NITROGEN TETROXIDE
HAZARDTEXT ®
Information to help in the initial response for evaluating chemical incidents
-IDENTIFICATION
SYNONYMS
NITROGEN TETROXIDE DINITROGEN DIOXIDE DINITROGEN TETRAOXIDE DINITROGEN TETROXIDE LIQUID NITROGEN TETROXIDE NITROGEN DI-DIOXIDF NITROGEN DIOXIDE, DI- NITROGEN OXIDE NITROGEN PEROXIDE, LIQUID NITROGEN TETRAOXIDE NITROGEN TETROXIDE, LIQUID
IDENTIFIERS
QX 1580000 (liquid) QX 1575000
SYNONYM REFERENCE
- EPA, 1990(HSDB , 1991; RTECS , 1991; Sax & Lewis, 1989)
USES/FORMS/SOURCES
Nitrogen tetroxide is a colorless gas at ambient temperatures, and a yellow liquid below 22 degrees C (HSDB , 1991). The liquid is corrosive (HSDB , 1991). The gas reacts with water to form a mixture of nitrous acid and nitric acid (HSDB , 1991). Nitrogen tetroxide is commonly called nitrogen peroxide, although that name is chemically incorrect (HSDB , 1991). Nitrogen tetroxide is a dimer of nitrogen dioxide (Sax & Lewis, 1989). Nitrogen dioxide and its polymer, nitrogen tetroxide, are always found together at normal environmental temperatures. At minus 9.3 degrees C and below, the oxides are composed completely of nitrogen tetroxide. At temperatures of 135 degrees C and above, the gas is essentially nitrogen dioxide. At temperatures within this range, the gases are always present as a mixture (HSDB , 1991).
-CLINICAL EFFECTS
GENERAL CLINICAL EFFECTS
- Nitrogen tetroxide occurs along with other oxides of nitrogen (nitrogen dioxide, nitric oxide, nitrogen trioxide, and nitrogen pentoxide) to form NITROUS FUMES. Of these, nitric oxide and nitrogen dioxide are the primary toxicologic hazards, and occur in dynamic equilibrium.
- Industrial exposures to nitrogen tetroxide can take place wherever nitric acid is made or used and has occurred most commonly where metals are dipped in acid baths.
- Electric arc welding, and to a lesser extent gas welding, can generate hazardous concentrations of nitrous fumes. Exposure to nitrogen tetroxide in the missile industry can produce identical symptoms as those from nitrogen dioxide and should be treated in a similar fashion.
- NITROGEN OXIDES - Exposure to nitrogen oxides results in acute and chronic changes of the pulmonary system including pulmonary edema, pneumonitis, bronchitis, bronchiolitis, emphysema and possibly methemoglobinemia. Usually, no symptoms occur, except a slight cough, fatigue and nausea. However, delayed pulmonary edema can occur even following minimal early symptoms.
- Nitrogen oxides are released in the reaction between nitric acid and any organic material, in the exhaust from metal cleaning, in the gases from electric arc welding, in electroplating, in glassblowing and engraving, in dynamite blasting, in diesel engine exhaust, in burning of nitrocellulose, in combustion of some shoe polishes, and in decomposition of silage in silos. Nitrogen oxides are also formed following reaction between nitric acid and copper from pre-decimal pennies.
- POTENTIAL HEALTH HAZARDS - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 124 (ERG, 2004)
TOXIC; may be fatal if inhaled or absorbed through skin. Fire will produce irritating, corrosive and/or toxic gases. Contact with gas or liquefied gas may cause burns, severe injury and/or frostbite. Runoff from fire control may cause pollution.
-MEDICAL TREATMENT
LIFE SUPPORT
- Support respiratory and cardiovascular function.
SUMMARY
- FIRST AID - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 124 (ERG, 2004)
Move victim to fresh air. Call 911 or emergency medical service. Give artificial respiration if victim is not breathing. Do not use mouth-to-mouth method if victim ingested or inhaled the substance; give artificial respiration with the aid of a pocket mask equipped with a one-way valve or other proper respiratory medical device. Administer oxygen if breathing is difficult. Clothing frozen to the skin should be thawed before being removed. 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. Keep victim warm and quiet. Keep victim under observation. Effects of contact or inhalation may be delayed. Ensure that medical personnel are aware of the material(s) involved and take precautions to protect themselves.
