CELLULOSE
HAZARDTEXT ®
Information to help in the initial response for evaluating chemical incidents
-IDENTIFICATION
SYNONYMS
IDENTIFIERS
Editor's Note: This material is not listed in the Emergency Response Guidebook. Based on the material's physical and chemical properties, toxicity, or chemical group, a guide has been assigned. For additional technical information, contact one of the emergency response telephone numbers listed under Public Safety Measures.
SYNONYM REFERENCE
- (Lewis, 1996; RTECS , 1999)
USES/FORMS/SOURCES
Cellulose has many uses including the myriad of products made from paper and wood pulp as well as cotton. Some of these uses include production of packaging materials, clothing, non-woven fabrics, insulation and soundproofing, sausage casings, and medical equipment. Cellulose is used as a source for production of methanol and ethanol. This compound is also chemically modified to make many other useful products and compounds such as rayon. These compounds are the basis for production of cellophane, plastics, fibers, explosives, lacquers, coatings, and esters. Microcrystalline cellulose may be used as a binder-disintegrant in forming tablets, and can be used as a medium for thin-layer or column chromatography. The compound can be added to foods as stabilizers and thickeners, and as an additive to reduce caloric content of food to which it is added (Budavari, 1996; Lewis, 1997).
Cellulose is a polymer consisting of linked glucose units (cellobiose) in unbranched linear chains. It may exist as a fibrous or white crystalline solid. Cellulose is the main constituent of plant fiber and is therefore the world's most abundant organic material. Cotton fiber is about the purest form of cellulose, containing about 90% cellulose, while wood contains from 50-70% cellulose (ACGIH, 1991; Budavari, 1996; Lewis, 1997). Natural cellulose refers to the microcrystalline form of cellulose, while technical cellulose consists only of the plant cell wall consisting of glucose (similar to cotton cellulose). Cellulose also occurs in three isomers, alpha, beta, and gamma, that vary in the degree of polymerization. The alpha form has the highest polymerization and is the main constituent of paper pulp (ACGIH, 1991; Budavari, 1996; Lewis, 1997).
-CLINICAL EFFECTS
GENERAL CLINICAL EFFECTS
- Cellulose has little or no adverse effect on the lungs and there are no reports of organic disease or toxic effects. It is inert and classified as a nuisance dust. Health effects from cotton fibers, wood, flax, jute, and hemp are due to other substances. Cotton fibers injected into the blood stream have *caused a pulmonary embolism in one case; however, this is not a likely source of occupational exposure.
- Fibrosing granulomatous alveobronchiolitis and increases in IgA in bronchoalveolar lavage fluid were produced in rats after a single intratracheal dose of 15 mg cellulose. This effect has not been reported in exposed humans.
- Chronic inhalation of cellulose-containing fibers can cause byssinosis (cotton dust fever). Allergies can develop to cellulose-containing fibers, but these are probably due to plant proteins or other components. Workers with positive skin tests to cotton dust extract had greater decreases in FEV(1) over the first year of exposure than did workers who were not allergic to cotton dust extract.
- POTENTIAL HEALTH HAZARDS - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004)
Fire may produce irritating and/or toxic gases. Contact may cause burns to skin and eyes. Contact with molten substance may cause severe burns to skin and eyes. Runoff from fire control may cause pollution.
ACUTE CLINICAL EFFECTS
- There are no known cases of adverse effects or disease in humans from exposure to cellulose. Health effects from cotton fibers, wood, flax, jute, and hemp are due to other substances (Hathaway et al, 1991). Purified cellulose is essentially inert (Clayton & Clayton, 1994; ACGIH, 1991).
- Pure cellulose dust is neither irritating nor toxic (ACGIH, 1991). Cotton fibers injected into the bloodstream have caused a pulmonary embolism in one case (ACGIH, 1991). This is not a likely source of occupational or environmental exposure, however.
- Fibrosing granulomatous alveobronchiolitis and increases in IgA in bronchoalveolar lavage fluid were produced in rats after a single intratracheal dose of 15 mg cellulose (Tatrai et al, 1996).
CHRONIC CLINICAL EFFECTS
- Chronic inhalation of cellulose-containing fibers can cause byssinosis (cotton dust fever). Induction of pulmonary fibrosis is probably not due to cellulose itself. Work-related respiratory symptoms among 410 grain handlers were more strongly related to the concentration of endotoxin in the dust than to the total dust concentration (Schwartz et al, 1995). Inhalation of endotoxin-containing cotton dust produced increases in mucosubstances in the respiratory tract in rats (Gordon & Harkema, 1995).
