Document Yj5NQybN1qGE5k9d6OBbnkr8D
1996 CONSOLIDATED AUDIT
REACTIVE CHEMICAL REVIEWS
\
TEAM LEADER FUNCTIONAL LEADERS -
00 A 042935 CONFIDENTTAL
Louisiana Division Consolidated Audit Process
Guidelines
Audit Process
Before/After Audit
1. Deliver questionnaires on computer disk to plant superintendent for distribution to plant team.
2. Plant coordinator submit plant contact names and completed critical path check list to the Consolidated Audit department office professional.
3. Plant team member contact Functional Team Leader to help update questionnaires and identify needs.
4. Plant team member submit completed questionnaire to Functional Team Leader
5. LAD Auditors complete pre-audit inspections and interviews.
6. All audits/inspections completed.
7. Functional Team Leaders review recommendations (draft) with plant contact or superintendent.
8. LAD Audit Administrator conduct pre-audit conference with Plant Superintendent to answer questions and review agenda format for wrap-up session.
9. Plant Superintendent submit a copy of all completed questionnaires to the Consolidated Audit Department Office Professional, Safety Superintendent and Technology Center Representative.
4 months before 3 1/2 months before
fi n n n 6-8 weeks before 4 weeks before 4 weeks before 3 weeks before 3 weeks before
2 weeks before
rev./hrw 02/09/94
DO A 042936
CONFTDFNTTAl
10. One day audit wrap-up
11. Functional Audit Team Leaders submit recommendations to Audit Administrator.
12. LAD Audit Administrator consolidates separate reports into one report (draft) for the plant, (computer disk)
13. Plant superintendent/staff review draft report and comment to LAD Administrator.
14. Audit Administrator submit final report to plant superintendent.
15. Plant review report/actions plans with Major Manager and replies to Core Audit Team with implementation plans.
16. Audit Administrator issue one year status report reminder letter to the plant.
17. Plant issues follow-up status report and each one year following.
18. Technology Center review results of implementation plans at the next Technology Review.
19. Close-out action plans of previous audit.
7 calendar days after 10 calendar days after
14 calendar days after 15 calendar days after 60 calendar days after
11 months after 1 year after 1 year after
6 months before next audit
rev./hrw 02/09/94
D0 A 047937 CONFIDENTIAL
Consolidated Audit Guidelines Auditing Process
1. The Consolidated Audit Group will keep the overall Louisiana Division audit schedule, (plant/department is responsible for working out a swap if there is an unavoidable conflict and inform the Louisiana Division Audit Group, phone 8338 or 1883).
2. The Louisiana Division Audit Group will send to the plant/department the audit package questionnaires (computer disk) for the audit sections approximately 3-4 months in advance, (plant/department may request the package earlier.)
3. Questionnaires are to be completed by the plant/department being audited and returned to the Louisiana Division Audit Administrator and copied to the Safety Superintendent and Technology Center Representative at least 2 weeks in advance of audit "wrap-up". The plant contact will get the appropriate questionnaire to the leader of the Functional Audit Groups prior to pre-audit inspections.
4. For purposes of the consolidated audit process, the permanently assigned block maintenance personnel and the in-block maintenance shop facilities will be included in the scope of the audit.
5. The consolidated audit for each plant will be led by a team consisting of the Plant Superintendent/Department Head, the Safety Superintendent, a Technology Center Representative, and the Audit Administrator from the Louisiana Division Audit Group. This will be referred to as the Core Audit Team. The role of each Core Audit Team member is explained in detail by attachments.
6. All "OTHER" applicable audits and inspections that are to be included in the consolidated audit should be scheduled and completed 4 weeks in advance. A list of "OTHER" applicable audits should be made well in advance to allow time for completion.
7. All audit participants are required to follow the established schedule (arrange backups for vacation, conflicts, etc.).
rev./hrw 02/09/94
0A? C
8. A short wrap-up session will replace the three day sessions that were held in the first round of consolidated audits. No plant overview or self evaluation questionnaire presentation will be required.
The wrap-up sessions will focus on dialog and auditor's explanations. Timing will be set by the Plant Superintendent, Audit Administrator and each Functional Team Leader.
9. Each Functional Audit Team will be responsible to furnish the Consolidated Audit Department Office Professional a written (VAX) audit report of their recommendations seven days after the audit wrap-up date. If no wrap-up is necessary recommendations are due by the deadline date. Each recommendation must be identified as M = MUST DO, (based on compliance issues - government regulation, Dow policy or S&LP) and HR = Highly Recommended, (necessary to mitigate an anticipated or potential hazard).
10. The Audit Administrator will review the recommendations and submits a draft to the Plant Superintendent within fifteen days after the audit.
11. The Plant develops an implementation plan as a response to the recommendations. The plan should include the name(s) of the employee(s) assigned to each action item along with an estimate of the time required to complete. This plan is reviewed and approved by the Major Manager (or Section Manager) within 45 days of the audit. The approved implementation plans are sent to the Audit Administrator and then copied to each member of the Core Audit Team and the appropriate section to the Functional Audit Team Leader 60 days after the audit.
12. A follow-up status report will be issued by the plant 12 months after the audit to the Major Manager, Section Manager, and to the Consolidated Audit Department Office Professional for distribution to the other Core Audit Team Members and the appropriate section to the Functional Audit Team Leader.
rev./hrw 02/09/94
Do
13. In keeping with the OSHA STAR Program and OSHA's PSM standard 1910.119 a close out status report will be due 6 months prior to the next audit. The Plant/Department will be required to send the close out status report to the Major Manager and the Consolidated Audit Department Office Professional for distribution to the other Core Audit Team members and the appropriate section to the Functional Audit Team Leaders.
(To effectively close-out the prior audit action plans the Audit Administrator and Functional Team Leaders will work with the plant/departments to complete this task).
14. The Technology Center will also review the status of approved implementation plan responses to the consolidated audit during its next plant technology review.
rev./hrw 02/09/94
D0 A 042940 confidential
DOW USA
LOUISIANA DIVISION CONSOLIDATED AUDIT PROGRAM GUIDELINES
LAD ORGANIZATION
1) LOUISIANA DIVISION AUDIT GROUP
Louisiana Division Office Professional
Connie Kalencki
504-353-8338
Louisiana Division Audit Administrator
Howard Wilkinson 504-353-8338
2) CORE AUDIT TEAM
Plant Superintendent Safety Superintendent Technology Center Representative Louisiana Division Audit Administrator
3) FUNCTIONAL AUDIT TEAM LEADERS
Safety Chemical Exposure Index Hazardous Materials Transportation Review Occupational Health Reactive Chemicals Loss Prevention/Fire/ Burner Management Security Laboratory Process Control Network Electrical 5-Point Audit
Don Jones Buck Bailey Dean Smith Ralph McLaurey Gerald Wagener Buck Bailey Charles Almond A1 Ribes Steve Villarrubia Mike Gee
rev./hrw 02/09/94
DO A 042941 CONFIDENTIAL
From: To: CC: Subj :
LACSDC::MILES CONSAUD.DIS MILES
Please review
8-JUL-1996 17:04:45.37
.dy Howard Troy
Please review the minutes. Let me know if you want to make any changes before I send out the notes.
cc: J.J. Hiemenz Brian Harris Scott Daigle John Williams Charles Douglas Hellen Causey Greg Schultz Steve Caldwell
re: CONSOLIDATED AUDIT PLANS FOR OCT. 15, 1996 AUDIT
Roddy, Howard, Troy,
The following are the timing and issues that we agreed upon for the October 15, 1996 Consolidated Audit for Chlorine and Cell Service:
Timing September 16
Questionaires completed with input from Functional Leaders
September 16 - Oct.l
Auditors complete inspections Troy to facilitate audits
October 15
Consolidated Audit Wrap-up mtg.
2. The reactive chemical section of the Consolidated Audit will be eliminated. (The New Superintendent RC review will suffice)
3. The VPP inspection will replace the Consolidated Audit walk through inspection.
4. The VPP documentation inspection will replace the Consolidated Audit documentation review.
5. Howard will provide a list of the team leaders for the Consolidated Audit.
Questionaire assignments:
HMTR Lab NA Safety
Hellen Causey Steve Caldwell Roddey - Troy
Do A 042942 CNFrDFNTrAL
Occ Health
Greg Schultz - Charles Douglas
Security
Bruce Miles
Loss Prev
Scott Daigle, Brian Harris, Bruce Miles
"rocess Control John Williams
Please let me know if I have misinterpreted any of the agreements that were made for the audit or if we need to change any of the assignments.
.nks, Bruce Miles
DO A 043943 CONFTDFNTIAL
March 1991
Louisiana Division
LOUISIANA DIVISION GUIDELINES FOR REACTIVE CHEMICALS REVIEW
The enclosed package contains guidelines to assist you in preparing for a productive and comprehensive Reactive Chemicals Review. It is important to realize that Reactive Chemicals considerations are YOUR responsibility. The Reactive Chemicals Committee is made up of people experienced in this area and helping you fulfill your reactive chemicals responsibility is our primary goal.
Evaluation of past incidents shows that inadequate operating procedures, lack of positive raw material identification, critical instrument problems, and material of construction incompatibility cause serious concerns. Consider these items carefully.