-RANGE OF TOXICITY
MINIMUM LETHAL EXPOSURE
OTHER NITROGEN OXIDES - Death due to airway obstruction secondary to edema of the glottis has not been well documented for NITROGEN DIOXIDE, but is estimated to be due to concentrations greater than 100 ppm (Tse & Bockman, 1970). Exposure to a concentration of 200 ppm may be fatal (Budavari, 1989).
MAXIMUM TOLERATED EXPOSURE
Concentrations of 50 ppm are moderately irritating to the eyes and noses (HSDB , 1991). Concentrations of 25 ppm are irritating to some people (HSDB , 1991).
OTHER NITROGEN OXIDES - The odor of NITROGEN DIOXIDE is perceptible at 1 to 3 ppm (ACGIH, 1986). With exposure to NITROGEN DIOXIDE, symptoms appear at 13 ppm (Clayton & Clayton, 1982). Exposures to NITROGEN DIOXIDE in the range of 100 to 150 ppm for a few minutes are dangerous, and 200 to 700 ppm can be fatal after brief exposure (Sax & Lewis, 1989). One attempt to arrive at an ambient air standard for NITROGEN DIOXIDE, which was based on results of studies since 1966, concluded that the maximal no-effect dose is approximately 0.6 ppm without any safety factor. Applying various safety factors as currently practiced by various regulatory agencies would lead to air standards in the ppb range (Morrow, 1975).
OCCUPATIONAL ADULT A group of 22 adult volunteers who were exposed to 1 or 2 ppm NITROGEN DIOXIDE under controlled conditions for 2 hours per day over 3 consecutive days had increased frequencies of infection by attenuated influenza A/Korea/82 virus compared to a control group, but the differences were not statistically significant. These exposure conditions did not produce any significant changes in pulmonary function or nonspecific airway reactivity to a methacholine challenge (Goings et al, 1989).
- Carcinogenicity Ratings for CAS10544-72-6 :
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 CAS10544-72-6 (U.S. Environmental Protection Agency, 2011):
LC50- (INHALATION)RABBIT: LC50- (INHALATION)GUINEA_PIG: LC50- (INHALATION)MOUSE: LC50- (INHALATION)RABBIT: LC50- (INHALATION)RAT: LCLo- (INHALATION)DOG: LCLo- (INHALATION)HUMAN: LCLo- (INHALATION)PRIMATE: TCLo- (INHALATION)HUMAN: 6200 ppb for 10M 90 ppm for 40M
-STANDARDS AND LABELS
WORKPLACE STANDARDS
- ACGIH TLV Values for CAS10544-72-6 (American Conference of Governmental Industrial Hygienists, 2010):
- AIHA WEEL Values for CAS10544-72-6 (AIHA, 2006):
- NIOSH REL and IDLH Values for CAS10544-72-6 (National Institute for Occupational Safety and Health, 2007):
- OSHA PEL Values for CAS10544-72-6 (U.S. Occupational Safety, and Health Administration (OSHA), 2010):
- OSHA List of Highly Hazardous Chemicals, Toxics, and Reactives for CAS10544-72-6 (U.S. Occupational Safety and Health Administration, 2010):
ENVIRONMENTAL STANDARDS
- EPA CERCLA, Hazardous Substances and Reportable Quantities for CAS10544-72-6 (U.S. Environmental Protection Agency, 2010):
Listed as: Nitrogen dioxide Final Reportable Quantity, in pounds (kilograms): Additional Information: Listed as: Nitrogen oxide NO2 Final Reportable Quantity, in pounds (kilograms): Additional Information:
- EPA CERCLA, Hazardous Substances and Reportable Quantities, Radionuclides for CAS10544-72-6 (U.S. Environmental Protection Agency, 2010):
- EPA RCRA Hazardous Waste Number for CAS10544-72-6 (U.S. Environmental Protection Agency, 2010b):
- EPA SARA Title III, Extremely Hazardous Substance List for CAS10544-72-6 (U.S. Environmental Protection Agency, 2010):
- EPA SARA Title III, Community Right-to-Know for CAS10544-72-6 (40 CFR 372.65, 2006; 40 CFR 372.28, 2006):
- DOT List of Marine Pollutants for CAS10544-72-6 (49 CFR 172.101 - App. B, 2005):
- EPA TSCA Inventory for CAS10544-72-6 (EPA, 2005):
SHIPPING REGULATIONS
- DOT -- Table of Hazardous Materials and Special Provisions for UN/NA Number 1067 (49 CFR 172.101, 2005):
- ICAO International Shipping Name for UN1067 (ICAO, 2002):
LABELS
- NFPA Hazard Ratings for CAS10544-72-6 (NFPA, 2002):
-HANDLING AND STORAGE
STORAGE
- ROOM/CABINET RECOMMENDATIONS
-PERSONAL PROTECTION
SUMMARY
- RECOMMENDED PROTECTIVE CLOTHING - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 124 (ERG, 2004)
Wear positive pressure self-contained breathing apparatus (SCBA). Wear chemical protective clothing that is specifically recommended by the manufacturer. It may provide little or no thermal protection. Structural firefighters' protective clothing provides limited protection in fire situations ONLY; it is not effective in spill situations where direct contact with the substance is possible.