- Allergies can develop to cellulose-containing fibers, but these are probably due to plant proteins or other components. Workers with positive skin tests to cotton dust extract showed greater decreases in FEV(1) over the first year of exposure than did workers who were not allergic to cotton dust extract (Li et al, 1995).
- In chronic feeding studies with purified cellulose in mice and rats, no significant adverse effects were seen (Anderson et al, 1992). Many studies have used cellulose to replace calories in calorie-restricted diets in experimental animals, where increased lifespans and delayed appearance of spontaneous tumors were seen.
-MEDICAL TREATMENT
LIFE SUPPORT
- Support respiratory and cardiovascular function.
SUMMARY
- FIRST AID - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004)
Move victim to fresh air. Call 911 or emergency medical service. Give artificial respiration if victim is not breathing. Administer oxygen if breathing is difficult. Remove and isolate contaminated clothing and shoes. In case of contact with substance, immediately flush skin or eyes with running water for at least 20 minutes. Removal of solidified molten material from skin requires medical assistance. Keep victim warm and quiet. Ensure that medical personnel are aware of the material(s) involved and take precautions to protect themselves.
FIRST AID GENERAL INHALATION EXPOSURE INHALATION: Move patient to fresh air. Monitor for respiratory distress. If cough or difficulty breathing develops, evaluate for respiratory tract irritation, bronchitis, or pneumonitis. Administer oxygen and assist ventilation as required. Treat bronchospasm with an inhaled beta2-adrenergic agonist. Consider systemic corticosteroids in patients with significant bronchospasm.
DERMAL EXPOSURE EYE EXPOSURE DECONTAMINATION: Remove contact lenses and irrigate exposed eyes with copious amounts of room temperature 0.9% saline or water for at least 15 minutes. If irritation, pain, swelling, lacrimation, or photophobia persist after 15 minutes of irrigation, the patient should be seen in a healthcare facility.
-RANGE OF TOXICITY
MINIMUM LETHAL EXPOSURE
- The minimum lethal human dose to this agent has not been delineated.
MAXIMUM TOLERATED EXPOSURE
- Cellulose is considered non-toxic and inert, although it may be classified as a nuisance dust. Studies indicate that humans may tolerate up to 30 g/day as a bulk laxative (ACGIH, 1991; Hathaway et al, 1996). In animal diets, doses of up to 5000 mg/kg of body weight per day (or 10 percent) have been tolerated (Hathaway et al, 1996).
- Carcinogenicity Ratings for CAS9004-34-6 :
ACGIH (American Conference of Governmental Industrial Hygienists, 2010): Not Listed ; Listed as: Cellulose EPA (U.S. Environmental Protection Agency, 2011): Not Listed IARC (International Agency for Research on Cancer (IARC), 2016; International Agency for Research on Cancer, 2015; IARC Working Group on the Evaluation of Carcinogenic Risks to Humans, 2010; IARC Working Group on the Evaluation of Carcinogenic Risks to Humans, 2010a; IARC Working Group on the Evaluation of Carcinogenic Risks to Humans, 2008; IARC Working Group on the Evaluation of Carcinogenic Risks to Humans, 2007; IARC Working Group on the Evaluation of Carcinogenic Risks to Humans, 2006; IARC, 2004): Not Listed NIOSH (National Institute for Occupational Safety and Health, 2007): Not Listed ; Listed as: Cellulose MAK (DFG, 2002): Not Listed NTP (U.S. Department of Health and Human Services, Public Health Service, National Toxicology Project ): Not Listed
- Carcinogenicity Ratings for CAS65996-61-4 :
ACGIH (American Conference of Governmental Industrial Hygienists, 2010): Not Listed EPA (U.S. Environmental Protection Agency, 2011): Not Listed IARC (International Agency for Research on Cancer (IARC), 2016; International Agency for Research on Cancer, 2015; IARC Working Group on the Evaluation of Carcinogenic Risks to Humans, 2010; IARC Working Group on the Evaluation of Carcinogenic Risks to Humans, 2010a; IARC Working Group on the Evaluation of Carcinogenic Risks to Humans, 2008; IARC Working Group on the Evaluation of Carcinogenic Risks to Humans, 2007; IARC Working Group on the Evaluation of Carcinogenic Risks to Humans, 2006; IARC, 2004): Not Listed NIOSH (National Institute for Occupational Safety and Health, 2007): Not Listed MAK (DFG, 2002): Not Listed NTP (U.S. Department of Health and Human Services, Public Health Service, National Toxicology Project ): Not Listed
TOXICITY AND RISK ASSESSMENT VALUES
- EPA Risk Assessment Values for CAS9004-34-6 (U.S. Environmental Protection Agency, 2011):
- EPA Risk Assessment Values for CAS65996-61-4 (U.S. Environmental Protection Agency, 2011):
-STANDARDS AND LABELS
WORKPLACE STANDARDS
- ACGIH TLV Values for CAS9004-34-6 (American Conference of Governmental Industrial Hygienists, 2010):
Editor's Note: The listed values are recommendations or guidelines developed by ACGIH(R) to assist in the control of health hazards. They should only be used, interpreted and applied by individuals trained in industrial hygiene. Before applying these values, it is imperative to read the introduction to each section in the current TLVs(R) and BEI(R) Book and become familiar with the constraints and limitations to their use. Always consult the Documentation of the TLVs(R) and BEIs(R) before applying these recommendations and guidelines.
