Document XYNyMypz5885jneqpvoe6KMR
J-M Manufacturing Co., Inc
Internal Correspondence
To : From : Copies : Subject :
E.E. Wang - Skn
Date: June 13, 1986
C.G. Stelchek
T, Lohman, B. Ciaccio, Safety file
Plant Hazard Communications Program your letter of May 30, 1986
I PLAINTIFF'S EXHIBIT 1 iZTJMMC-- 1 1 5 .
As you requested in the subject letter we are mailing you Denison's program which consists of two binders, one an instructor's handbook and the other a participant's handbook. Please advise if you need additional information.
D 001744 JUN. t 6 1988
HAZARDOUS MATERIALS COMMUNICATION PROGRAM
PARTICIPANT'S HANDBOOK Denison Plant May 7/ 1986
JUN. 1 6 1988
D 001745
HAZARDOUS MATERIALS COMMUNICATION PROGRAM
COURSE OUTLINE:
A. Review COURSE OBJECTIVES (page 3 in participants guide book)
B. Discuss FLAMMABLE LIQUIDS AND CHEMICAL TOXICITY as presented in the guide books, including the notes on Hygiene, Safety and First-Aid (pages 4-7)
C. Review DEFINITIONS provided (pages 8 and 9)
D. Review READING AND UNDERSTANDING MATERIAL SAFETY DATA SHEETS (pages 10 and 11)
E. Review an actual M.S.D.S. pertinent to the department (e.g. PVC Resin for PVC operations. Asbestos for those involved with this material). A copy of this M.S.D.S. is to be included in participants guide book as pages 11 and 12. Emphasize hazards involved and understanding the M.S.D.S. format.
.
F. Present M.S.D.S. information on all other materials used in the shop:
1. Items which may present particular hazards, but which cannot be grouped with other materials (e.g. hot melt glue - can cause burns).
a. Discuss safety procedures employees are to follow when handling these materials.
, 2.
Liquids (e.g. denatured alcohol, methylene chloride, acetone, stabilizer), noting particular hazards of each, such as flammable, toxic, etc.
a. Stress need for good ventilation when using these materials.
b. Safety goggles (or face shield) and rubber gloves are to be used when handling these materials.
c. Discuss methods for safe handling of these liquid materials and emergency procedures.
2 min 10 min
3 min 5 min 5 min
10 min
V1 D 001746
(Hazardous mtrls, Course Outline - continued):
\ 3. Discuss dust hazards (e.g.. sodium stearate, silica, lime), noting special hazards (e.g. CPE 3615 Impact Modifier: 36% of weight is chlorine which will emit dangerous fumes if burned).
a. In general, respiratory protection is required if exposed to excessive amounts of dust or exposure is 15 minutes or more (cumulative). Respiratory protection is recommended at all times when handling any dust producing materials.
b. Safe handling and good housekeeping practices are required since high concentrations of dust can be explosive; dust covered floors and stairs are slippery.
G. Items such as XL-165 petroleum wax, lubricants and silicate of
soda are relatively safe to handle but can be extremely slick
on floors and stairs.
.
H. Hydraulic fluids, offset ink, ink thinner and heat transfer fluid can be irritants to shin and mucous membrane.
I. Remind participants that, while emphasis during this presen- 4 min tation has been on hazardous materials, they must stay aware
of the total shop environment.
V (Ask for comments on other hazards which could include:
1. Electricity 2. Natural gas 3. Propane 4. Hot equipment . 5. Lift equipment, hoists, etc. 6. Moving machinery 7. Heavy equipment and materials 8. Truck traffic
etc.)
Encourage the participants to periodically review the M.S.D.S. file and to bring any safety hazards to your attention.
Thanks for your participation.
c
D 001747 2
HAZARDOUS MATERIALS COMMUNICATION PROGRAM
COURSE OBJECTIVES:
The Occupational Safety and Health Administration's Hazard Communication Standard requires chemical manufacturers, dis tributors, and users to provide training for their employees In compliance with this standard and with J-M's policy of maintaining a safe work place, this course has been prepared for presentation to all employees. The training objectives are that each employee will know:
a. how to read and understand Material Safety Data Sheets (M.S.D.S.)
b. the chemical identity and the common name c. where and how the material is used d. how to identify the material by odor and appearance
. (not mixed with other substances) e. what the hazards are:
- physical hazards - acute health hazards, including symptoms of overexposure - chronic health hazards f. what protective equipment to use in minimizing exposure g. the proper way to wear personal protective equipment . h. immediate first-aid procedures for a worker suffering from over-exposure i. the location of the Departmental M.S.D.S. file j. proper procedures for handling spills k. plant evacuation procedures
3 D 001748
FLAMMABLE LIQUIDS
Some of the flammable liquids used in our operations include
acetone, gasoline, MEK (methyl ethyl ketone), ethyl acetate,
and denatured alcohols.