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 10544-72-6.
-PHYSICAL HAZARDS
FIRE HAZARD
POTENTIAL FIRE OR EXPLOSION HAZARDS - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 124 (ERG, 2004) Substance does not burn but will support combustion. Vapors from liquefied gas are initially heavier than air and spread along ground. These are strong oxidizers and will react vigorously or explosively with many materials including fuels. May ignite combustibles (wood, paper, oil, clothing, etc.). Some will react violently with air, moist air and/or water. Cylinders exposed to fire may vent and release toxic and/or corrosive gas through pressure relief devices. Containers may explode when heated. Ruptured cylinders may rocket.
Nitrogen tetroxide is noncombustible, but is a strong oxidizing agent that may cause fire on contact with other combustible materials (NFPA, 1990). When heated to decomposition, nitrogen tetroxide emits toxic fumes of oxides of nitrogen (Sax & Lewis, 1989).
- FLAMMABILITY CLASSIFICATION
- NFPA Flammability Rating for CAS10544-72-6 (NFPA, 2002):
- FIRE CONTROL/EXTINGUISHING AGENTS
- SMALL FIRE PRECAUTIONS - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 124 (ERG, 2004)
Water only; no dry chemical, CO2 or Halon®. Contain fire and let burn. If fire must be fought, water spray or fog is recommended. Do not get water inside containers. Move containers from fire area if you can do it without risk. Damaged cylinders should be handled only by specialists.
- TANK FIRE PRECAUTIONS - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 124 (ERG, 2004)
Fight fire from maximum distance or use unmanned hose holders or monitor nozzles. Cool containers with flooding quantities of water until well after fire is out. Do not direct water at source of leak or safety devices; icing may occur. Withdraw immediately in case of rising sound from venting safety devices or discoloration of tank. ALWAYS stay away from tanks engulfed in fire. For massive fire, use unmanned hose holders or monitor nozzles; if this is impossible, withdraw from area and let fire burn.
- NFPA Extinguishing Methods for CAS10544-72-6 (NFPA, 2002):
EXPLOSION HAZARD
- Mixtures of nitrogen tetroxide and nitro-benzene qualify as military explosives (NFPA, 1990).
- Liquid ammonia reacts explosively with the solid nitrogen tetroxide at minus 80 degrees C (Bretherick, 1990).
- The presence of small amounts of nitrogen tetroxide in non-explosive mixtures of hydrogen and oxygen renders them explosive (Bretherick, 1990).
- Mixtures of nitrogen tetroxide with dichloromethane, chloroform, carbon tetrachloride, 1,2-dichloroethane, trichloroethylene and tetrachloroethylene are explosive when subjected to shock of 25 grams TNT equivalent or less (Bretherick, 1990).
- Interaction with calcium is explosive (Bretherick, 1990).
DUST/VAPOR HAZARD
- When heated to decomposition, nitrogen tetroxide emits toxic fumes of oxides of nitrogen (Sax & Lewis, 1989).
REACTIVITY HAZARD
- When heated to decomposition, nitrogen tetroxide emits toxic fumes of oxides of nitrogen (Sax & Lewis, 1989).
- The gas reacts with water to form a mixture of nitrous acid and nitric acid (HSDB , 1991).
- The reactions between nitrogen tetroxide and both ordinary fuels and rocket fuels as well as between nitrogen tetroxide and most chlorinated hydrocarbons, may be violent (NFPA, 1990).
- Mixtures of nitrogen tetroxide and nitro-benzene qualify as military explosives (NFPA, 1990).
- Liquid ammonia reacts explosively with the solid nitrogen tetroxide at minus 80 degrees C, while aqueous ammonia reacts vigorously with the gas at ambient temperature (Bretherick, 1990).
- The presence of small amounts of nitrogen tetroxide in non-explosive mixtures of hydrogen and oxygen renders them explosive (Bretherick, 1990).