Attached is a Reactive Chemicals Review checklist which will guide you in preparing for your review. Please complete this checklist and include as the cover sheet for your review package. Attachments are also provided for updating Reactive Chemicals data and to assist you in developing "Worst Case" scenarios. A list of resources to help you prepare is included.
The final attachment is a self evaluation questionnaire which we encourage you to fill out to help you recognize strengths and weaknesses of your program. We think this questionnaire will be an asset to you in further development of your Reactive Chemicals Program. The results of the self evaluation should be a topic of discussion at your review.
Make every attempt to limit your review presentation to chemical reactivity. The Reactive Chemicals Committee does not deal with other problems unless they bear on chemical hazards. Do not review markets, costs, strategy, etc.
The Plant should send one copy of the completed Questionnaire to the LAD Audit Facilitator 10 calendar days before the audit. Send 10 copies of the presentation packet to Cindy Gum (Reactive Chemicals Office Professional, Building 2510, Ext. 1601) at least 1 week prior to the review.
Gerald Wagener, Chairman Reactive Chemicals Committee Building 2511, Ext. 1828
A 04;?944
CONFrDFNT.rAL
CHLORINE / CELL SERVICE REACTIVE CHEMICALS REVIEW
New Superintendent
01/31/97
DO A 0 4 P 9 4 5 C O N F ID E N T IA L
11-19-96
Reactive Chemicals review conducted on 11-13-96
Chlorine\Cell Service - New Superintendent\Consolidated Audit Review
Attendees: Joe Schell, Don Jones, John Young, John Monroe, Buck Bailey, Dean LeBlanc, Bruce Miles, John Gross, Brian Harris, Scott Daigle, Dhaval Buch, Gerald Wagener, J.J. Hiemenz
Review resultsVrecommendations
Chlorine\Cell Service new superintendent has successfully demonstrated a high level of knowledge and sensitivity to reactive chemical hazards and controls in his new area of responsibility. The following recommendations resulted from this review:
1. Heavies Removals Scenario: Trays in ST-55 become dry and concentrate nitrogen trichloride to critical (explosive) concentrations.
Calculate the maximum amount of NCI3 that can form on the trays under current conditions and determine if this is a credible scenario.
Review the safeguards in place for keeping the trays wet to avoid this scenario. Review the Tech Center initiative in this area and ask them to review the Oxy Chem incident and make recommendations.
2. Taffy Pots: One of the lines of defense for safe operation of the taffy pots is to avoid "blocking in" the taffy pots. Review the taffy pot operating discipline and make sure it prevents "blocking in" scenarios. Add this safeguard to the list of preventive measures for avoiding an explosion the taffy pots.
3. Liquefaction Scenario: Hydrogen-chlorine explosion in tail gas.
The preventive measures for avoiding a hydrogen explosion in the tail gas need to be modified to include the specific action to be taken if the hydrogen in the tail gas gets to 5%. Several safeguards were mentioned during the review such as keeping the concentration below 1% and injecting nitrogen into the chlorine to control hydrogen at or below 3.5% (C02 free basis), but there is no consensus on action to be taken if the hydrogen ever gets to 5%.
4. Plant Safety Requirement #11 (Sulfuric acid corrosive to carbon steel):
Add concentration and velocity limits ie. "below 90% and above 3 ft/sec sulfuric acid is highly corrosive". Check with Tech Center and make sure these are the correct numbers.
DO A 042946 CONFIDENTIAL
5. MDEA in mining water at Promix: As a result of Promix changing ownership, a review of their safeguards for avoiding MDEA in mining water should be conducted. A comment was made that Promix is considering installing an analyzer to detect this problem. Operating discipline needs tc be developed at the Chlorine Plant to insure that the Chlorine Plant is quickly notified whenever MDEA enters the mining water.
Please respond within one month as to action taken or planned in regards to these concerns. Gerald Wagener, Chairman Reactive Chemicals Committee
oo 4?94>
CHLORINE/CELL SERVICE CONSOLIDATED AUDIT REACTIVE CHEMICALS
SPOT CHECK OF PLANT PROCEDURES & IPT MODULES
CRITICAL & EMERGENCY PROCEDURES
(CONDITION, LIMIT, CONSEQUENCES OF DEVIATION, ACTION TO BE TAKEN)
Chlorine /iron fire at 155 deg C, chlorine-organic reactivity, Chlorinetitanium reactivity in environmental scrubber, NC13 reactivity in evaporators, High hydrogen in chlorine, deadheaded pumps resulting in CWiron fires.
REACTIVE CHEMICAL MODULES FOR EACH SECTION OF PLANT
(POTENTIAL PROBLEMS & PREVENTIVE MEASURES) Nitrogen Trichloride explosion in Taffy Pot, Nitrogen Trichloride explosion in reboiler, Chlorine/organic reaction from lubricants, Hydrogen/chlorine explosion in tail gas. Dry chlorine/titanium reaction in brine scrubbers.
IPT MODULES
MATERIAL OF CONSTRUCTION C-100 A/B, C-100 A/B suction and discharge piping The different parts ofa cell -Cell body, Cell backboard. Anode, Cathode,
Cell cover
,Identify What is considered dry chlorine and what metals will dry chlorine
react with. What metal is good to use in wet chlorine. What effect does chlorine have on hydrocarbon based oils and grease? List the metals that are rapidly attacked by caustic. List what solvents are acceptable to clean chlorine equipment. Explain the reaction ofdry chlorine and hot steel.
COMPREHENSIVE REACTIVE CHEMICALS TEST MODULE-draft
DO A 04?948 CONFIDENTIAL
Chlorine Plant Personnel Reactive Chemical Interview Questions
1. HOW DOES THE CHLORINE PUNT PREVENT HYDROGEN AND CHLORII
MIXTURES IN THE CELL COVERS (ANOLYTE)?
Correct
Q3 SOS
1. Chlorine compressor low suction pressure trip at
1/1 2/2
10" of water vacuum.
2. Vacuum relief seal pots in cell area. Seal pots are
Y
designed to relieve at 6" of water vacuum.
3. Monitor hydrogen in chlorine concentration
Y YY
continuously on each series with on-line GC's.
4. One head level transmitter with three bubblers. One
Y
high and one low level probe. (Note: As circuits are
converted to Mod5 controls, level of redundancy is
increased.) Three level extremes with deviation alarms.
5. Minimum operating head level is 6" of water. Trip
Y YY
at 4" of water.
HOW DOES THE CHLORINE PUNT PREVENT A URGE HEAT OF REACT
BETWEEN STRONG ACID AND MOISTURE IN THE T-103 STRONG H2S04
TOWER?
Correct
Q SOS
1/1 2/2
1. Use Carbon Steel vessel and piping.
2. Monitor tower, gas, and acid temperatures. (<=25
Y YY
Degrees C. >=5 Degrees C.). 3. Monitor acid concentration.
Y YY
4. Use Stainless Steel tray materials.
5. Monitor moisture out of D-103.
3. HOW DOES THE CHLORINE PUNT HANDLE AMMONIA CONTAMINATION
MT-1 (INCOMING BRINE)? (AMMONIA FORMS NCI3 IN CELLS WHICH
CONCENTRATES IN LIQUEFACTION.)
Correct
OS SOS
1. Sodium Hypochlorite added to achieve 170 ppm
1/1 2/2
excess. Hypos react with NH3.
Y YY
2. Samples analyzed bi-weekly by R&D for Ammonia
YY
and Amines. Sodium Hypochlorite added to chlorinate amines.
10/96
DO A 042949 CONFIDENTIAL
4. HOW DOES THE CHLORINE PLANT PREVENT A CHLORINE-IRON REAC
INSIDE THE HIGH STAGE COMPRESSOR?
Correct
03 &QS
1. Monitor and alarm compressor discharge
0/1 2/2
temperature.
YY
2. Trip compressor on high discharge temperature
YY
at 140 Degrees C.
5. HOW DOES THE CHLORINE PLANT PREVENT A H2-02 EXPLOSION/FIRE
THE HYDROGEN AREA?
Correct
03. BQ3
1. Trip system at 1/8" water at compressor suction
1/1 2/2
(2 seconds delay).
Y
2. Redundant 02 analyzers, trip at 0.70% 02, (T-702-A).
Y YY
3. Strict inert gas purging procedures with explosimeter
checks at various points.
4. Automatic N2 purge on system trip to maintain a
Y YY
slight positive pressure.
5. H2 header pressure is controlled by recycle from discharge.
6. Explosimeter check to work/vehicle entry. No
smoking, N2 purge analyzers.
7. Detailed procedures for H2 stack fires. Steam purge
to maintain backpressure on stacks.
6. HOW DOES THE CHLORINE PLANT PREVENT A DRY CHLORINE-TITANIUN
REACTION IN THE BRINE SCRUBBERS?
Correct
03 SOS
1. Alarm low brine flow to scrubber.
1/1 2/2
2. Alarm low level in brine scrubber.
3. Inject water purge on brine scrubber inlet gas flow to
Y YY
protect Titanium.
7. IF A TITANIUM/CHLORINE REACTION DOES INITIATE, WHAT IS THE ONLY
EFFECTIVE WAY TO STOP THE REACTION FROM CONTINUING?
Correct
03 SOS
1/1 2/2
1. Remove the source of chlorine.
Y YY
10/96
DO A 042950 CONFIDENTIAL
8. HOW DOES THE CHLORINE PLANT PREVENT A NITROGEN TRICHLORL
EXPLOSION IN THE TAFFY POT?