Flammable chemicals must be handled with great respect. Read
the label on the container carefully and completely. These
chemicals catch fire easily at normal temperatures and the vapors
can explode violently from a spark, flame or heat source. The
vapors of nearly all flammable chemicals are heavier than air.
This means that the vapors can "crawl" along the ground to dis
tant flames and sparks, then flash back to the source. An ex
ample which you hear about occasionally, is the person using
a flammable product in the home. The fumes travel to a pilot
light, igniting, causing fire and/or explosion. Use flammable
materials only in well ventilated areas, away from sources of ig
nition.
Ground and electrically interconnect, by bonding, all drums,
containers and tanks anytime a flammable chemical is being trans
ferred. This prevents the build-up of static electricity and the
possibility of a spark starting a fire. Remember to hook up
static lines when the job requires them. They could save a life.
Keep all containers of flammable liquids closed when not in use.
Reclose containers tightly and completely after using.
"Empty" containers are dangerous! They may contain harmful chem
ical vapors or liquid residues which can also be explosive. Keep
away from all ignition sources such as welding torches. The empty
containers should be promptly disposed of in accordance with company
policy.
'
'.
If a fire starts, act quickly! Sound the alarm! Rescue injured
persons. If the fire is small and contained, try to put it out if
you can do so safely. Your quick action may save lives and prevent
the fire from spreading. But remember, your personal safety is
most important. Do not attempt to put out large fires without
assistance. Always minimize your exposure to fumes and vapors from
a fire. Many chemicals give off poisonous gases when they burn.
CAUTION: Using the wrong kind of fire extinguisher could be dan
gerous. For example, using water on some solvents can actually
spread the fire. Carbon Dioxide extinguishers are suitable for
most chemicals used in the plant and are available except in the
fiber warehouse.
D 001749 4
CHEMICAL TOXICITY
If administered in a suitable manner and in sufficient dosage,
practically any substance can be harmful to a person. It is
recognized that there are degrees of harmfulness and degrees of
safeness for all materials.
Although the toxic effects of many chemical agents used in in
dustry are well known, there are many others commonly used which
are not as well defined. The toxicity of a material is not a phy
sical constant - such as boiling point, melting point, vapor pres
sure, or temperature - so only a general statement can be made
'
concerning the harmful nature of a given chemical agent.
There are only three ways in which chemical agents can harm in
dividuals:
1. By contact with or absorption through the respiratory tract.
2. By contact with or absorption through the skin.
3. By contact with or absorption through the digestive tract.
In general, poisonings usually result from:
1. Inhalation of toxic agents, which is dependent upon many
factors, one of which is the volume of material inhaled.
2. Absorption through the skin can occur upon exposure to
some toxic agents.
3. Ingestion of the toxic agent can occur to some extent,
however in the industrial application, there would gener
ally be considerable inhalation of the material in such a
case.
An important difference between inhalation as a route of entry
and ingestion or skin absorption is that through inhalation the
material enters the arterial blood directly, but with ingestion
or skin absorption the material enters the venous blood and is
carried through the right portion of the heart where it is then
diluted by the entire venous system and passed through the lungs
and then pumped by the left portion of the heart to the brain
and other organs.
'
What's the best way to know the dangers of materials being used?
Read the label!
Read the label!
Read the label!
Not only with materials used at work, but. at home also. On
each container you will find brief instructions on hazards in
volved in using the material. Most will.be marked, in part, as:*
D Danger - Serious, severe, hazardous'
or W Warning - Moderate, intermediate, harmful
or C Caution -. Minor, mild, irritating
The degree of severity can be expressed only in relative terms.
Danger is the strongest of the three words and is used for those
products presenting the most serious hazards.
Caution is for those compounds presenting the least serious hazards.
Warning is intermediate.
Your supervisor has more detailed information available to him on
safe handling of the specific materials used in your department.
One type of material used in most areas of the plant is solvents.
The term "solvent" is meant to include all those organic liquids
commonly used to dissolve other organic materials. It includes
materials such as naptha, gasoline, turpentine, alcohol and tri-
chlorethylene. They are used in the home as dry cleaning agents,
paint thinners and spot removers; in the plant as cleaning agents,
thinners, degreasers and chemical reagents.