- Mixtures of nitrogen tetroxide with dichloromethane, chloroform, carbon tetrachloride, 1,2-dichloroethane, trichloroethylene and tetrachloroethylene are explosive when subjected to shock of 25 grams TNT equivalent or less.
- Reduced iron, potassium and pyrophoric manganese all ignite in nitrogen tetroxide at ambient temperatures.
- Slightly warm sodium ignites in contact with nitrogen tetroxide gas; interaction with calcium is explosive (Bretherick, 1990).
EVACUATION PROCEDURES
- Initial Isolation and Protective Action Distances (ERG, 2004)
Data presented from the Emergency Response Guidebook Table of Initial Isolation and Protective Action Distances are for use when a spill has occurred and there is no fire. If there is a fire, or if a fire is involved, evacuation information presented under FIRE - PUBLIC SAFETY EVACUATION DISTANCES should be used. Generally, a small spill is one that involves a single, small package such as a drum containing up to approximately 200 liters, a small cylinder, or a small leak from a large package. A large spill is one that involves a spill from a large package, or multiple spills from many small packages. Suggested distances to protect from vapors of toxic-by-inhalation and/or water-reactive materials during the first 30 minutes following the spill.
- SPILL - PUBLIC SAFETY EVACUATION DISTANCES - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 124 (ERG, 2004)
Increase, in the downwind direction, as necessary, the isolation distance of at least 100 meters (330 feet) in all directions.
- FIRE - PUBLIC SAFETY EVACUATION DISTANCES - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 124 (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 124 (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 100 meters (330 feet) in all directions. Keep unauthorized personnel away. Stay upwind. Many gases are heavier than air and will spread along ground and collect in low or confined areas (sewers, basements, tanks). Keep out of low areas. Ventilate closed spaces before entering.
- AIHA ERPG Values for CAS10544-72-6 (AIHA, 2006):
- DOE TEEL Values for CAS10544-72-6 (U.S. Department of Energy, Office of Emergency Management, 2010):
Listed as Nitrogen tetroxide TEEL-0 (units = ppm): 0.3 TEEL-1 (units = ppm): 0.94 TEEL-2 (units = ppm): 23 TEEL-3 (units = ppm): 38 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.
- AEGL Values for CAS10544-72-6 (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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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):
Listed as: Nitrogen tetroxide Proposed Value: AEGL-1 10 min exposure: ppm: 0.25 ppm mg/m3: 0.94 mg/m(3)
30 min exposure: ppm: 0.25 ppm mg/m3: 0.94 mg/m(3)
1 hr exposure: ppm: 0.25 ppm mg/m3: 0.94 mg/m(3)
4 hr exposure: ppm: 0.25 ppm mg/m3: 0.94 mg/m(3)
8 hr exposure: ppm: 0.25 ppm mg/m3: 0.94 mg/m(3)
Definitions: AEGL-1 is the airborne concentration of a substance above which it is predicted that the general population, including susceptible individuals, could experience notable discomfort, irritation, or certain asymptomatic non-sensory effects. However, the effects are not disabling, are transient, and are reversible upon cessation of exposure.
Listed as: Nitrogen tetroxide Proposed Value: AEGL-2 10 min exposure: ppm: 10 ppm mg/m3: 38 mg/m(3)
30 min exposure: ppm: 7.6 ppm mg/m3: 28 mg/m(3)
1 hr exposure: ppm: 6.2 ppm mg/m3: 23 mg/m(3)
4 hr exposure: ppm: 4.1 ppm mg/m3: 15 mg/m(3)
8 hr exposure: ppm: 3.5 ppm mg/m3: 13 mg/m(3)
Definitions: AEGL-2 is the airborne concentration 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.
Listed as: Nitrogen tetroxide Proposed Value: AEGL-3 10 min exposure: ppm: 17 ppm mg/m3: 64 mg/m(3)
30 min exposure: ppm: 13 ppm mg/m3: 47 mg/m(3)
1 hr exposure: ppm: 10 ppm mg/m3: 38 mg/m(3)
4 hr exposure: ppm: 7 ppm mg/m3: 26 mg/m(3)
8 hr exposure: ppm: 5.7 ppm mg/m3: 21 mg/m(3)
Definitions: AEGL-3 is the airborne concentration of a substance above which it is predicted that the general population, including susceptible individuals, could experience life-threatening health effects or death.