Correct
03 SOS
1/1 2/2
1. Operate taffy pots at low temperatures.
Y YY
2. Monitor and alarm temperature in each pot (redundant).
Y YY
3. Alarm rate of temperature rise in pots.
Y
4. Analyze brine for NH3 content bi-monthly (R&D).
5. Analyze taffy weekly for NCI3.
6. Monitor and alarm pressure on each taffy pot.
7. Lowered psv setting to 150# to catch overpressure.
8. Maintain 100 PPM Hypochlorite in the brine.
9. Maintain level below 66% to allow room for dilution
should a reaction take place.
10. Maintain automatic dump valve from the control
Y YY
room to provide liquid Chlorine for the taffy pot in the
event of a trip or pressure rise.
11. Register taffy pots with the Pressure Vessel
Committee for yearly inspection and cleaning.
12. Carbon-tet injection system to dilute taffy from reboiler.
Y YY
9. HOW DOES THE CHLORINE PLANT PREVENT A NITROGEN TRICHLORIDE
EXPLOSION IN THE REBOILER?
Correct
OS SOS
1/1 2/2
1. Maintain a minimum 35% level.
YY
2. Dump E-55/65 when temperature rises to 0 Deg C.
Y YY
3. Alarm high tube side chlorine flow to reboiler.
10. HOW DOES THE CHLORINE PLANT CLEAN THEIR CHLORINE VESSELS T
PREVENT A CHLORINE/ORGANIC CHEMICAL REACTION AFTER THEY ARE P
BACK IN SERVICE?
Correct
03 SOS
1. Prohibit use of hydrocarbon based compounds inside Chlorine vessels.
0/1 2/2 ? YY
2. Use only hot water for cleaning.
YY
The OS scored 80%. The SOS's averaged 100%.
10/96
DO A 042951 CONFIDENTIAL
CHLORINE/CELL SERVICE REACTIVE CHEMICALS REVIEW
NEW SUPERINTENDENT
O O-f I> 1--tf v\O> ]> Ut
REACTIVE CHEMICAL REVIEW AGENDA
IMPROVEMENTS SINCE THE LAST REVIEW PROCESS SAFETY REQUIREMENTS RECOMMENDATIONS FROM PREVIOUS REVIEWS (1993 AUDIT) REVIEW QUESTIONNAIRE BY EXCEPTION REACTIVE CHEMICAL INCIDENTS SINCE LAST REVIEW REVIEW PLANT SYSTEMS (SIMPLIFIED FLOWSHEETS, SCENARIOS & DEFENSE)
REACTIVE CHEMICAL IMPROVEMENTS
SINCE THE 93 REVIEW
CELL AREA INSTRUMENT/MOD V UPGRADE DEDICATED N2 TO LIQUEFACTION LEAK REPAIR SEALANT DATABASE CRITICAL PROCEDURES REACTIVE CHEMICALS IPT C-550/650 & CHLORINE PUMP HAZOP WET & DRY COMPRESSOR COVERSION TO MOD V COMPATABILITY CHARTS
W l-LNaaidNOO tV b Z P Q y Qn
10 PROCESS SAFETY REQUIREMENTS
1. CHLORINE REACTS WITH OIL, LUBRICANTS AND SEALANTS 2. DRY CHLORINE AND TITANIUM BURN 3. CHLORINE AND HYDROGEN CAN BE EXPLOSIVE AT > 3% HYDROGEN IN
CHLORINE 4. CHLORINE AND WATER ARE CORROSIVE AT > 10 PPM WATER IN CHLORINE 5. CHLORINE AND CARBON STEEL BURN AT > 140 C 6. HYDROGEN AND AIR CAN BE EXPLOSIVE BETWEEN 5 AND 95 % 7. NITROGEN TRICHLORIDE (NCL3) CAN BE EXPLOSIVE AT > 30,000 PPM 8. CELL SALT CONCENTRATION AT > 300 GPL CAN CAUSE CELL ARCHING 9. CHLORINE CELLS OPERATE AT HIGH VOLTAGE POTENTIAL TO GROUND 10. BLOCKING IN LIQUID FULL CHLORINE LINES WILL CAUSE A LOSS OF
CONTAINMENT. 11. SULFURIC ACID IS HIGHLY CORROSIVE TO CARBON STEEL.
Oo CoMF
f
042955
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1993 Reactive Chemical Followup
RxChem committee does not feel comfortable with controlling hydrogen in tailgas at 3.8 mole %. Review this issue with the CATC.
- Contacted CATC on 6/20/94 - Control is now at 3.5 mole% During startup of a chlorine circuit more frequent GC analyses of hydrogen in chlorine is recommended. - Issue is still be resolved by the CATC. When a
final determination is made equipment will be installed as necessary to meet the requirements.
DO A 0 4 2 9 5 6 CO NFIDENTIAL
Chlor-Alkali Reactive Chemical Incidents 94 Thru 96
00 A 042957 CONFIDENTIAL
DO A 04P958 CONFIDENTIAL
DO A 0 4 2 9 5 9
C O N F ID F N T T A L
Sodium Corbonato Production
CHLORINE I BRINE TREATING
PROCESS WATER
AEATEO bRME
FROM P4*
'-400I
SAT FROM CAUSTIC SAT FROM CAJ
BALT SLURRY SYSTEM
SAT TO 8 TRAM CELLS
catsSAT TO TWUN
B. Harris 10/25/96
CHLORINE I
DC. Procedure / Description Steps List steps in procedure in order or the information! you want document to contain.
REACTION CHEMICAL:BRINE
EQUIPMENT___ POTENTIAL PROBLEMSPREVENTIVE MEASURES
MT-1 A&B RAW BRINE
Ammonia contamination as well as other naturally occurring Nitrogen based compounds can react and form Nitrogen Tri-chloride (NCl^) in the chlorine cells and then be concentrated to explosive levels in the Purification and Liquefaction Processes.
Sodium Hypochlorite added to achieve a minimum of 100 ppm excess in Treated Brine. Hypochlorites react and destroy nitrogen based compounds.
Samples analyzed weekly by the Chlor-Alkali Consolidated Lab for Ammonia and other Amines.
Sodium Hypochlorite added to chlorinate amines.
Brine Production in the process of adding an onstream ammonia analyzer.
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DO A 042961 CONFIDENTIAL
Page # 2 of 2
AC
So
2-t\
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So
Trr to
HYDROGEN COLLECTION
CHLORINE TRAIN
EFFLUENT
HYDROGEN COLLECTION
CHLORINE TRAIN
Series Block Diagram
ToCI2
Dow Confidential
00 A 0429A3 C O N F ID E N T IA L
VI. CELL OPERATION Figure 1 (10% CAUSTIC)
COMING ON-LINE, POTENTIAL PROBLEMS
CHLORINE I
PREVENTIVE MEASURES
HYDROGEN AND AIR MIXTURE IN THE HYDROGEN HEADER OF SERIES COMING OFF-LINE.
HYDROGEN AND AIR MIXTURES IN CELL COVERS OF OFF-LINE SERIES.
HYDROGEN AND AIR MIXTURES IN THE HYDROGEN HEADER OF ON-LINE SERIES.
DISINTEGRATION OF M-83 CELL TITANIUM ANODES OPERATING AT 5 VOLTS OR HIGHER.
HYDROGEN PRODUCTION CAUSED BY REACTION OF IRON AND CELL EFFLUENT AT HIGH TEMPERATURES.
INCREASED PRODUCTION OF NITROGEN TRI-CHLORIDE USING AMMONIA CONTAMINATED CELL EFFLUENT FROM CAUSTIC PLANT.
PROCESS CHANGE CAUSES SALT STRENGTH TO INCREASE
1. Purge series Hydrogen header with C02 after coming off-line. CA2 uses N2.
1. Keep minimum 6-inch head on off-line series
2. Double block and bleed on series Hydrogen header.
3. Purge off-line series with N2 under covers and C02 in the Hydrogen header. CA2 uses only N2.
1. The Hydrogen headers and Hydrogen stacks are run at a slight pressure.
2. 02 in H2 analyzers at Hydrogen Collection Trains.
1. Monitor series and individual cell voltages. Alarms on series voltage.
2. Clip drop profiles once per quarter. 3. Guidelines for operating high voltage
series/cells.
1. Purging of lines and equipment when welding and burning.
1. Closely monitor Ammonia levels in treated brine to the cells when using this cell effluent stream
1. Sampling of the anolyte salt strength twice per shift. Salt is taken off if over 305 gpl for one round or over 300 gpl for two rounds.
2. Visual inspection of the causitc outlets and radial feeder twice per shift for signs of salting up.
2. Alarm for high series voltage and voltage increase. DO A 042965 CONFIDFNTIAL
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POTENTIAL PROBLEMS
CHLORINE I
PREVENTIVE MEASURES
LEAVING SALT ON OFF-LINE SERIES PLUGGING OF INDIVIDUAL RADIAL FEED
LOW anolyte CIRCULATION.
BOILING OFF OF THE WATER IN THE ANOLYTE AND/OR THE CELL EFFLUENT.