- ACGIH TLV Values for CAS65996-61-4 (American Conference of Governmental Industrial Hygienists, 2010):
- AIHA WEEL Values for CAS9004-34-6 (AIHA, 2006):
- AIHA WEEL Values for CAS65996-61-4 (AIHA, 2006):
- NIOSH REL and IDLH Values for CAS9004-34-6 (National Institute for Occupational Safety and Health, 2007):
Listed as: Cellulose REL: TWA: 10 mg/m(3) (total) 5 mg/m(3) (resp) STEL: Ceiling: Carcinogen Listing: (Not Listed) Not Listed Skin Designation: Not Listed Note(s):
IDLH: Not Listed
- NIOSH REL and IDLH Values for CAS65996-61-4 (National Institute for Occupational Safety and Health, 2007):
- OSHA PEL Values for CAS9004-34-6 (U.S. Occupational Safety, and Health Administration (OSHA), 2010):
Listed as: Cellulose (Total dust) Table Z-1 for Cellulose (Total dust): 8-hour TWA: ppm: mg/m3: 15 Ceiling Value: Skin Designation: No Notation(s): Not Listed
Listed as: Cellulose (Respirable fraction) Table Z-1 for Cellulose (Respirable fraction): 8-hour TWA: ppm: mg/m3: 5 Ceiling Value: Skin Designation: No Notation(s): Not Listed
- OSHA PEL Values for CAS65996-61-4 (U.S. Occupational Safety, and Health Administration (OSHA), 2010):
- OSHA List of Highly Hazardous Chemicals, Toxics, and Reactives for CAS9004-34-6 (U.S. Occupational Safety and Health Administration, 2010):
- OSHA List of Highly Hazardous Chemicals, Toxics, and Reactives for CAS65996-61-4 (U.S. Occupational Safety and Health Administration, 2010):
ENVIRONMENTAL STANDARDS
- EPA CERCLA, Hazardous Substances and Reportable Quantities for CAS9004-34-6 (U.S. Environmental Protection Agency, 2010):
- EPA CERCLA, Hazardous Substances and Reportable Quantities for CAS65996-61-4 (U.S. Environmental Protection Agency, 2010):
- EPA CERCLA, Hazardous Substances and Reportable Quantities, Radionuclides for CAS9004-34-6 (U.S. Environmental Protection Agency, 2010):
- EPA CERCLA, Hazardous Substances and Reportable Quantities, Radionuclides for CAS65996-61-4 (U.S. Environmental Protection Agency, 2010):
- EPA RCRA Hazardous Waste Number for CAS9004-34-6 (U.S. Environmental Protection Agency, 2010b):
- EPA RCRA Hazardous Waste Number for CAS65996-61-4 (U.S. Environmental Protection Agency, 2010b):
- EPA SARA Title III, Extremely Hazardous Substance List for CAS9004-34-6 (U.S. Environmental Protection Agency, 2010):
- EPA SARA Title III, Extremely Hazardous Substance List for CAS65996-61-4 (U.S. Environmental Protection Agency, 2010):
- EPA SARA Title III, Community Right-to-Know for CAS9004-34-6 (40 CFR 372.65, 2006; 40 CFR 372.28, 2006):
- EPA SARA Title III, Community Right-to-Know for CAS65996-61-4 (40 CFR 372.65, 2006; 40 CFR 372.28, 2006):
- DOT List of Marine Pollutants for CAS9004-34-6 (49 CFR 172.101 - App. B, 2005):
- DOT List of Marine Pollutants for CAS65996-61-4 (49 CFR 172.101 - App. B, 2005):
- EPA TSCA Inventory for CAS9004-34-6 (EPA, 2005):
- EPA TSCA Inventory for CAS65996-61-4 (EPA, 2005):
SHIPPING REGULATIONS
- DOT -- Table of Hazardous Materials and Special Provisions (49 CFR 172.101, 2005):
- ICAO International Shipping Name (ICAO, 2002):
LABELS
- NFPA Hazard Ratings for CAS9004-34-6 (NFPA, 2002):
- NFPA Hazard Ratings for CAS65996-61-4 (NFPA, 2002):
-HANDLING AND STORAGE
STORAGE
- ROOM/CABINET RECOMMENDATIONS
Cellulose is incompatible with strong oxidizers such as hydrogen peroxide and also with water, bromine pentafluoride, sodium nitrite, and fluorine (NFPA, 1997; NIOSH , 1999).