- NIOSH IDLH Values for CAS10544-72-6 (National Institute for Occupational Safety and Health, 2007):
CONTAINMENT/WASTE TREATMENT OPTIONS
SPILL OR LEAK PRECAUTIONS - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 124 (ERG, 2004) Fully encapsulating, vapor protective clothing should be worn for spills and leaks with no fire. Do not touch or walk through spilled material. Keep combustibles (wood, paper, oil, etc.) away from spilled material. Stop leak if you can do it without risk. Use water spray to reduce vapors or divert vapor cloud drift. Avoid allowing water runoff to contact spilled material. Do not direct water at spill or source of leak. If possible, turn leaking containers so that gas escapes rather than liquid. Prevent entry into waterways, sewers, basements or confined areas. Isolate area until gas has dispersed. Ventilate the area.
RECOMMENDED PROTECTIVE CLOTHING - EMERGENCY RESPONSE GUIDEBOOK, GUIDE 124 (ERG, 2004) Wear positive pressure self-contained breathing apparatus (SCBA). Wear chemical protective clothing that is specifically recommended by the manufacturer. It may provide little or no thermal protection. Structural firefighters' protective clothing provides limited protection in fire situations ONLY; it is not effective in spill situations where direct contact with the substance is possible.
ENVIRONMENTAL CONSIDERATIONS - AIR SPILL (AAR, 1987) In a study of foam systems for use as covers in spill situations involving the release of propellant vapors from the spill of hypergolic propellants such as nitrogen tetroxide and hydrazines, the best available system tested was the foam system as prepared from a Rohm and Haas polyacrylic (ASE-33) combined with an MSA Research surfactant solution (Takimoto HH, Lewis S & Hiltz R, 1984). A series of large-scale spills of nitrogen tetroxide was performed at the Nevada Test Site to study the evaporation rates and heavy gas dispersion aspects of realistic size releases of nitrogen tetroxide, a rocket fuel oxidizer for the Titan II missile system (Issue 13). The Titan II complexes are currently being decommissioned, resulting in an increase in the overland transportation of this toxic material (Issue 13). The nitrogen tetroxide vapor is heavier-than-air and forms a nitric acid mist in the area close to the spill. As it disperses downwind, it dissociates to nitrogen dioxide (Issue 13).
-ENVIRONMENTAL HAZARD MANAGEMENT
POLLUTION HAZARD
- Toxic silo gases are a potential danger to livestock housed in close proximity to silos. A mixture of nitrogen dioxide and nitrogen tetroxide gas, believed to be produced in the early stages of silage making, caused the death of five fattening pigs as well as respiratory distress and weakness in other pigs. The gases accumulated in a slurry channel below the silo and leaked through an adjoining wall into the piggery (McLoughlin et al, 1985).
ENVIRONMENTAL FATE AND KINETICS
ENVIRONMENTAL TOXICITY
- No information on the environmental toxicity of nitrogen tetroxide was found in available references at the time of this review.
-PHYSICAL/CHEMICAL PROPERTIES
MOLECULAR WEIGHT
- 92.02 (RTECS , 1991; Sax & Lewis, 1989; HSDB , 1991)
DESCRIPTION/PHYSICAL STATE
- Nitrogen tetroxide is a colorless gas at temperatures above 22 degrees C and a yellow liquid below 22 degrees C (HSDB , 1991).
PH
VAPOR PRESSURE
- 1 mmHg (at -55.6 degrees C) (HSDB , 1991)
- 10 mmHg (at -36.7 degrees C) (HSDB , 1991)
- 40 mmHg (at -23.9 degrees C) (HSDB , 1991)
- 100 mmHg (at -14.7 degrees C) (HSDB , 1991)
- 400 mmHg (at 8.0 degrees C) (HSDB , 1991)
FREEZING/MELTING POINT
BOILING POINT
- 21.0 degrees C (at 760 mmHg) (HSDB , 1991)
-REFERENCES
GENERAL BIBLIOGRAPHY- 40 CFR 372.28: Environmental Protection Agency - Toxic Chemical Release Reporting, Community Right-To-Know, Lower thresholds for chemicals of special concern. National Archives and Records Administration (NARA) and the Government Printing Office (GPO). Washington, DC. Final rules current as of Apr 3, 2006.
- 40 CFR 372.65: Environmental Protection Agency - Toxic Chemical Release Reporting, Community Right-To-Know, Chemicals and Chemical Categories to which this part applies. National Archives and Records Association (NARA) and the Government Printing Office (GPO), Washington, DC. Final rules current as of Apr 3, 2006.
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