1. Automatic block on salt slurry with brine flush upon a rectifier trip.
1. Salt density controller. 2. Visual inspection of radial feeders. 3. Velocity is maintainedby design. 4. Rock salt screen on column at CA2. 5. Screens in feed lines. 6. Cover salt profiles once per qtr. 7. Sample 2 cells at least 2 covers apart on
each round.
1. Operate at lower salt strength at lower loads.
1. Monitor cell temperature and volts with increased frequency on hi-volt cells.
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CIRCUIT SHUTDOWN
Condition
Limit
Consequences
Action(s) to be taken
Blocking in the cell effluent manual valve when the Rectifier is running.
During running Elimination of diff ` 1
conditions this across diaphragm will cause
valve must remain hydrogen to back up into the
wide open.
anolyte. The H2 gas will
mix with the C12 gas and
could cause an explosion.
Leave valve in wide open position until Rectifier is down and ready to be bottled.
Low anolyte head when the 4" Mod trip 5"
Rectifier is energized.
Mod alarm
Hip to prevent H2 from backing up into anolyte side of cell and into Chlorine gas. AC12 /H2 explosion could result.
Mod will trip Rectifier ifhead less than 4". Mod will alarm at 5" - Ensure main brine, side feed
and/or temp, brine control valves are open. - Open bypass(es) if necessary
High Chlorine pressure when Rectifier is energized.
0" Mod alarm 2 stages of tap
backs 2" and not rapidly coming down or 2.8" for 5 sec Mod trip
Chlorine spill and Rectifier trip if condition does not correct itself in preset limit.
- Check start up blower valve - Check start up blower - Look at train stability - High initial current in-rush
Low Chlorine pressure when the Rectifier is energized.
-1.7" and
Pull Hydrogen across
-2.5" Mod alarms diaphragm and possibly
cause H2/C12 explosion
- Check start up blower valve - Check start up blower - Look at train stability - Open air dilution valve
Rapid corrosion of cathodes while off-line.
M/B and HC1 double blocked and bled. M/B degas valve closed, if appropriate
High hydrogen on next start up which could lead to explosion.
Always block or double block and bleed without delay as per procedure. Ensure cathodes are flooded while circuit is off line.
Failure to manually block hydrogen header.
Manually close Hydrogen leaking by AOV
valve in field
into hydrogen log and cells
after Ckt is down. creating an explosive
mixture.
Always close manual hydrogen valve after Ckt is deenergized as per procedure.
Not bottling cell effluent log after shutdown.
Manually close C.E. outlet valve(s)
Hydrogen is not displaced from cell which could lead to an explosion.
Always close manual C.E. valve(s) within 5 minutes after Ckt is deenergized.
A 04?967 confidential
HYDROGEN AREA OVERVIEW
VENT T up
CHLORINE I
CT-7B1
A PC I j
UNDER.
GROUND PIPING
PCV -Shi-- LShi^J
D-7B4
FL-7R2
WS-711
EBV
DISTRIBUTION MANIFOLD
00 A 042968
C O N F ID E N T IA L .
LiiLUJun^ x
IX. Procedure / Description Steps List steps in procedure in order or the information! you want document to contain.
HYDROGEN AREA
POTENTIAL PROBLEMS PREVENTIVE MEASURES
H2-02 EXPLOSION/FIRE 1.
2.
3.
4.
5.
6.
7.
Trip system at 1/8" water at compressor suction (2 seconds delay). Redundant 02 analyzers, trip at .70% 02, (T-702-A). Strict inert gas purging procedures with explosimeter checks at various points. Automatic N2 purge on system trip to maintain a slight positive pressure. H2 header pressure is controlled by recycle from discharge. Explosimeter check to work/vehicle entryntrinsically safe, no smoking, N2 purge analyzers. Detailed procedures for H2 stack fires. Steam purge to maintain backpressure on stacks.
RL000124.DOC 49-13-07-00
10/03/96
Dow Confidential
00 A 042969 CONFTDETNTTA1.
Page #2 of 2
n
o
2 T1
O
O 2m *o>. -i \>
> OS&)
Chilled Brine T wer
To 0-1*0* ft
P-31 JUS
Sulfuric
Acid Drying
S>*tem
{ --a
JtsL
ft
i
-ft
Dry Brinks Demister
CHLORINE I
IX. Procedure / Description Steps List steps in procedure in order or the information! you want document to contain.
DRYING TRAINS
EQUIPMENT-------- POTENTIAL PROBLEMSPREVENTIVE MEASURES
E-100 RIVER WATER HEAT EXCHANGER
TITANIUM TUBES IN EXCHANGER REACTING WITH DRY CHLORINE.
1.
2.
Have exchanger in wet Chlorine service. Water purge on gas out line.
C-100 WET CHLORINE COMPRESSOR
TITANIUM WHEEL IN COMPRESSOR 1. REACTING WITH DRY CHLORINE. HIGH DISCHARGE TEMPERATURE. 1.
2.
Have compressor in wet Chlorine service.
Have H20 purge directly on compressor. Record this in control room (low alarmed). High discharge temperature trip, 90 Deg C.
E-101 RIVER WATER EXCHANGER
TITANIUM TUBES REACTING WITH 1. DRY CHLORINE.
2.
Have exchanger in wet chlorine service.
H20 purge on C-100 inlet until saturated on discharge
T-101
TITANIUM TRAY SUPPORTS
1. Brine recycle, keep tower wet
CHILLED
REACTING WITH DRY CHLORINE.
BRINE TOWER
2. Water purge on C-100 inlet.
E-104A/B FREON HEAT EXCHANGER
HASTELLOY C-276 TUBES, FREON 1. Chlorine comes into
123 AND CHLORINE
exchanger in the brine, so it
is always wet.
2. Chlorine in Freon has alarms that are checked once per day.
10/2S/96
Dow Confidential
DO A 04?971 CONFIDENTIAL
Page # 2 of 3
CHLORINE I
EQUIPMENT----------POTENTIAL PROBLEMSPREVENTIVE MEASURES
T-102 WEAK SULFURIC ACID TOWER
HEAT OF REACTION: STRONG ACID/MOISTURE
1. Use PVC lined FRP vessel, trays.
2. Monitor acid concentrations. 3. Monitor tower temperatures,
gas temperatures, and acid temperatures. (shutdown at 50 Deg C.)
T-103 STRONG SULFURIC ACID TOWER
HEAT OF REACTION: STRONG ACID/MOISTURE
1. Use Carbon Steel vessel and piping
2. Monitor tower temperatures, gas and acid. (<=25 Deg C. >=5 Deg C.).
3. Monitor acid concentration. 4. Use Stainless Steel tray
materials. 5. Monitor moisture out of
D-103.
DO A 047972 CONFIDENTIAL
10/2 j 4:17 PM
Dow Confidential
Page # 3 of 3
J:\24 Personal Foldere\CL2 StaffJJ. Hiemenz\REACTIVE CHEMICALS\09 Reactive Chemical\REACTTVE CHEMICAL DRY1NG.DOC
HE,.VIES REMOVAL
SCRL. >ER
E^54
LIQUEFACTION
.... ...... --............. --
HIGHPRESL USERS .
8
CDC
ETCV o oo zo n M 3> O mo z^ --i \)
?--( sO X> Nf
00
CCL4
LIQUID FROM STORAGE
& CL2 RETRIG
L--
O
SOLVENTS TIIROX
UQUID FROM STORAGE
CHLORINE I
IX. Procedure / Description Steps List steps in procedure in order or the information! you want document to contain.
CL2 CELL AREA
EfllEMlAL PROBLEMSPREVENTIVE MEASURES
HYDROGEN AND CHLORINE MIXTURES IN THE CELL COVERS (ANOLYTE)
1. Chlorine compressor low suction pressure trip at 10" of water vacuum. CA2 - 9.5".
2. Vacuum relief seal pots in cell area. Seal pots are designed to relieve at 7.5" of water vacuum.
3. Monitor hydrogen in chlorine concentration continuously on each series with on-line GC's.
4. 3 level xtrmrs with deviation alarms. One high and one low level probe. CA2 has 2 xtrmrs and one low level probe.
5. Minimum operating head level is 6" of water for a flooded cell with a trip at 4" of water. Minimum operating head level is 4" of water for a non-flooded cell with a trip at 2" of water.
LOSS OF HEAD ON OPERATING SERIES.
1. 3 level xtrmrs with deviation alarms mid select. Shutdown at 2" non -flooded & 4"for flooded cells. CA2 as described above.
2. Conductance probe alarms at 5 inches for flooded and 3 inches for non-flooded cells.
3. Backup side feed level controller.
LOSS OF HEAD ON NON-OPERATING SERIES; CHLORINE DAMPER VALVE ISOPEN, AND HYDROGEN BLOCK VALVE LEAKS THROUGH. BAD DIAPHRAGM (HOLES, RUST)
HYDROGEN AND AIR MIXTURES IN THE HYDROGEN HEADER OF SERIES COMING ON-LINE.
1. Double block and bleed on series Hydrogen header.
1. Cell treating 2. Good operational care of on-line and offline
cells. 3. Series on-line G.C. 4. Guidelines for operating high hydrogen
series.
