Document NGNm53D5BaxgjVjYJkpMxvxaE
To: Distribution
HUM UVIV19
Communication
From: Data:
Subject:
R. A. Frohreich February 13, 1986
AMS EMERGENCY KILL SYSTEM OPERATION MANUAL
Attached Is an updated copy of the AMS Emergency Kill System Operating Manual. Please destroy the September 1, 1981 Issue and replace it with this updated copy.
R. A. Frohreich Director Of Environmental Control
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cc: JF, JWW,
; CWT, MLN, RAC, DFJ, BFH,
ALR, CRS, JLH, VEM, VLT, SCH, FGJ, KWB,
VAB.0001136589
OPERATING MANUAL AMS EMERGENCY KILL SYSTEM
ABERDEEN PVC PLANT UPDATED FEBRUARY 13, 1986
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VAB.0001136590
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TABLE OF CONTENTS
OPERATING MANUAL
AMS EMERGENCY KILL SYSTEM
ABERDEEN PVC PLANT
Page No. I. INTRODUCTION .................................................................................... 1
A. PURPOSE................................................................................... 1
B. OPERATOR RESPONSIBILITIES ............................................ 1
C. PROCESS INFORMATION ...................................................... 1
II. GENERAL PROCESS DESCRIPTION ............................................. 2
III. SAFETY....................................................................................................5
IV. OPERATING PROCEDURES ................................................................. 7
A. WHEN TO USE..........................................................................7 B. HOW TO USE ..........................................................................8
1
C. NORMAL OPERATION...................................................................... 11
D. TESTING PROCEDURE................................................................. 13
V. APPENDIX..................................................................................................... 16
VI. P & I DIAGRAMS...................................................................................... 18
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VAB.0001136591
I. INTRODUCTION A. Purpose The purpose of the AMS Emergency Rill System is to inIncrease the reliability and effectiveness of equipment and procedures used to safely and quickly stop the poly merization reaction in the reactors. Stopping the reaction prevents excessive pressure buildup which can cause emergency releases through the reactor relief valves. This system allows any or all reactors to be shut down in an orderly and safe manner. This manual describes the system and the operator's responsibilities for operating and maintaining the system. B. Operator Responsibilities The operator is responsible for producing quality pro ducts in a safe and efficient manner. He fulfills his responsibilities by knowing the following: 1. Understanding how his equipment functions. 2. Understanding what role each piece of equipment plays in the process. 3. Keeping a close and regular check on equipment. 4. Knowing how to spot malfunctions and correct them. 5. Keeping his area of responsibility safe and clean. 6. Keeping complete and accurate records. C. Process Information The polymerization reaction of VCM to form PVC gives off heat and accelerates as temperature increases. It is therefore necessary to remove the heat of reaction with cooling water in the reactor jacket and condenser.
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VAB.0001136592
I. INTRODUCTION - Continued C. Process Information - continued Reactor agitation is also required to maintain uniform reactor mixing and efficient heat removal.
A
If reactor cooling and/or agitation is lost, the poly merization reaction must be stopped. Failure to do so will result in a runaway reaction with increasing temp erature and pressure. The reactor pressure would in crease until the rupture disc/safety valve assemblies
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would vent the reactor contents to the atmosphere.
The AMS Emergency Kill System provides the capability of injecting up to 25 gallons of AMS into each of the large reactors and up to 60 gallons into the expansion reactors. This can be done either remotely from the control room or manually at the reactor top manway plat form. AMS can be injected Into a reactor as soon as agitation is lost to take advantage of mixing caused by residual swirling motion. Maintaining cooling water flow after loss of agitation will also help mixing by refluxing In addition to removing heat of reaction.
II. GENERAL PROCESS DESCRIPTION Refer to the attached P & I diagrams for the complete system layout for each reactor area. Emergency kill injection pots are provided at grade level for each reactor. All injection pots are to be maintained at 250 to 275 psig pressure using high pressure nitrogen cylinders. A separate nitrogen -2-
VAB.0001136593
II. GENERAL PROCESS DESCRIPTION - Continued cylinder and spare are provided for each injection pot. A local AMS level gauge and a pressure gauge are provided on each pot in addition to a board-mounted low pressure alarm and a low level alarm.
The A operator is to check the appropriate injection pot level and pressure before starting each reactor charge sequence.