D 001750
Some solvents we use are called "safety" solvents. It is unfor
tunate that the term "safety" solvent has been applied to some
cold cleaners, because the term is not precise. For example, a
"safety" solvent may be considered by some users as nondamaging
to the surfaces being cleaned. Other users may consider it to
be free from fire or toxicity hazards. Depending on the condi tions of use, neither of these assumptions may be correct.
Some materials are very effective grease and oil solvents with
no flash or fire point, but are relatively expensive and may be
toxic under certain conditions. Other materials are effective
solvents, low in toxicity, but have flash and fire points.
To combine the best qualities of each solvent, manufacturers
mix them in an attempt to produce a cold cleaner with a safer
flash point and lesser toxicity than the individual solvents.
Keep in mind that certain elements can evaporate from the sol
ution, when left exposed to air, creating a solvent which be
comes more flammable or more toxic.
There are some general, common sense, rules for working with any
type of chemical we use here or that you are likely to encounter
at home. As a general practice, keep chemicals away from heat, sparks,
open flame.
Avoid spilling. If spilled, clean up and dispose of the material
at once. Avoid contacting skin, eyes, clothing.
Use adequate ventilation. Avoid breathing dust, fumes, mists, gases, vapors.
Use personal protective equipment, as required, such as gloves
and eye protection.
.
Use barrier cream. Never transfer material to an unmarked container. The next person
to come along won't necessarily know what they are exposed to. An
example of this in the home is the tragic poisoning of children who drink chemicals being stored in cold drink containers.
Do hot mix chemicals unless you are sure they are compatible. Mix
ing liquid bleach and some cleansing powders will create chlorine
gas - a poison. Mixing some drain cleaners can create an explosive
force.
Don't use more than is absolutely necessary for the job. The more
you use, the more exposure.
Be careful and don't create excess waste. Waste must be disposed
of which creates environmental problems.
.
HYGIENE
Wash exposed skin thoroughly before eating, drinking, using tobacco, using the rest room. Use soap and lots of water to remove material from exposed skin, showering is recommended before leaving work. Work clothing should be washed separately from other laundry.
SAFETY
D 001751
Personal protective equipment, as required. In nearly every instance it is best to wear eye protection when working with chemi cals. Good work clothes are additional protection. Knowledge of location and operation of emergency eyewash and emergency showers are required. Eyes should be washed at least 15 minutes in the event
you get chemicals into your eyes. Remove contaminated clothing and
(safety - cont'd)
use the emergency shower if chemicals are on the body. Do not wear contaminated clothing until laundered (separate from other laundry). Seek medical attention if any discomfort.
FIRST AID
Learn first aid procedures. You could save someone's life. Your fellow workers should learn them also - they may be able to save your life. The local Red Cross Chapter offers first-aid courses as well as courses in CPR at a nominal cost to cover books and equipment. Minimize your contact with all chemicals. Some chemicals can cause rashes, others can actually burn your skin. Some can pene trate through your skin and make you feel sick, and even damage internal organs. When you are handling chemicals and you experience:
(Chart or blackboard)
Eye discomfort
Breathing difficulty
Dizziness
_ Headache
Nausea
Vomiting, or
Skin irritation
. STOP WHAT YOU ARE DOING!
You may be overexposed. Leave the area. Obtain first-aid if
necessary and tell your supervisor what happened.
" FIRST-AID PROCEDURES
.
BURNS - Keep the victim calm and cover him with a blanket to keep
him warm but not hot. Then get medical attention as soon as possible.
EYE CONTACT - Immediately flush your eyes for 15 minutes with large
. amounts of water. Use the nearest eyewash (preferably), sink, . water fountain or any source of clean water. Do this before
seeking medical attention since the quicker this is done, the more effective it is. Make sure you spread the eyelids open
to increase the flushing effect. Have someone help get med ical attention as soon as possible. SKIN CONTACT - Wash with soap and lots of water. Use waterless hand cleaner if needed. If the chemical is still on your skin
after washing, use a small amount of solvent (acetone is the best), then thoroughly wash the solvent from your skin. Don't use solvents for usual clean-up. They remove the natural oil from your skin and can cause dryness and rashes. So, only
use a solvent to clean your skin if soap and waterless hand cleaner don't do the job. After washing, if you feel sick or your skin is discolored or itches, get medical attention. SWALLOWING - You must definitely know, either by first-aid training
and/or chemical information, or specific medical advice, whether to induce vomiting or not. This could cause more damage than swallowing the chemical.