1. Purge series hydrogen header with C02 before coming on-line. CA2 uses N2.
11/11/96
Dow Confidential
A 04P974 Page # 2 of 4 CONFIDENTIAL
CHLORINE I
IX. Procedure / Description Steps List steps in procedure in order or the informatiom you want document to contain.
HIGH STAGE COMPRESSION AREA
EQ1ENTIAL PROBLEMS EXPLOSIVE LIMITS PREVENTIVE MEASURES
CHLORINE-IRON REACTION INSIDE COMPRESSOR
155-165 DEG C.
1. Monitor and alarm compressor dis-charge temperature.
2. Trip compressor on high discharge temperature at 140 Deg C.
CHLORINE-LUBE OIL REACTION
1. Bearing housings separated from compressor seals by an air gap.
2. Compressor seals are Nitrogen purged
LUBE OIL FIRE
1. Installed sprinkler system at compressor and lube oil console.
NITROGEN TRICHLORIDE EXPLOSION IN E-52/62 SHELL SIDE
1. Dump to taffy pot each 48 hours operation.
2. Inspected during outages.
CHLORINE-ORGANIC CHEMICAL REACTION
RL000123.DC0 49-13 05-00
same as HEAVIES REMOVAL SYSTEM.
10/28/96
Dow Confidential
DO A 04?97S CONFIDENTIAL
Page # 2 of 2
CHLORINE I
DC. Procedure / Description Steps List steps in procedure in order or the information! you want document to contain.
HEAVIES REMOVAL AREA
POTENTIAL PROBLEMS NITROGEN TRICHLORIDE EXPLOSION IN TAFFY POT
NITROGEN TRICHLORIDE EXPLOSION IN REBOILER CHLORINE-ORGANIC CHEMICAL REACTION lubricant
PREVENTIVE MEASURES
1. Operate taffy pots at low temperatures
2. Monitor and alarm temperature in each pot(redundant) 3. Alarm rate of temperature rise in pots. 4. Analyze brine for NH3 content once/wk (CA Consol. Lab). 5. Analyze taffy weekly for NC13. 6. Monitor and alarm pressure on each taffy pot. 7. Lowered psv setting to 150# to catch overpressure. 8. Maintain 100 PPM Hypochlorite in the brine. 9. Maintain level below 66% to allow room for dilution
should a reaction take place. 10. Maintain automatic dump valve from the control room to
provide liquid Chlorine for the taffy pot in the event of a trip or pressure rise. 11. Register taffy pots with the Pressure Vessel Committee for yearly inspection and cleaning. 12. Carbon-tet injection system to dilute taffy from reboiler.
1. Maintain a minimum 35% level.
2. Dump E-55/65 when temperature rises to 0 Deg C. 3. Alarm high tubeside chlorine flow to reboiler.
1. Prohibit use of hydrocarbon based compounds inside
Chlorine vessels and piping. Use Fluorolube as gasket
and D/P cell fill fluid. 2. Use only hot water for cleaning exchanger tube bundles. 3. Training of operators, material controller, craftsmen, and
instrument personnel.
10/28/96
Dow Confidential
DO A 042976 CONFIDFNTIAL
Page # 2 of 2
^nLiUium^ i IX. Procedure / Description Steps List steps in procedure in order or the information! you want document to contain.
Dry Chlorine Compressor Start-up. Operation, and ShutDown
Condition High 1* stage or 2nd stage temperature
Compressor surge
Loss of nitrogen seal purge flow
Loss of lubricant flow to Compressor, Gearbox, or Motor Chlorine-organic contact
Limit 140C
0.95 operating point (where 1 is surge) 3 lbs/hr
Oil header pressure 8psig
No organic used in process
Consequences of
Action(s) to be taken
Deviation
C12/iron fire will start Mod5 automatically trips
at temperature of 155C compressor
-165C
Increase inner-stage cooling
Decrease suction temp to
compressor
Machine surge,
Mod5 automatically controls
possible mechanical
compressor at a predefined point
damage which may
away from surge
lead to an
Increase recycle to the compressor
environmental release
Oil/C12 reaction due to Increase seal purge flow to seals
chlorine flow out of the (use control valve bypass if
compressor seals into the bearings
necessary) If seal purge cannot be re
established the compressor
should be shutdown
Mechanical failure of Mod5 trips compressor
rotating equipment
Check lube oil skid for possible
which could result in a problems
chlorine/iron fire
Mod5 starts auxiliary pump
Possibility of a reactive Prohibit use of hydrocarbon based
chemical incident
compounds in chlorine service
vessels and piping
Ifreaction occurs, trip compressor
and stop chlorine flow to
affected area
C-52 OPERATION PROCEDURE
A) START UP C-52 AUXILLARY SYSTEMS: 1) Start up seal purge system, see SA-52 operating procedure.
10/03/96
Dow Confidential
DO A 047977 CONFIDENTIAL
Page # 2 of 9
LIQUEFACTION OVERVIEW
HEAVIES
TtTOVAL
D0 A 04297a
C O N F ID E N T ! At-
TAILGAS SCR WIDER
LIQUEFACTION & LIGHTS
REMOVAL
DISTRIBUTION MANIFOLD
CHLORINE I
IX. Procedure / Description Steps List steps in procedure in order or the infonnatiom you want document to contain.
LIQUEFACTION AREA
EXPLOSIVE POTENTIAL PROBLEMS LIMITS
HYDROGEN-CHLORINE >5% HYDROGEN EXPLOSION IN TAIL GAS
PREVENTIVE MEASURES 1. Monitor Hydrogen in cell gas continously and keep below 1.0%. 2. Monitor Hydrogen in tail gas at inlet to brine scrubber with triple redundant thermal conductivity detectors. 3. Inject nitrogen into the chlorine stream upstream of the secondary condensers to control hydrogen in inerts in the tail gas at or below 3.5%.
DRY CHLORINE-TITANIUM REACTION IN BRINE SCRUBBERS
1. Alarm low brine flow to scrubber. 2. Alarm low level in brine scrubber. 3. Inject water purge on brine scrubber
inlet gas flow to protect Titanium.
10/28/96
Dow Confidential
DO A 042979 GONFTDFNTIAl,
Page # 2 of 2
LIQUEFACTION AREA
Condition
Highstage terrperatne
Unit
140C
Compressor surge
Lr^ofniiDgenseaJdiflfercntiJ pressure
0.95 opening point (where 1 is surge)
1.5 psi
Lowbafeme pistonfbw
1900 Mr
LossofLhricantfbw to Compressor, Gearbox,orMotor
6fl header pressure
Highmachhe vtaatnns or terrpcuiue
Orient tnfc set by MTS
Chbrre-organfccortact
Thermalexpainonofliquki dibrine
Noorg3ncusedn process
Nolqsidfvfldionne lies
Consequences of
Action(s) to be taken
Deviation
QZfron firewilstart at tenpeniture of Mod5 automatkaiyfrpiBconpressor
155C-165C
Increase nxr-stagecoolrig
Decreasesuction tenp to compressor
Machinesag^ posdbfcmechanical damage whichmaybad to sn
Mod5 autornatka^cortrokcccjiEStorat apredefined poit awayfromsurge
environmental release
hxreaserecjcfcto thecampiesaor
03CQreactiondue to chbrineflow out ModSalam ofthe corrpresgor seals ito the bearigs Increase sealpurge fbw to seals(usecontrolvahe
bjpassifnecessaty) Ifsealpixge camotbe re-estabfished (he compressor
shoiddbe shtdown
Pte#ifervBcharacalfelLxe,dibrTe/Ton ModS automaticallytrpsoonpresaor at bwfcw
fire, and envromwialrelease
Ifreactionoccurs, manuallyadivde sjstemEBV^ and
evacuate alchbrine Somsystem
Mechanic fojre ofrotathg equipment ModS tripscompressor whichcould rest* h adibriiefcmfre Oedckheolskilferposshfe problems
ModS starts auxiliaryptirp
Pos.'ifemotor, gearbox, oroonpnssor ModS ajtnmattalytrps compressor based on Bertiey-
mechanical feiire
Nevadarfamation
Ifnudihewreddfeibreoau^evaa^alcHoaB
fromsystemaid stopoiflow to equipment h
question
PosMtyofareactivechemicalindent Rohhituseoftyhocahonbased compoundsin
dibrreservice \esseb andpiping
Ifreactionoccur, trpconpessor and stopdfcrneItaw
to affected area
possihfc ireorequipment fillre
Always isolateequpmert^ifxng hsudi awayasnotto
have Squid fuipipmg
Ifalhe fiiiiie doesoccur, isohtesystem asdose tothe
faikie asreasonaHypossUe andevacuate Qioifh
snflfand dumpheaders
I(.
STORAGE & DISTRIBUTION OVERVIEW
DO A 0 4 2 9 8 1
O O N F T D F N T T A l.
CHLORINE I
IX. Procedure / Description Steps List steps in procedure in order or the information! you want document to contain.
STORAGE AREA
miENIJAL PRQP LEMSPREVENTIVE MEASURES
CHLORINE/IRON FIRE FROM TEIKUKO PUMPS OVERHEATING
1. Pumps trip on low cooling flow. 2. Minimum flow lines are provided on all pumps,
preventing pumps from dead-heading.