-PERSONAL PROTECTION
SUMMARY
- RECOMMENDED PROTECTIVE CLOTHING - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004)
RESPIRATORY PROTECTION
- Refer to "Recommendations for respirator selection" in the NIOSH Pocket Guide to Chemical Hazards on TOMES Plus(R) for respirator information.
PROTECTIVE CLOTHING
- CHEMICAL PROTECTIVE CLOTHING. Search results for CAS 9004-34-6.
- CHEMICAL PROTECTIVE CLOTHING. Search results for CAS 65996-61-4.
-PHYSICAL HAZARDS
FIRE HAZARD
Editor's Note: This material is not listed in the Emergency Response Guidebook. Based on the material's physical and chemical properties, toxicity, or chemical group, a guide has been assigned. For additional technical information, contact one of the emergency response telephone numbers listed under Public Safety Measures. POTENTIAL FIRE OR EXPLOSION HAZARDS - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004) Flammable/combustible material. May be ignited by friction, heat, sparks or flames. Some may burn rapidly with flare burning effect. Powders, dusts, shavings, borings, turnings or cuttings may explode or burn with explosive violence. Substance may be transported in a molten form at a temperature that may be above its flash point. May re-ignite after fire is extinguished.
Cellulose is a combustible solid and can be flammable in some forms. Although dry cellulose may burn, damp cellulose can be a significant fire hazard since it may undergo spontaneous combustion from the heat of microbial activity and self-sustaining oxidation. Moisture enhances microbial action (Lewis, 1997). Cellulose dust may also ignite and explode if exposed to an ignition source (Clayton & Clayton, 1994).
- FLAMMABILITY CLASSIFICATION
- NFPA Flammability Rating for CAS9004-34-6 (NFPA, 2002):
- NFPA Flammability Rating for CAS65996-61-4 (NFPA, 2002):
- FIRE CONTROL/EXTINGUISHING AGENTS
- SMALL FIRE PRECAUTIONS - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004)
Dry chemical, CO2, sand, earth, water spray or regular foam.
- LARGE FIRE PRECAUTIONS - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004)
- TANK OR CAR/TRAILER LOAD FIRE PRECAUTIONS - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004)
Cool containers with flooding quantities of water until well after fire is out. For massive fire, use unmanned hose holders or monitor nozzles; if this is impossible, withdraw from area and let fire burn. Withdraw immediately in case of rising sound from venting safety devices or discoloration of tank. ALWAYS stay away from tanks engulfed in fire.
- NFPA Extinguishing Methods for CAS9004-34-6 (NFPA, 2002):
- NFPA Extinguishing Methods for CAS65996-61-4 (NFPA, 2002):
Smoke from burning cellulose material will contain carbon dioxide, carbon monoxide, and other products of thermal decomposition such as acrolein and various aldehydes. The proportion of carbon monoxide formed depends on the available air supply (Clayton & Clayton, 1994).
EXPLOSION HAZARD
- Fire and explosions may occur from reactions involving bromine pentafluoride, acetic acid, and cellulose. Contact between cotton and fluorine may result in violent explosion (NFPA, 1997). Cellulose dust may also ignite and explode if exposed to an ignition source (Clayton & Clayton, 1994).