Killing agent can be Injected into the reactor either remotely by the lead operator or locally by the A operator. Normally, the emergency kill system is activated from the board to minimize time and maxi mize mixing. One switch for each reactor operates auto matic double block valves at the reactor top manway level. Placing the switch in automatic mode opens the valves and allows a low level switch in the injection
*
pot to close the valves. Placing the switch in the momentary-contact manual mode also opens the valves but the valves close when the switch is released. Each injection pot low level switch also activates a local light at the manual injection point at the reactor top manway level. The automatic closure of the remote in jection valves and the local low level indicator light are provided to prevent nitrogen from being injected into the reactor, blanketing the condenser and reducing cooling efficiency.
A
II. GENERAL PROCESS DESCRIPTION - Continued An emergency Injection header is provided at the reactor top head level in each reactor module. The header allows any injection pot to be used to kill any reactor in the module or to Inject additional killing agent if needed. The procedure requires two hoses, one to connect the injection pot to the header, and one to connect the header to the reactor. Rilling agent can then injected locally by the A operator or remotely by the lead operator. It should be noted that when the emergency Injection header is used, the Injection pot low level switch will neither automatically close the remote injection valves nor light the appropriate local indicator light. Caution should be taken to prevent charging nitrogen into the reactor when using the header.
The remote injection automatic valves are operated
by nitrogen supplied by a high pressure nitrogen
cylinder and spare. A board-mounted low pressure alarm
is provided for each area to alert the board operator
when the cylinder in use has dropped below 600 pslg.
A cylinder with less than 600 psig pressure does not
contain enough nitrogen to operate the control valves
and is to Immediately changed out with a full
cylinder.
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VAB.0001136595
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hi. SAFETY The operation of the emergency kill system does not pre sent any extremely hazardous situations. In fact, its main purpose is to reduce the potential for having hazardous situations in the reactor area. However, some potential hazards are present and precautions should be taken to prevent serious incidents. A. The killing agent AMS has been in use for some time in the plant and the operators are already familiar with the corresponding safety hazards and proper handling procedures. The attached vendor literature describes chemical properties and safe handling procedures. It should be emphasized that AMS is highly reactive in the presence of the peroxide initiators used in the plant. AMS AND INITIATOR SHOULD NEVER BE MIXED UNDER ANY CIR CUMSTANCES . B. The AMS injection pots are to be maintained at 250 to 275 psig by high pressure nitrogen cylinders. Due caution should be exercised in the handling of nitrogen cylinders. Operators should avoid damaging the outlet valves on these cylinders. The AMS in
i jection pots will contain AMS at 250 to 275 psig pressure, so proper safety precautions should be taken while working with or near these vessels.
An injection pot must be depressurized before the block valve on the AMS fill line is opened.
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VAB.0001136596
III. SAFETY - Continued The nitrogen supply to the pot must be turned off at the pot prior to venting the pot. The pots are only to be vented through the bleed valve on che pressure gauge/pressure switch piping on the top of the pots.
A
C. The rupture disk and relief assembly on each injec tion pot is set to relieve at 400 pslg, the vessel design pressure. Since the nitrogen bottle regulator may occasionally leak through, a potential exists for overpressuring an injection pot and causing the rupture disk to burst. Even if the killing agent didn't spray out when the relief devices opened, it is probable the relief valve would not completely reseat and the nitrogen
t bottle would slowly depressure through the pot and relief valve to atmosphere. The outside operator is to routinely check injection pot pressures to*insure it is neither too low nor too high.
D. The AMS killing agent is a volatile hydrocarbon, and thus fire and explosions are theoretically possible. Precautions are to be taken to prevent spills and excessive accumulation of flammable vapors.
E. Since the injection pots are connected to the reactors, a potential exists for backing VCM into the pots. This poses no serious immediate problem since the AMS would kill any reaction that was occurring. However, it could present an exposure problem later when the injection pot is opened.
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VAB.0001136597
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in. SAFETY - Continued The injection pots are to be maintained at 250 to 275 psig pressure except when refilling.
Finally, operators are to keep in mind that this system will be used when the plant is in an upset condition, i.e., power failure, loss of cooling water, reactor runaway, etc. It is critical that this system operate properly in such an emergency System maintenance and operator familiarity with this system are equally important factors for ensuring the dependability of this system.