NC13 BUILD-UP IN EVAPORATORS
1. Evaporators are dumped every 48 hours. Internal in-spection per pressure vessel schedule.
CHLORINE/ORGANIC CHEMICAL REACTION
1. Prohibit use of hydrocarbon based compounds inside Chlorine vessels.
2. Use only hot water for cleaning.
LIQUID CHLORINE REACHING USER PLANTS
1. Superheat Chlorine gas 35 Deg C. (65#) and 60 Deg C.120 #
2. Alarm high pressure/low temperature on 100% lines.
3. All users except CPE and Solvents have knock-out pots.
RL000121.DOC 49-13-01-00
10/28/96
Dow Confidential
On A 0429B? CONFrOENTTAl
Page # 2 of 2
REFRIGERATION OVERVIEW
r> 2o
o^ & \>
~n u01>50
T-54
EC-55 EC-195
REFRIGERATION AREA
Condition Hgh stagetemperature
Limit |
1 140C
Corrpressor surge
L^ssofrirogeiisEaltMiiatial pressure
0.95 cpaatrig port (where 1 is surge)
1.5 psi
Lowbalance piston Bow
19C0Iwhr
Loss ofUbricart fbwto Conpressor, Gearbox or Motor
CS headerpressure <5psg
HighnrediieviTatkTBcr temperature
Current firritsset by MTS
ChbnriMxgarac contact
Thermal expansion ofiquid dibrine
No agaricused h process
ffo (quid fill cttbrihe fries
Consequences of
Action(s) to be taken
Deviation G2/ironfirewiIl start at tenperafareof 155C-165C Machkie surge, possfcbmechaiBcal damagewhich maylead to an environmcrtalrefcase OK22reactiondue to dixbe fbwcut ofthecorrpressor seals rto (he bearngs
Fosafcb mechanical faibre, chbme/ion fine, andenvirorrrertal release
Mecfaracal Mieofrotating equpmert wlidiccuUrcsufthachbrrafron&e PbssHemotor, geartx,oroonpressor nxxhanfcallaJure
PossMtyofa reactive chemical rrdert
possbfeIbeorequpmert &flure
Mod5 automaticallytipscompressor Increase 'mar-stagecooiig Decreasesuction terrp to oortpresrx Mod5 automatical^control corrpressor at apreddhed
port awayfromsurge Increaserecedeto thecompressor ModSatem Increase sealpurge flowto seals (use oortrolvalve
bypass ifnecessary) IfsealpurgecamX bere-estaHidiedthecompressor
dnuilbe shutdown Mod5 autonreticallytipsooirptessorat bw flow Ifreactionoccurs, mamalyactivatesystemEBV^and
evacuate alcbbrine fioms^stem Mod5 tripscoripresCT Chock bbeofldcid forpossibleprobfems Mod5 starts auxSarypump Mod5 automaticallyUps corrpressorbasedonBertley-
NevadartrrmtBr Ifrnadmewredcf&lireoccur, evacuatealcbbrine
fiomsjstemand stopoi flowto equpmert to questbn Ptohbi useofhjthxarbonbasedcnrepowdsb chbrtoeservice^vessels andpptog Ifreactionoocus; tipcompressorandstopdiorineflaw toaBbctedarea Always isolate equpmert^pirg itsudi away as not to haveIquid ill ppng Ifa fre faibredoes occur, holatesystemasebse to the faibre as reasonaMypossfcb and evacuate through mUTand dump headers
00 A 042904
C.ONFTDFNTT A1
CHLORINE I ENVIRONMENTAL SUPER SCRUBBERS
To MT-1A/6 (or removal of Tanr.'iis
O Oo 2O
ti
o l> 2^ o
H \)
T->I 0o0
On
WASTE WATER (HYPO) STORAGE
h
ilfilipl
-p) LJ P-1 A
"TV
P-1 B
r 1
B. Harris 10/25/96
CHLORINE I
IX. Procedure / Description Steps List steps in procedure in order or the informatiom you want document to contain.
SCRUBBER AREA
REACTIVE CHEMICAL
EQUIPMENT______ POTENTIAL PROBLEM
AT-200
DRY CHLORINE/TITANIUM REACTION
CHLORINE/CAUSTIC REACTION (EXOTHERMIC)
PREVENTIVE MEASURES
Titanium wetted with cell effluent. Water purge on Chlorine into AT-200 with low flow alarm in control room.
Temperature is recorded and alarmed
PRECAUTIONS FOR TITANIUM WELD1NG/CT JTTING
Since AT-200 A/B and PT-200 A/B are made of titanium, any future modifications to the vessels that would require welding and/or cutting on or near the vessels should consider the following:
Titanium is very sensitive to oxygen, nitrogen, water or hydrogen under high temperature condition, such as found when welding and/or cutting on the metal. If proper precautions are not taken during these high temperature operations, the metal can be severely damaged. For this reason, Welding and Cutting on Titanium metal is to be completed only with very specific written procedures approved by Welding Technical Services.
EMERGENCY RESPONSE TO A TITANIUM/CHLORINE REACTION
It is known that titanium and dry chlorine react violently in the presence of each other. This reaction is prevented by ensuring that the chlorine that comes in contact with titanium is passivated by "wetting" the chlorine with water vapor. If a titanium-chlorine reaction does initiate, the only effective way to stop that reaction from continuing is to REMOVE THE SOURCE OF CHLORINE. This can be accomplished by stopping all chlorine flow and re-routing to the opposite scrubber tower. The deluge guns in the scrubber area located next to T-250 A/B are to be used to protect the adjacent equipment from heat damage.
RL000122.DOC 49-13-01-00
10/28/96
Dow Confidential
DO A 04P986
confidential
Page # 2 of 2
CHLORINE I
Environmental Scrubber Critical Procedures
Condition Dry Chlorine entering Environmental Scrubbers, AT-200 A&B
Limit No Dry Chlorine Flow
Consequences Titanium / Chlorine reaction resulting in chlorine release.
Action(s) to be taken Titanium normally wetted with cell effluent. Additional water purge on Chlorine into AT-200 with low flow alarm in control room.
If reaction starts, stop all chlorine flow into scrubber. Re-route chlorine flow to other scrubber if needed. Flood column with water. Protect adjacent equipment from heat damage using the fire water stations located next to the caustic storage tanks T-250 A&B.
High temperature in AT-200 A&B due to exothermic reaction of caustic and chlorine
90 deg C
Damage to fiberglass internal parts.
Temperature is recorded and alarmed. Route chlorine flow to alternate scrubber.
10/03/96 1:16 PM
Dow Confidential
T:\0SChlorincLibraiy\64 Super Scmbber\01 AT-200A-B\05 StanupVAT-200 A STARTUP.DOC
Do CQt^pr A ?987
Page # 5 of 5
Cell Service Gas Turbine Block Diagram
Gas Air
Control Power
for Plant Equipment
Bonded Diaphragms
* Cell Service has two turbines (GT-501A and GT-501B) in this part of the process. Only one turbine is operating at any given time; the other serves as a spare.
Dow Confidential
DO A 0 A 7 A 8 8 C O N F ID E N T IA L
V-,
x MATERIAL
METHYL ETHYL KETONE 'EROXIDE 'J.N-DIMETHYLANILINE DMA ZOBALT NAPTHENATE
3ERAKANE
PROMOTED DERAKANE
ND-NOT DESIRED MIX 02/15/93:DW
CELL SERVICE BLOCK COMPATIBILITY CHART
^EKP
DMA
COBALT MAPHTHENATE
DERAKANE
PROMOTED 3ERAKANE
JNSTABLE ABOVE 60 C. EXOTHERM AT
HIGHFIRE POTENTIAL EXOTHERM AT
EXOTHERMS MIX
EXOTHERM AT
100 F
MO MO THERMAL
Keep apart NO THERMAL
60 C wn
FLAMMABLE
DNLY BY RECIPE
MP :LAMMABLE
100 F Mn
ACTIVITY
ACTIVITY Mn
EXOTHERM ABOVE i cn r Mn
EXOTHERM ABOVE i cn r rv RPriPP wn
TIGHFIRE POTENTIAL
MO THERMAL
MO THERMAL
:LAMMABLE
:LAMMABLE
CEEP APART
ACTIVITY Mn
ACTIVITY
EXOTHERM ABOVE i cn r rv pcnor
EXOTHERM ABOVE i cn r wn
EXOTHERM AT
:LAMMABLE
FLAMMABLE
:LAMMABLE
:LAMMABLE
50 C Mn.
EXOTHERM ABOVE
iqnr Mn
EXOTHERM ABOVE i cn r ry RFriPF
EXOTHERM ABOVE
i cn r ry RFriPF
EXOTHERM ABOVE t cn r Mn
EXOTHERMS MIX .