CAUTION: Never give anything by mouth to an unconscious
person.
INHALATION - Remove the victim to fresh air and call for medical help.
D 001752
Remove any objects that are in his mouth and keep him warm. Most foremen have first-aid, and some CPR, training.
-7-
DEFINITIONS (Page 1)
Hazardous materials - those which can possibly cause injury or harm when a specific quantity is used under specific conditions.
Toxicity - the capacity of a material to produce injury or harm.
Organic - Term used to designate chemicals that contain carbon.
Reagent - a substance used in a chemical reaction to produce another substance or to detect its composition.
Dust - fine dry pulverized particles of matter with sizes varying from submicroscopic to visible.
Fumes - a solid condensation particle of extremely small size, such as smoke, vapor or gas (used especially when fumes are irritating or offensive).
Vapor - suspended matter (such as smoke or fog) floating in the air (in the gaseous state), not a liquid or solid.
Liquid - flowing freely like water, neither gaseous or solid.
Solid - does not flow (noticeably) under moderate stress, neither gaseous or liquid.
Oxidizing material - contact with other combustible material may cause fire.
Solvents - a (usually) liquid substance capable of dissolving or dispersing one or more other substances, most commonly water but often an organic chemical compound.
Flash point - the lowest temperature at which a liquid gives off a vapor which can be ignited when exposed to a source of ignition.
Flammable liquids (classified as Class I liquids) - any liquid having a flash point below 100 Degrees Fahrenheit. These are divided into three classes: Class IA - liquids having flashpoints below 73 Deg. F. and having a boiling point below 100 Deg. F. Class IB - liquids having flashpoints below 73 Deg. F. and having a boiling point above 100 Deg. F. Class IC - liquids having flashpoints above 73 Deg. F. and below 100 Deg. F.
Combustible liquids - liquids having flash points at or above
100 Deg. F., further divided into two classes:
.
Class II - flash points between 100 and 140 Deg. F.
Class III - flash points above 140 Deg. F-.
(Class IIIA 140 to 200 Deg., Class IIIB over 200 Deg. F.)
Safety can - portable container which has a tight closure with screwed or spring cover, and is fitted with a spout or so de signed that the contents can be poured without spilling.
8 D 001753
(Definitions - page 2)
Grounding and Bonding: buildup of static electricity charges on containers and people is a dangerous source of sparks that can touch off flash fires wherever flammable liquids are being used
or transferred. Grounding - a readily-accessible connection to an earth ground which is conductive. Bonding - a wire providing an electrical path from a grounded container to the container being filled.
Hygiene - conditions or practices (as of cleanliness) contributing to good health.
Barrier cream - a cream which aids in protecting the skin by help ing to retain the natural protective oils in the skin.
Respirator - a device worn for protection of the respiratory tract.
Carcinogen - a substance or agent capable of producing or inciting cancer.
Pneumoconiosis - a disease of the lungs caused by the habitual inhalation of irritant particles.
Dermatitis - inflammation of the skin.
Primary irritation dermatitis caused by mechanical agents such as
friction, by physical agents such as heat or cold, and from chem
ical agents such as acids, alkalis, irritant gases and vapors.
Not related to allergy.
Sensitization dermatitis is the result of an allergic reaction to
a given substance.
.
Micron (micrometer) - a unit of length equal to one-millionth of a meter (one meter = 39.37 inches).
O.S.H.A. - Occupational Safety and Health Administration. Responsi ble for creating and enforcing standards governing industry prac tices concerning safety and health.
E.P.A. - Environmental Protection Agency. A Federal Department re
sponsible for creating and enforcing standards governing practices
concerning the environment.
'
D.O.T. - Department of Transportation. Responsible for creating standards governing transportation practices. Part of this respon sibility concerns transportation of hazardous and toxic materials.
T.A.C.B. - Texas Air Control Board, a state agency which governs controls on emissions and hazardous waste disposal.
T.W.R.B. - Texas Water Resources Board, a state agericy which governs use of water resources.
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D 001754
READING AND UNDERSTANDING MATERIAL SAFETY DATA SHEETS
Section I
Trade Name & Synonyms The name under which the product is marketed and the common commercial name of the product.
Product Identification The chemical or generic name of single elements and compounds or for compounded products and mixtures, the general type of product, e.g., calcium complex grease, motor oil, polymer, sulfonate, surfactant, etc.