DUST/VAPOR HAZARD
- Cellulose is considered to be a nuisance dust (Hathaway et al, 1996). As a dust, cellulose may ignite and explode if exposed to an ignition source (Clayton & Clayton, 1994). This compound will give off irritating fumes and acrid smoke when heated to decomposition (Lewis, 1996).
REACTIVITY HAZARD
- Damp cellulose can be a significant fire hazard since it may undergo spontaneous combustion (Lewis, 1997). Fire and explosions may occur from reactions involving bromine pentafluoride, acetic acid, and cellulose. Contact between cotton and fluorine may result in violent explosion. Contact between cellulose and sodium nitrite at elevated temperatures results in vigorous burning from a decomposition reaction (NFPA, 1997).
EVACUATION PROCEDURES
- Editor's Note: This material is not listed in the Table of Initial Isolation and Protective Action Distances.
- LARGE SPILL - PUBLIC SAFETY EVACUATION DISTANCES - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004)
- FIRE - PUBLIC SAFETY EVACUATION DISTANCES - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004)
If tank, rail car or tank truck is involved in a fire, ISOLATE for 800 meters (1/2 mile) in all directions; also, consider initial evacuation for 800 meters (1/2 mile) in all directions.
- PUBLIC SAFETY MEASURES - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004)
CALL Emergency Response Telephone Number on Shipping Paper first. If Shipping Paper not available or no answer, refer to appropriate telephone number: MEXICO: SETIQ: 01-800-00-214-00 in the Mexican Republic; For calls originating in Mexico City and the Metropolitan Area: 5559-1588; For calls originating elsewhere, call: 011-52-555-559-1588.
CENACOM: 01-800-00-413-00 in the Mexican Republic; For calls originating in Mexico City and the Metropolitan Area: 5550-1496, 5550-1552, 5550-1485, or 5550-4885; For calls originating elsewhere, call: 011-52-555-550-1496, or 011-52-555-550-1552; 011-52-555-550-1485, or 011-52-555-550-4885.
ARGENTINA: CIQUIME: 0-800-222-2933 in the Republic of Argentina; For calls originating elsewhere, call: +54-11-4613-1100.
BRAZIL: PRÓ-QUÍMICA: 0-800-118270 (Toll-free in Brazil); For calls originating elsewhere, call: +55-11-232-1144 (Collect calls are accepted).
COLUMBIA: CISPROQUIM: 01-800-091-6012 in Colombia; For calls originating in Bogotá, Colombia, call: 288-6012; For calls originating elsewhere, call: 011-57-1-288-6012.
CANADA: UNITED STATES:
For additional details see the section entitled "WHO TO CALL FOR ASSISTANCE" under the ERG Instructions. As an immediate precautionary measure, isolate spill or leak area for at least 25 meters (75 feet) in all directions. Keep unauthorized personnel away. Stay upwind. Keep out of low areas.
- AIHA ERPG Values for CAS9004-34-6 (AIHA, 2006):
- AIHA ERPG Values for CAS65996-61-4 (AIHA, 2006):
- DOE TEEL Values for CAS9004-34-6 (U.S. Department of Energy, Office of Emergency Management, 2010):
Listed as Cellulose TEEL-0 (units = mg/m3): 15 TEEL-1 (units = mg/m3): 30 TEEL-2 (units = mg/m3): 500 TEEL-3 (units = mg/m3): 500 Definitions: TEEL-0: The threshold concentration below which most people will experience no adverse health effects. TEEL-1: The airborne concentration (expressed as ppm [parts per million] or mg/m(3) [milligrams per cubic meter]) of a substance above which it is predicted that the general population, including susceptible individuals, could experience notable discomfort, irritation, or certain asymptomatic, nonsensory effects. However, these effects are not disabling and are transient and reversible upon cessation of exposure. TEEL-2: The airborne concentration (expressed as ppm or mg/m(3)) of a substance above which it is predicted that the general population, including susceptible individuals, could experience irreversible or other serious, long-lasting, adverse health effects or an impaired ability to escape. TEEL-3: The airborne concentration (expressed as ppm or mg/m(3)) of a substance above which it is predicted that the general population, including susceptible individuals, could experience life-threatening adverse health effects or death.