:LAMMABLE
:LAMMABLE
:LAMMABLE
:LAMMABLE
ONLY BY RECIPE
EXOTHERM ABOVE EXOTHERM ABOVE EXOTHERM ABOVE
EXOTHERM ABOVE
LSnC BY RECIPE_____ l.SQ-C-BY.RFCIPE_____ 150 IT RY-REaPE_______ LSOJC_______________
o oo zn o o mo z .p* --i \>
hH sD 3> 00 r jo
Process Chemicals REACTIVE CHEMICAL MATRIX
00 A 042990
c o n f id e n t ia l
Dow CorfKfefltMt 1
FWv D*U
PrmlDjfa IlflWW
LAD CHLOR-ALKALI
Process Materials
1=Not Known to be reactive |2=Reactive (Potentially hazard under some circumstances)
3=Pqtentja| Hazard(FjaRfl Reaction Wjjh HiaTl Energy Release) ,
PROCESS CHEMICALS
r>
o z T?
o o
o^
z5 & -) v
3> *0
Carbon Tetrachloride Caustic 50% < 120 degrees Caustic 50% >120 degrees Celt Effluent <120 degrees Cell Effluent >120 degrees Chlorine-DRY Chlorine-WET Freon 11 Freon 12 Freon 123 Hydrochloric acid Hydrogen Methane Oils (all) Sodium Bisulfite Sodium Carbonate Sodium Hypochlorite Sodium Thlosulfate30% Sulfuric Acid (weak<90%) Sulfuric Acid (strong>s90%)
r
x1
X X X X
X
~x1
X X
x1
X X X
X X X X
X X
X
*TW* raaetlva chemical matrix was craatad using tha knowladga ot process engineers, procesa tschnologlsts, chemists, and MSD ahaats
*TWa gulda summarized tha potent)a) reactivity hazards of mixtures of chemicals. The Information herein does not constitute or by any means suggest suitable material compatabllfty lor the chemicals mid materials Hated. Consult piping/instrument specifications for material
I construction application.
Reactive Chemicals: Process Materials
Dow Confidential Page:1
Rev. Date: 0/7/96 Print Date. 11/8/DG
CHLORINE I
IX. Procedure / Description Steps List steps in procedure in order or the information! you want document to contain.
COMPATIBLE FITTINGS
COMPATIBLE TUBING & INSTRUMENT FITTINGS
CODE
1. PVC
2. TEFLON 3. MONEL
-P -T -M
4. BRASS - B 5. COPPER - C 6. TITANIUM -Ti
SERVICE TUBINGFITTINGS
WET CHLORINE DRY CHLORINE HYDROCHLORIC ACID SULFURIC (ALL) CAUSTIC
CARBON TETRACHLORIDE HYDROGEN SODIUM THIOSULFATE FREON TAFFY CHLORINATED BRINE OIL
T, Ti M, T Tor P T MorT M M T M or C M MorT C
T, Ti M, T Tor P T MorT M M T M or B M M or T B
RL000130.DOC 49-13-19-00
11/11/96
Dow Confidential
D A 04?9o, C0^lOFNTrA(
,* Cj
Page #2 of 2
Title
File Name (RL#)
CHLORINE I
REACTIVITY OF SEALANT
RLOQ5273.DOC
Author Approved By Revision Number Review Group Reviewed Date File Description
File Path
Scott Daigle
Date Created
5/14/96
Robert Politz
2 Rev. Approved By N/A
Staff
4/6/96
Reviewed By
Robert Politz
REACTIVITY OF SEALANT WITH PROCESS CHEMICAL (SORTED
PROCESS CHEMICAL!
T:\08 Chlorine Librarv\49 Chlorine Plant Qverview\09 Reactive
Chemical .REACTIVITY OF SEALANT.doc
Area Chlorine Plant
Equipment N/A
Type Procedure
I.
II. III. IV. V. VI.
VII. VIII.
IX.
X. IX. Steps
Objective To inform plant personnel ofthe correct type sealant
Frequency When using sealant
Responsibility Operations and Staff
Operating Limits ______
Consequences of deviation of Operating Limits :
Chemical reaction
Revisions
Date
______
Revised By N/A
Comments Procedure changed from T-13 to T-10. new sludge treatment tank
Date
Revised By N/A
Comments N/A
Date
Revised By N/A
Comments N/A
References N/A
Requirements
Notification
N/A
Documentation
N/A
Regulations
N/A
Preparation
Safety Equipment Block Safety Equipment
Hazards
N/A
Precautions
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10/03/96 1:05 PM
Dow Confidential
T:\08 Chlorine Libr*ry\49 Chlorine Plant Overview\09 Reactive Chemical\REACTTVITY OF SEALANT.doc
0A?993
DO A
CONFI
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TEAM a TEAM LEAK REPAIR INC
REACTIVITY OF SEALANT WITH PROCESS CHEMICAL (SORTED BY PROCESS CHEMICAL)
PROCESS CHEMICAL
SEAUNT
PUNT
REF. NO.
TEST REACTIVITY
ACETYLENE ACID GAS BLEND ACID GAS BLEND ACID GAS BLEND AIR AIR
AIR
AIR AIR AIR AIR
TEAM VALVEPACK B
LHC 2
86223C
STEAM & PROCESS SP-1011
LGTI
4791-42A
STEAM & PROCESS SP-60 STEAM & PROCESS SP-CM
LGTI LGTI
4791-42A 4791-42A
SP-1011 (30 MIN CURE 1ST RUN) CHLOR-ALKAU 2 4791-35A
SP-1011 (30 MIN CURE 2ND RUN)
CHLOR-ALKALI2 4791-35A
SP-1011 (30 MIN CURE 3RD
CHLOR-ALKAU 2 4791-35A
RUN)
SP-1011 (UNCURED SAMPLE)
CHLOR-ALKALI 2 4791-35A
SP-102 (CURED 300 C / 48 HR) POWER 2
4791-43B
TEAM SEAUNT 2W
POWER 2
92320
TEAM SEAUNT 2X
POWER 2
92320
DTA DSC DSC DSC DSC DSC
DSC
DSC DSC DSC DSC
NO EXO TO 210 C EXOAT 45 C NO EXO TO 300 C EXO AT 50 C EXO AT 160 C EXO AT 60 C
EXO AT 273 C
EXO AT 178 C EXO AT 420 C NO EXO TO 500 C NO EXO TO 500 C
AIR (INSTRUMENT) AIR (INSTRUMENT) AMMONIA(15%)-D-270 AMMONIA (15%) -D-270 AMMONIA (20% IN H20) AMMONIA (AQUEOUS) AMMONIUM HYDROXIDE ANHYDROUS AMMONIA ANHYDROUS AMMONIA ANHYDROUS AMMONIA ANHYDROUS AMMONIA ANHYDROUS AMMONIA ANHYDROUS AMMONIA ANHYDROUS AMMONIA AT-200 SCRUBBER EFFLUENT AT-200 SCRUBBER EFFLUENT BENZENE
BENZENE
BENZENE (CRUDE) BENZENE(CRUDE) BENZENE PUNT PYROLYSIS GAS BENZENE-TOLUENEXYLENE (T-1602) BENZENE-TOLUENEXYLENE (T-1602)
BENZENE-TOLUENEXYLENE (T-1602) BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETA-TRICHLOROETHANE BETZ BAUNCED POLYMER 68701 BETZ BALANCED POLYMER 68701 50% BETZ BP-P-1B + 60% COR-TROL 778P
STEAM & PROCESS SP-102 STEAM & PROCESS SP-60 STEAM & PROCESS SP-60 STEAM & PROCESS SP-102 TEAM SEAUNT #6 TEAM PTFE SEAUNT TEAM SEAUNT IX DOW CORNING 44 LUBRICANT FEL-PRO HI-TEMP NICKEL EASE STEAM & PROCESS SP-1015 TEAM PTFE SEAUNT TEAM SEAUNT #16 TEAM SEAUNT #6 TEAM VALVEPACK B STEAM & PROCESS SP-2000
STEAM & PROCESS SP-CM
ROYAL PURPLE BARRIER FLUID 22 ROYAL PURPLE BARRIER FLUID 22 STEAM & PROCESS SP-1011 STEAM & PROCESS SP-103 TEAM VALVEPACK B
FURMANITE FSC-5B
FURMANITE FSC-6B
TEAM SEAUNT #6 & F-14 FIBERS FURMANITE FSC-44D FURMANITE FSC-44D FURMANITE FSC-5B FURMANITE FSC-5B STEAM & PROCESS SP-289 STEAM & PROCESS SP-289 STEAM & PROCESS SP-3100 STEAM & PROCESS SP-3100 TEAM SEAUNT #2X TEAM SEAUNT #2X TEAM SEAUNT #6 TEAM SEAUNT #6 TEAM VALVEPACK A FURMANITE FSC-6B
FURMANITE FSC-6B
TEAM SEAUNT #6 & F-14 FIBERS