IV. OPERATING PROCEDURES A. When To Use The emergency kill system is to be used under the following circumstances: 1. If there is a power failure. 2. Extended loss of cooling water to a reactor in polymerization mode. 3. Extended loss of agitation to a reactor in polymerization mode. When agitation is lost, it is important to kill the reaction as soon
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as possible. The reactor contents will con tinue to swirl for about four minutes after agitator shutdown, and AMS injection during this period is much more effective.
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IV. OPERATING PROCEDURES - Continued
4. A runaway reaction with increasing temperature
and pressure which Is not responding to small
AMS Injections (short stop) from the initiator
charge pot.
5. Any other circumstance considered by the
operator to represent a significant chance of
over pressuring the reactor or affecting safe
operation of the plant.
6. If for any reason the reactor temperature or
pressure reaches the following:
LOW MOLECULAR WEIGHT RESIN
700 & 745 741-744 & 300-600
175 psig 165F 155 psig 153F
ALL OTHER RESINS
700 & 745 741-744 & 300-600
145 psig 142F 145 psig 142F
B. How To Use
1. The Lead Operator is to depress the manual AMS
emergency kill button and keep it depressed for
two seconds after to open light comes on. This
opens both remote operated valves and AMS is
injected into the reactor. Both valves close
when the button is released stopping the
addition of AMS into the reactor.
2. The Shift Supervisor of Chief Lead will then
check the local level gauge on the AMS Injection
port to confirm AMS was added to the reactor and
he will also determine the number of inches of
AMS added from the ruler on the injection pot.
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VAB.0001136599
IV. OPERATING PROCEDURES - Continued B. How To Use * continued 3. In case of a power failure, the Lead Operator Is to kill reactors In the following order and must a. 5265 or 5305 batches b. Reactors which are near pressure drop c. Reactor Just reaching end of heat up d. Remaining reactors 4. After AMS Injection, the Lead Operator will closely monitor the reactor temperature and AMS 1 If the Initial Injection does not kill the reaction. 5. If the remote operated Injection system falls to work, the A Operator Is to manually Inject AMS Into the reactor by opening the two manual valves on the manual AMS Injection line at the reactor head level. 6. If all the AMS In the Injection pot Is added to the reactor and more AMS Is required to stop the reaction, the emergency Injection header Is to be used. This header allows AMS which Is contained In any of the other reactor Injection pots to be added to the reactor which Is being killed. To use this header, the A Operator connects one hose from a full and pressurized Injection pot to the header and a second hose from the header to the reactor being killed.
A
VAB.0001136600
IV. OPERATING PROCEDURES - Continued Additional AMS injection can then proceed either locally or remotely from the control room. Caution is to be taken when using the header system since the injection pot low level switch shut off feature will not work in this situation and nitrogen may enter the
If excess nitrogen does enter the reactorv the condenser is to be vented to the recovery system. As soon as possible after AMS injection* the A Operator is to refill the AMS injection pot by the following procedure:
a. Close the block valve on the nitrogen supply line at the pot.
b. Depressure the pot through the pressure gauge vent valve.
c. Refill the pot with AMS from the 55 gallon drum using the air-operated drum pump.
d. Close and plug the pressure gauge vent valve.
e. Pressure the injection pot to 250 to 275 psig with the nitrogen supply system.
f. Radio communication between personnel in the field and the Lead Operator is to be laintained at all times. The A Operator inform svstem is operating and what is being done
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VAB.0001136601
4
IV. OPERATING PROCEDURES - Continued In the field. The Lead Operator is to keep the A Operator informed of reactor pressure and of any apparent need for additional AMS injection.
C. Normal Operation 1. A reactor is not to be charged unless its AMS Injection system is in proper operating condition. It is the responsibility of the A Operator to check this in the field and notify the lead operator who will record the informa tion on the batch sheet prior to each reactor charge. The following items are to be checked immediately before each charge: a. The AMS level in the injection pot is to be at or above a seven-inch outage. The actual outage is to be recorded by the lead operator.
4
b. The pressure in the injection pot is to be 250 to 275 pslg. This is to be checked on the injection pot pressure gauge.
c. The pressure of the nitrogen cylinders being used for AMS injection is to be at least 1200 pslg. Cylinders with lower pressures must be changed out and replaced with full cylinders. EMPTY BOTTLES ARE NOT TO BE LEFT IN THE BOTTLE RACKS.