CAS Number The Chemical Abstracts Registry number, if applicable.
EPA Number The code number assigned by the Environmental Protection Agency, if applicable.
Formula The chemical formula for single elements or compounds.
DOT Classification The appropriate classification as determined by the regulations of the Office of Hazardous Materials, Department of Transportation.
Section II
Important Components
The major component as well as any minor one(s) having potential for harm which are considered when evaluating the product.
Permissible Exposure Concentration
'
Indicates Threshold Limit Value (TLV), any limit
established by a governmental regulatory agency, or.an estimate if none have been established.
Section III Health Effects of Exposure
Possible health hazards as derived from human * observation, animal studies or from the results of studies with similar products.
Medial Lethal Dose or Concentration (LD50, LC50) That dose or concentration of the material which will produce death in 50 per cent of test animals. For inhalation, the exposure time is indicated.
irritation index An empirical score for eye and skin irritation when tested by the methods described in Section 1500.40 of the Federal Hazardous Substances Act.
Sensitizer A substance which will cause on or in normal living tissue, a hypersensitivity which becomes evident on reappiication of, or exposure to, the some substance.
Section IV Emergency and First Aid Procedures
Gives first aid and emergency procedures in case of. eye and/or skin contact, ingestion and inhalation.
Section V Personal Protection Information
Eye, Skin, Respiratory The type of protective equipment that is necessary for the safe handling and use of the product.
Ventilation Refers to the type recommended: i.e., local exhaust, mechanical, etc.
Section VI Fire Hazard Information
Flash Point (State Method Used) The temperature in degrees F at which a liquid will give off enough flammable vapor to ignite in the presence of a source of ignition.
Autoignition Temperature The minimum temperature required for a substance to initiate self combustion in the absence of a spark or flame.
Flammable Limits The range of gas or vapor concentration (per cent by volume in air) which will burn or explode if an ignition source is present. Lower means the lower flammable limit and upper the upper flammable limit given in per cent.
Extinguishing Media Specifies the fire fighting agent(s) that should be used to extinguish fires.
Unusual Fire and Explosion Hazards Refers to special procedures required if unusual fire hazards are involved.
Section VII Physical Properties and Reactivity Data
Vapor Pressure The pressure of saturated vapor above the liquid expressed in mm Hg at 20C.
Viscosity A measure of the resistive flow of liquid due to gravity or for viscous liquids a measure of the resistance to turning or twisting. State method, units and temperature.
Vapor Density The relative density or weight of a vapor or gas (with no air present) compared with an equal volume of air at ambient temperature.
D 001755
pH The degree of acidity or basicity of the material in ^ specific concentration
Specific Gravity
The ratio of the weight of a volume of the material to the weight of an equal volume of water .
Solubility in Water '
.
The solubility of a material by weight in water at
room temperature. The terms negligible, less than 0.1 percent; slight,0.1 to 1 percent; moderate 1 to 10 per cent; appreciable, 10 per cent or greater.
Appearance and Odor
The general characterization of the material, i.e., powder, colorless liquid, aromatic odor, etc.
Hazardous Polymerization
Refers to that reaction which takes place at a rate which releases large amounts of energy. Indicates .whether or not it may occur and under what storage
conditions.
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Materials to Avoid
.
Indicates those material or conditions causing the product to react violently, releasing large amounts of energy. '
Section VIII Storage and Environmental
Protection
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Procedure in Case of Breakage or Leakage :
i Indicates precautions necessary in such events. Includes clean-up procedures and hazards that may be created, i.,e., fire, explosions, etc.
Biodegradeability/Bioaccumulation
Indicates whether or not the product will biodegrade or bioaccumulate.
The information contained herein is based on data
available to us and is believed to be correct. Since
this information may have been obtained in part
from independent laboratories or other sources not
under our direct supervision, no representation is
made that the information is accurate, reliable,
complete or representative and Buyer may rely
thereon only at Buyer's risk. We have made no
* effort to censor nor to conceal deleterious aspects
of this product. Further, since we cannot anticipate
or control the many different conditions under
which this information or our products may be.
used, we make no guarantee that the health and
safety precautions we have suggested will be
adequate for all individuals and/or situations '
involving its handling and use. Likewise we make
no guarantee or warranty of any kind that the use or
disposal of this product is in compliance with all
federal, state or. local laws. It is the obligation of
each user of the product mentioned herein to
determine and comply with the requirements of all
applicable statutes.
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