LGTI LGTI LGTI LGTI LGTI DOWANOLS DOWANOLS DOWANOLS DOWANOLS DOWANOLS DOWANOLS CAUSTIC CAUSTIC CAUSTIC CHLORINE
CHLORINE
LHC 3
LHC 3
BENZENE BENZENE BENZENE
LHC 3
LHC 3
LHC 3
VINYL 2 VINYL 2 VINYL 2 VINYL 2 VINYL 2 VINYL 2 VINYL 2 VINYL 2 VINYL 2 VINYL 2 VINYL 2 VINYL 2 VINYL 1 LHC 3
LHC 3
POWER 1
4791-42A 4791-42A 4791-5A 4791-5A 89336 RCL 1039 91239 93121 93121 RCL 1232 RCL 1038 RCL 1010 RCL 1007 RCL 1181 91296
91296
92169
92169
8.40E+33 8.40E+32 85053A
92199
92199
92199
93154 93154 93154 93154 93154 93154 93154 93154 93154 93154 93154 93154 8.40E+191 94092
94092
92175
DSC DSC DSC DSC DSC DTA DSC DSC DSC DTA DTA DTA DTA DTA DSC
DSC
DSC
HOM
DTA DTA DTA
DSC
DSC
DSC
DSC HOM DSC HOM DSC HOM DSC HOM DSC HOM DSC HOM DTA HOM
DSC
DSC
NO EXO TO 300 C NO EXO TO 300 C NO EXO TO 200 C NO EXO TO 200 C NO EXO TO 235 C NO EXO TO 300 C NO EXO TO 175 C NO EXO TO 130 C NO EXO TO 155 C NO EXO TO 250 C NO EXO TO 320 C NO EXO TO 200 C NO EXO TO 200 C NO EXO TO 300 C EXO AT 40 C
NO EXO TO 250 C
NO EXO TO 200 C
NO EXO AT 22 C
NO EXO TO 250 C NO EXO TO 250 C NO EXO TO 300 C
NO EXO TO 250 C
NO EXO TO 250 C
NO EXO TO 250 C
EXO AT 269 C NO EXO AT 22 C NO EXO TO 350 C NO EXO AT 22 C NO EXO TO 350 C NO EXO AT 22 C EXO AT 253 C NO EXO AT 22 C NO EXO TO 350 C NO EXO AT 22 C EXO AT 284 C NO EXO AT 22 C EXO AT 275 C SL. EXO AT 22 C
NO EXO TO 200 C
NO EXO TO 335 C
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J:\24 Persona] Folders\CL2 StaffUJ. Hiemenz\REACTIVE CHEMICALS\09 Reactive Chemical\REACnVITY OF SEALANT.doc
00 A 04^994 CONFIDENTIAL
CELL EFFLUENT (10% SODIUM HYDROXIDE) CHLORINE ' CHLORINE CHLORINE CHLORINE CHLORINE CHLORINE CHLORINE
CHLORINE CHLORINE CHLORINE CHLORINE CHLORINE
CHLORINE CHLORINE CHLORINE CHLORINE CHLORINE CHLORINE
CHLORINE CHLORINE CHLORINE
CHLORINE
CHLORINE
CHLORINE CHLORINE CHLORINE
CHLORINE CHLORINE CHLORINE CHLORINE CHLORINE (LIQUID) CHLORINE (LIQUID)
CHLORINE (LIQUID)
CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID)
CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (LIQUID) CHLORINE (TRACE WATER, HCBD) CHLORINE VENT GAS CHLORINE VENT GAS CHLORINE VENT GAS CHLORINE VENT GAS CHLOROFORM CHLOROFORM CHLOROFORM
CHLOROFORM
CHLOROFORM
CHLOROFORM
STEAM & PROCESS SP-60
CHLORINE
92180
ANCHOR VALVE PACKING 375 CHLORINE
8.40E+140
ANCHOR VALVE PACKING 4205 CHLORINE
8.40E+07
BELZONA CERAMIC-R METAL
CHLORINE
85172D
BELZONA E-METAL
CHLORINE
8.40E+186
BELZONA SUPER METAL
CHLORINE
85172A
CELL PUTTY
CHLOR-ALKALI2! ARC 91-647
CHRYSOTILE ASBESTOS FIBER CHLORINE
90022
GASKET
CONLEY TEFLON PASTE
CHLORINE
RCL 83-004
FELPOXY STEEL GARLOCK VALVE PACKING 6130 GARLOCK VALVE PACKING 7130 GORE PACKING PTFE W/ GRAPHITE
CHLORINE CHLORINE CHLORINE CHLORINE
8.40E+185 8.40E+09
8.40E+10 86206A
GORTEX PTFE
SOLVENTS/EDC 85136A
GORTEX SEALANT (TEFLON) JOHN CRANE VALVE PKG C-1050 JOHN CRANE VALVE PKG C-60 JOHN CRANE VALVE PKG C-7762
CHLORINE CHLORINE
CHLORINE CHLORINE
ARC 91-616 8.40E+143 8.40E+142 8.40E+0S
JOHN MANSVILLE VALVE PKG AF-5331
CHLORINE
8.40E+146
LOCT1TE #56747 PST LOCTITE #59231 (WITH TEFLON) LOCTITE 271 ADHESIVE/SEALANT
CHLOR-ALKALI 2 90282 CHLOR-ALKALI 2 90282 CHLOR-ALKAU 2 89071
PARKER HANNIFIN VALVE PKG CHLORINE 2287-BR
8.40E+144
F'ARKER HANNIFIN VALVE PKG CHLORINE . 2287-GL
8.40E+145
PTF E/KEVLAR SEAL-ITT #34
SILASTIC 732-RTV SILICONE RUBBER
CHLOR-ALKAU 2 89322
CHLORINE
90277
CHLOR-ALKALI 2 8.40E+102
STEAM & PROCESS SP-1011 TEAM SEALANT #11 TEAM SEALANT #6 + F-14 FIBER
CHLOR-ALKALI 2 89322
VINYL 1
RCL 83-093
VINYL 1
RCL 83-095
UNCURED EPDM RUBBER
CHLOR-ALKALI 2 ARC 91-648
CASTROL BRAYCOTE 1728 COPALT1TE HIGH
CHLORINE CHLORINE
ARC 91-585 ARC 94-851
TEMPERATURE SEALANT
DOW CORNING 3120 RTV SEALANT
CHLORINE
ARC 94-848
GARLOCK900 GASKET GOR-TEX GR GASKET GRAFOIL GHE KADEL SN N-75 SEALANT
CHLORINE CHLORINE CHLORINE CHLORINE
ARC 92-737 ARC 93-771 ARC 91-586 RCL-93-9809
KLINGER K-61 GASKET
CHLORINE
ARC 92-738
PERMATEX FORM-A-GASKET 2 CHLORINE (CURED)
ARC 94-855
SAFE SEAL - CHEMOLA TEFLON METHANES
94060
STEAM & PROCESS SP-2026 STEAM & PROCESS SP-292 STEAM & PROCESS SP-300D
CHLORINE
ARC 92-692
CHLOR-ALKALI 2 RCL-93-9831
CHLORINE
ARC 92-711
STEAM & PROCESS SP-375 STEAM & PROCESS SP-CM STEAM & PROCESS SP-TFLO TEAM VALVEPACK OX (TEFLON) TORLON SN T210 SEALANT
CHLORINE CHLORINE CHLORINE CHLOR-ALKAU 2 CHLORINE
RCL-93-9830 ARC 92-708 ARC 92-715 RCL-92-9764 RCL-93-9799
USADURIAN SBR RUBBER
CHLORINE
ARC 94-853
CPE-TAC
CHLORINE
8.40E+213
DERAKANE 470 (CURED 6/14/88) CHLORINE
IPI EPOXY (CURED)
CHLORINE
RED PRIMER (CURED)
CHLORINE
WHITE DURDICK 800 G
CHLORINE
SAFE SEAL - CHEMOLA TEFLON METHANES
SAFE SEAL - CHEMOLA TEFLON METHANES
SAFE SEAL GRAFPAK (UCAR
METHANES
CARBON CO GRAFOIL)
SAFE SEAL GRAFPAK (UCAR
METHANES
CARBON CO GRAFOIL)
SAFE SEAL MULTIPAK (JOHN METHANES
CRANE 6KB)
SAFE SEAL MULTIPAK (JOHN METHANES
4792-21A 4792-21A 4792-20A 4792-20A 94060 94060 94060
94060
94060
94060
DSC
DSC DTA DTA DTA DTA ARC DSC
DTA DTA DTA DTA DTA
DTA ARC DSC DSC DTA DTA
DSC ARC DSC
DSC
DSC
DSC DSC DTA
DSC DTA DTA ARC ARC ARC
ARC
ARC ARC ARC ARC ARC ARC
ARC ARC ARC ARC ARC ARC ARC ARC ARC ARC DTA
DSC DSC DSC DSC HOM DSC HOM
DSC
HOM
DSC
SL EXO AT 194 C
0(0 < 30 C EXO AT 136 C EXO AT 35 C EXO <25 C EXO AT 30 C EXO AT 86 C NO EXO TO 250 C
EXO AT 100 C EXO < 25 C EXO AT-83 C EXO AT-76 C NO EXO TO 200 C
NO EXO TO 250 C NO EXO TO 200 C EXO AT 36 C EXO AT 46 C EXO AT 102 C EXO <30 C
EXO AT 115 C EXO AT 33 C EXO AT *5 C
EXO < 30 C
EXO AT 38 C
EXO AT 48 C EXO AT 90 C EXO AT 160 C
EXO AT 40 C EXO AT 90 C EXO ATI 30 C EXO AT 98 C EXO AT 167 C EXO AT 113 C
EXO AT 36 C
EXO AT 26 C NO EXO TO 175 C EXO AT 104 C EXO AT 182 C EXO AT 27 C EXO AT 22 C
EXO AT 8 C EXO AT 20 C NO EXO TO 250 C EXO AT 20 C NO EXO TO 250 C EXO AT 20 C NO EXO TO 175 C NO EXO TO 250 C EXO AT 109 C EXO AT 59 C EXO AT 135 C
EXO AT 30 C NO EXO TO 250 C EXO AT 40 C EXO AT 35 C NO EXO AT 22 C EXO AT 310 C NO EXO AT 22 C
EXO AT 200 C
NO EXO AT 22 C
EXO AT 224 C
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DO A 04?9<?5
confidential.