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VAB.0001136602
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IV. OPERATING PROCEDURES - Continued C. Normal Operation - continued d. The pressure of the nitrogen cylinder being used to actuate the automatic AMS injection valves must be at least 600 pslg. A cylinder with a lower pressure must be changed out and replaced full cylinder. The pressure on the outlet of the regulator for this cylinder is to be 100 pslg.
e. The block valve in the AMS kill line (outlet valve at bottom of pot) is to be fully open.
f. The block valve in the AMS instrument nitrogen line at the reactor manway level is to be fully open.
g. Both block valves on the manual AMS injection line at the reactor manway level are to be fully closed.
If any of the above conditions are not met, they are to be corrected before the reactor is charged. 2. To Insure proper operation of the system, the following items should be checked by the A
Operator at the beginning of each shift: a. The pressure gauges between the double
block valves on both the automatic and the manual injection lines should routinely be bled to 0 pslg.
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VAB.0001136603
A
IV. OPERATING PROCEDURES - Continued
C Normal Operation - continued
If pressure subsequently builds up on these
gauges, It Indicates that one or both of the
double block valves are leaking. Note; These
gauges will have pressure on them after AMS
injection.
b. All spare nitrogen cylinders In the racks are to
be full.
The above items are vital to the proper operation of the
emergency kill system. If any of these conditions are
not met, they are to be Immediately corrected.
D Testing Procedures
1. The AMS Emergency Kill System for each reactor
will be tested per the frequency Indicated
below. Each system will be checked to assure
proper valve position, proper operation of the
remote operated valves, and that the AMS inlet
lines to the reactor are not plugged. The Shift
Supervisor, the Chief Operator, the A Operator
and the Lead Operator will conduct the testing.
The testing procedure for each reactor is as
follows:
To Be Conducted Week!
a. The A Operator is to perform a complete
visual check of the system both at grade
level and the reactor manway level. All
on-off valves are to be in their proper
position and any problems detected with
the system are to be noted and corrected -13-
VAB.0001136604
IV. OPERATING PROCEDURES - Continued D. Testing Procedures - continued To Be Conducted Weekly - continued b. The Shift Supervisor is to check for any pluggage in the manual injection system nozzle (also the remote Injection system nozzle for D-300, D--700 and 745) using a rod through the rod-out port. Any blockage found is to be removed. This check is to be made during dump or rinse of the reactor. The shift supervisor is to note in his log book which reactors are checked for pluggage of the injection nozzles.
i
c. The following procedure will be used to check the remote operated system and to assure the injection nozzle is not plugged. The checkout will consist of injection of a small amount of AMS into the reactor by cycling the remote operated AMS valves. The check is to be made after dump is complete and before the rinse to the sewer. The Lead Operator, who is in communication with the field operator, will cycle the remote operated valves using the manual addition button and will also check the lights on the panel for open and close indication. The field Operator will check the operation of the remote valves in the field. The A
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VAB.0001136605
IV. OPERATING PROCEDURES - Continued D. Testing Procedures - continued To Be Conducted Weekly - continued Operator will check the AMS Injection pot to assure AMS addition to the reactor by AMS before and after the AMS addition. The reactor is to be rinsed after the AMS is injected and the A Operator is to refill the AMS Injection pot before the next batch is charged in that reactor. The Shift Supervisor is to note in his log book the reactors which are checked. 2. The conducted on the AMS kill system before the reactor is charged. 3. Whenever the ambient temperature drops below 20F, the AMS kill system for each reactor is to be checked once per shift. The check is to assure the injection nozzle is open and that there is no pluggage due to freezing in the kill system. The check out will consist of injection of a small amount of AMS into the reactor by cycling the remote operated valves and is to be made after dump Is complete and before the rinse to the
VAB.0001136606
IV. OPERATING PROCEDURES - Continued D. Testing Procedures - continued The Lead Operator, who is in communication with the field operators, will cycle the remote operated valves using the manual addition button and will also check the lights on the panel for open and close instruction. The field Operator will check the operation of the remote valves in the field. The A Operator will check the AMS injection pot to assure AMS addition to the reactor by measuring the level in the AMS injection pot before and after AMS addition. The reactor is to be rinsed after the AMS is Injected and the A Operator is to refill the AMS injection pot before the next batch is charged in that reactor. The A Operator is to record the checking of the AMS kill systems on his Winter Protection Check List.