- DOE TEEL Values for CAS65996-61-4 (U.S. Department of Energy, Office of Emergency Management, 2010):
- AEGL Values for CAS9004-34-6 (National Research Council, 2010; National Research Council, 2009; National Research Council, 2008; National Research Council, 2007; NRC, 2001; NRC, 2002; NRC, 2003; NRC, 2004; NRC, 2004; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2007; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2007; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; 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62 FR 58840, 1997; 65 FR 14186, 2000; 65 FR 39264, 2000; 65 FR 77866, 2000; 66 FR 21940, 2001; 67 FR 7164, 2002; 68 FR 42710, 2003; 69 FR 54144, 2004):
- AEGL Values for CAS65996-61-4 (National Research Council, 2010; National Research Council, 2009; National Research Council, 2008; National Research Council, 2007; NRC, 2001; NRC, 2002; NRC, 2003; NRC, 2004; NRC, 2004; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2007; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2007; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; 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National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2009; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2009; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2009; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2009; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2009; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2009; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2009; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2008; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2007; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2007; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2007; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2007; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2007; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2007; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2007; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2005; National Advisory Committee for Acute Exposure Guideline Levels for Hazardous Substances, 2006; 62 FR 58840, 1997; 65 FR 14186, 2000; 65 FR 39264, 2000; 65 FR 77866, 2000; 66 FR 21940, 2001; 67 FR 7164, 2002; 68 FR 42710, 2003; 69 FR 54144, 2004):
- NIOSH IDLH Values for CAS9004-34-6 (National Institute for Occupational Safety and Health, 2007):
- NIOSH IDLH Values for CAS65996-61-4 (National Institute for Occupational Safety and Health, 2007):
CONTAINMENT/WASTE TREATMENT OPTIONS
SPILL OR LEAK PRECAUTIONS - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004) ELIMINATE all ignition sources (no smoking, flares, sparks or flames in immediate area). Do not touch or walk through spilled material.
RECOMMENDED PROTECTIVE CLOTHING - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 133 (ERG, 2004)
-ENVIRONMENTAL HAZARD MANAGEMENT
POLLUTION HAZARD
- Cellulose is ubiquitous in the environment. It is the main constituent of plant fiber and is therefore the world's most abundant organic material (Budavari, 1996; Lewis, 1997).
ABIOTIC DEGRADATION
- Cellulose is susceptible to hydrolysis and thermal degradation (ACGIH, 1991; Lewis, 1997).
BIODEGRADATION
- Cellulose is readily degraded by microbial activity. Cellulase, an enzyme produced by various fungi, can break cellulose into smaller pieces such as glucose (ACGIH, 1991; Lewis, 1997).
ENVIRONMENTAL TOXICITY
- No information found at the time of this review.
-PHYSICAL/CHEMICAL PROPERTIES
MOLECULAR WEIGHT
- Single anhydroglucose unit: 162.14
- Polymer: 160,000 to over 1 million (Hathaway et al, 1996; Lewis, 1997)
DESCRIPTION/PHYSICAL STATE
- Cellulose is a polymer consisting of linked glucose units (cellobiose) in unbranched linear chains. It may exist as a fibrous or white crystalline solid and is tasteless and odorless. Microcrystalline cellulose consists of rigid rods. Cellulose is the main constituent of plant fiber and is therefore the world's most abundant organic material (Budavari, 1996; Lewis, 1997).
- Natural cellulose refers to the microcrystalline form of cellulose, while technical cellulose consists only of the plant cell wall comprised of glucose (similar to cotton cellulose). Cellulose also occurs in three isomers, alpha, beta, and gamma, that vary in the degree of polymerization. The alpha form has the highest polymerization and is the main constituent of paper pulp (ACGIH, 1991; Budavari, 1996; Lewis, 1997).
VAPOR PRESSURE
- Approximately 0 mmHg (NIOSH , 1999)
SPECIFIC GRAVITY
- OTHER TEMPERATURE AND/OR PRESSURE
DENSITY
- TEMPERATURE AND/OR PRESSURE NOT LISTED
FREEZING/MELTING POINT
BOILING POINT
- Decomposes (NIOSH , 1999)
SOLUBILITY
Cellulose is insoluble in water (Lewis, 1997; NIOSH , 1999). Budavari (1996) reports that cellulose is practically insoluble in water, although the microcrystalline form disperses in water.
Cellulose will swell in dilute alkaline solutions such as sodium hydroxide and will dissolve in caustic alkali with carbon disulfide. It is soluble in ammoniacal copper hydroxide solution (Schweitzer's reagent) and concentrated zinc chloride solution (Budavari, 1996; Lewis, 1997).
OTHER/PHYSICAL
-REFERENCES
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