacket :00ling water flow.
Low temperature
reduces scrubbing
rfficlency, letting
31p Into MCI system.
Low temperature ln- Check entrainment
llcates low chlorine separator for
flow and low chlor- pluggage.
Lnator temp. High
temperature indlcatt s
:ntralnmen t .
Dept, 236 - Process Description
24.
CRUDE APPENDIX J - SAFETY AND TOXICITY DATA AND ACCIDENT REPORTS
The following precautions should be heeded when in the dichlorophenc area.
1. Finished Products Handling:- (Reference: Sax Handbook of Dangeroi
Chemicals)
,
CRUDE 2,4 DICHLOROFKENOL is corrosive to the skin. Small amounts spilled on the skin should be washed off immediately with the alcohol located in the-first aid stations located throughout the area. This alcohol wash should be followed by a thorough washir with soap and water. If a large amount Is spilled on the skin, the contaminated, area should be flushed immediately with a larg volume of water and then treated at the dispensary.. Safety showers are located throughout the area. A fresh change of clothes is provided daily for the operating work force. Wearing of safety glasses Is an essential part of Diehlorophenol operations'.
2. Raw Materials Handling: (Reference: Sax Handbook of Dangerous Chemicals)
PHENOL is extremely corrosive to the skin and should be removed as previously stated. Sulfuric acid is also corrosive and should be removed immediately by flushing the contaminated area with a large volume of water. CHLORINE and HC1 gases are highl; irritating and dangerous. If the area must be entered when the: gases are present in large amounts , the protective gas masks located in the operating area should be worn.
3. FIRE Hazards The flash and fire points for Dept, 236 materials are:
Flash Point
Fire Point
Phenol Crude 2,4 Dlchlorophenol
79C. 00C.
85C. 200C.
While none of these materials are technically flammable, no burning or welding Is allowed on equipment until it has been washed clean and then gas tested. This is due to the possibility that any residual HC1 present may form Hydrogen by reacting with the metal of the vessel.
K 0 3 1 136
-*
Dept. 236 - Process Description
25.
CRUDE DCF -
APPENDIX K - Background of Process and Annual Remarks
Crude DCP' is produced in chlorination equipment originally installed in
Bldg. BD in 19^7, for.the production of Pentachlorophenol. Penta and Crude DCP requirements have steadily increased until a total of four chlorinators are now required. Most Crude DCP is produced in the #3 chlorinator which Is equipped with an external steel cooler.- Crude DCP
Is also produced in #1, #2, and #4 chlorinators and the Dept. 237
chlorinator.
Crude DCP is used exclusively by Dept. 262 for the production of
2,4-Dlchlorophenoxyacetic Acid (2,4~D). The Bldg. BD chlorinators are
scheduled'to supply the Crude DCP. All other chlorination capacity is
used for the production of Pentachlorophenol. Average monthly Crude DCI
production In 1967 was 1,980,000#/mo. Requirements in 1968 are forecast
at 2,l4o,000 lbs./mo. In order to satisfy increased demand for both .
Crude DCP and Penta a capacity expansion project was initiated in late
1967. Tentative plans are to install another batch chlorinator to be
used exclusively for Crude DCP .production.
.
APPENDIX K - Process Amendment Record Sheet
Amendment No.
Date
Subject
"A" to SMP Dated 4/65
7/ 26/65
Use of essentially all Dept. 237 fractions for Crude
DCP Raw Material.
Disposition Accepted 12/2/65
K0311.37
Dept, 236 - Process Description
CRUDE DCP"
Appendix L - Time Cycle
A. Time Cycle
Item
#3 or #5 Chlorinator Time (Hrs.)______
Charge Chlorinator Charge Scrubber Chlorinate Pump to Storage
Total
0.5 0.5o 3.78 0.5
5.28
* 26.
# 1 j#2j#4 Chlorinator Time (Hrs,)______ 0.5 0.5 5.59 0.5 7.09
B. Capacity
#3 or #5 chlorinator
,13j200 lbs. Crude"DCP/batch (720 hrs./mo.) (78# OST) `5*28 hrs./batch
= 1,408,500 lbs./mo.
Chlorine flow is the capacity-limiting factor. With adequate flow the OST would increase to 87^ and the capacity would increase correspondingly. Cooling capacity is the next capacity-limiting factor after chlorine flow.
#1, #2, or #4 Chlorinator 13j200 lbs./batch (720 hrs,/mo.) (78# OST)
7.09 hrs./batch
= 1,041,500 lbs./mo.
Cooling capacity is- the capacity-limiting factor. After cooling capacity, chlorine flow is the next capacity-limiting factor. Nos. 3 and 5 chlorinators are equipped with external coolers. Nos. 1,2 and 4 chlorinators areequipped with lower capacity internal cooling coils.
KO31138
Dept. 236 - Process Description
2.7.
CRUDE DCP
APPENDIX M - QUALITY CONSIDERATIONS
CRUDE DCP ASSAY
Maximum Crude DCP assay is desirable in order to maximize yields in the 2jk-D. operation. Recent calculations that each 1% increase in Crude DCP assay results in a $36jlOO/year yield savings in the 2j4-D. operation.
HC1 and WATER CONTENT
HC1 and water concentrations in the finished product must be minimized in order to minimize tank car and storage tank corrosion. Normally this is no problem and no special steps are necessary to. insure this.
K03X139
Dept. 236 - Process Description CRUDE 2,4-D. APPENDIX N - MISCELLANEOUS
Attached is the production Cost Standard for 1968.
28.