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VAB.0001136607
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V. APPENDIX
VAB.0001136608
STORAGE AND HANDLING OF alpha-methly styrene
*
Alpha-Methyl styrene Is usually stored and handled In steel equipment* It Is also compatible with stainless steel, aluminum, and galvanized iron. Copper and copper alloys are not recommended for this service*
This product has a fairly low freezing point (about -10F) and low viscosity* Underground storage tanks and lines should be considered, as their use will prevent freezing in winter and keep the product cool in summer* Storage temperature should not exceed 100F. Storage under a nitrogen blanket is preferred; exclusion of air (oxygen) will reduce the chances of polymerization, peroxide formation, and fire*
Piping can be of the materials listed above* A centrifugal pump is suggested for transfer service* "Teflon" is suitable for gaskets and packing.
An inhibitor, para-tertiary butyl catechol (10-20 ppm), is used in alpha-methyl styrene to inhibit polymerization. If storage time is prolonged, the inhibitor concentration should be checked occasionally and more inhibitor added, if needed* Alpha--Methyl styrene is a toxic chemical; contact with liquid or vapors should be avoided*
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VAB.0001136609
U.S. DEPARTMENT OF LABOR Occupational Safety and Haaith Administration
MATERIAL SAFETY DATA SHEET
Hspuired under USOL Safety and Haaith Regulations for Ship Rape Shipbuilding, and Shipbreaking (29 CFR 1915, 1916, 1917)
SECTION I
MANUFACTURER'S NAME
USS Chemicals Diviaion, U. S. Steel Corporation
AODRCSS (Number. Street, Cite, State, ami A/P Code)
__690.
CHEMICAL. NAME ANO SYNONYMS
Aloha Methylstyrene. Phenyl Propylene
EMERGENCY TELEPHONE NO
(614) 532-3420
* b +v
BOILING POINT (F.) VAPOR PRESSURE (mm Ha.) VAPOR OENSITV (AlR*l) SOLUBILITY IN
SECTION III * PHYSICAL DATA
329.2 Low
4.1
SPECIFIC GRAVITY (H)O* 1 )
PERCENT, VOLATILE BY VOLUME (S)
EVAPORATION RATE
i UaPar
))
Lesa Than
0.907
Low
APPEARANCE ANO OOOR
Colorlaaa liauld
SECTION IV - FIRE ANO EXPLOSION HAZARD DATA
ASH POINT (Mainud usad)
a
Tag Closed Cup - 114 F.
SHI NO MCUIA
, foam, dry chenical
'fight INO
apray can be uaad to
control
FLAMMABLE LIMITS
unconfined firea. but
Ual
__should not bemused.___Fire:
should have aelf-containad breathine apparatus
UNUSUAL FIRE ANO~ERPLOSION HAZARDS
Nona
PAGE (1)
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SECTION V - HEALTH HAZARD DATA
/M3 Pcdartl.Iilietv
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STABILITY
UNSTABLE
STABLE
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SECTION VI - REACTIVITY OATA
1 CONDITIONS TO AVOlO
3C f 1 StI5W
ajanta,
hazardous decomposition products
HAZAROOUS POLVME RIZAT ION
MAV OCCUR WILL NOT OCCUR
CONDITIONS TO AVOID
lnltlacor*
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SECTION VII - SPILL OR LEAK PROCEDURES
STEPS TO SC TAKEN IN CASE MATERIAL. *S RELEASED OR SPUXlO
Laraa amounts - flush with vatarbut pravant
drains
Small amounts - mix with sand and burn
wars
WASTE DISPOSAL. METHOD
combustion chamber
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SECTION VIII SPECIAL PROTECTION INFORMATION
RESPIRATORY PROTECTION (SoyClfv t\pt)
Saif-contained breathing apparatus for savara exposure
--VE__N__T'ILA__T__IO___N_
| LOCAL. EXHAUST
ISSPECIAL
MECHANICAL /(tt'Henli
OTHER
Nona
PROTECTIVE GLDV ______________
_
nonsolubla plastic mstar lala
or of
oits <Sn2Catrlal hazard - no
EYE PROTECTION
cars
gogglaa
SECTION IX SPECIAL PRECAUTIONS
PRECAUTIONS TO BE TAKEN IN HANOLING AND STORING
and ooan fl
OTHER PRECAUTIONS
Nona
PAGE (2)
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