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GUANIDINIUM NITRATE

Guanidinium nitrate is used as the gas generator in automobile airbags.
Guanidinium nitrate has been used:in ammonium nitrate explosive formulations and in various propellant applications including triple-base gun propellantsto examine the vapor signatures of the nitrate salts of guanidine by isothermal thermogravimetric method
Guanidinium nitrate (GN) is an explosive used by the military and commercial sectors.


CAS Number: 506-93-4
EC Number: 208-060-1
Molecular Formula: CH₆N₄O₃
Molecular Weight: 122.08 g/mol


SYNONYMS:
Guanidinium Nitrate, Guanidine Nitrate, Guanidinium(1+) Nitrate, Carbamimidamidinium Nitrate, Aminomethanamidinium Nitrate, Guanidine Mononitrate, guanidine nitrate, Guanidine nitrate, 506-93-4, Guanidinium nitrate, GUANIDINE, MONONITRATE, Guanidine mononitrate, Guanidine nitrate (1:1), UN1467, Guanidine, nitrate (1:1), NSC-7295, B542239A4E, DTXSID3027164, guanidine; nitric acid, UN-1467, Nitrate, Guanidine, RefChem:782776, DTXCID307164, 208-060-1, Guanidine, nitrate, guanidine;nitric acid, MFCD00013028, 52470-25-4, HSDB 5671, NSC 7295, EINECS 208-060-1, Guanidinium Nitrate, NSC 7295, Guanidine Mononitrate, CH6N4O3, AI3-15039, Carbamidinenitrate, UNII-B542239A4E, EC 208-060-1, SCHEMBL21392, GUANIDINE NITRATE [MI], Nitric acid--guanidine (1/1), NSC7295, AKOS015909840, FG36928, AC-13711, BS-42296, Guanidine nitrate [UN1467] [Oxidizer], G0164, NS00078336, D90721, Q411523, GUANIDINE NITRATE, AMINOMETHANAMIDINE NITRATE, GUANIDINIUM NITRATE 98+%, GuanidineNitratePure, Guanidinnitrat, GUANIDINENITRATE, AMINOGUANIDINE DINITRATE, Guanidine Nitrate 98%, Guanidine nitrate, Guanidine nitrate (1:1), Guanidinium nitrate


Guanidinium Nitrate is an inorganic-organic ionic compound composed of a guanidinium cation and a nitrate anion, with the molecular formula CH₆N₄O₃.
Guanidinium nitrate is a nitrogen-rich crystalline salt widely used as an industrial intermediate, energetic material, gas-generating compound, and laboratory reagent.
Guanidinium nitrate is particularly notable for its exceptionally high nitrogen content, making it valuable in gas-generant formulations for automotive airbags, propellants, pyrotechnics, explosives research, and specialty chemical synthesis.


Unlike some traditional energetic nitrate salts, Guanidinium Nitrate combines relatively good thermal stability with efficient gas production, which has made it an important component in controlled gas-generation technologies.
Guanidinium Nitrate is a white crystalline salt with a highly ordered hydrogen-bonded crystal structure.


Guanidinium nitrate combines the strongly basic guanidinium ion with the oxidizing nitrate ion, creating a material with excellent gas-generating capability while maintaining relatively good storage stability under normal conditions.
Unlike volatile organic nitrogen compounds, Guanidinium Nitrate is essentially nonvolatile and exists as a stable crystalline solid at room temperature.


Guanidinium nitrate is less toxic than the mixture used in older airbags of sodium azide, potassium nitrate and silica (NaN3, KNO3, and SiO2), and it is less explosive and sensitive to moisture compared to the very cheap ammonium nitrate (NH4NO3).
Guanidinium nitrate appears as a white crystalline solid.


Guanidinium nitrate is soluble in water.
Guanidinium nitrate is a nitrate of guanidine.
Guanidinium nitrate is a high-energy fuel used in some gas generator and solid rocket propellant applications.


Guanidinium nitrate is a versatile compound known for its unique properties and practical applications across various industries.
This white crystalline substance, Guanidinium nitrate, is recognized for its high solubility in water, making it an excellent choice for applications requiring efficient dissolution.
Guanidinium nitrate is the chemical compound with the formula CH5N3·HNO3 (linear formula NH2C(=NH)NH2·HNO3).


Guanidinium nitrate is a colorless, water-soluble salt.
Guanidinium nitrate is produced on a large scale and finds use as precursor for nitroguanidine, fuel in pyrotechnics and gas generators.
Its correct name is guanidinium nitrate, but the colloquial term guanidine nitrate is widely used.


Guanidine Nitrate (GN), chemically known as guanidinium nitrate, has the molecular formula CH6N4O3 or CH5N3·HNO3.
Guanidinium nitrate exists as a white crystalline powder or granular solid, soluble in methanol, ethanol, and water, slightly soluble in acetone, insoluble in benzene and ether.
Guanidinium nitrate exhibits strong oxidizing properties and toxicity, capable of explosion upon exposure to flame, friction, vibration, or impact, and decomposes explosively when heated to 150°C.


Guanidinium nitrate, also known as guanidine mononitrate, is colorless leave-like crystal when crystallized from water.
Guanidinium nitrate has moderate toxicity, Its molecular formula is H2NC (NH) NH2HNO3.
Guanidinium nitrate is white granules soluble in water and ethanol, slightly soluble in acetone.


Guanidinium nitrate's melting point is between 214 and 216 ° C.
Guanidinium nitrate should be stored in shady and cool places and free from high temperature.
Guanidinium nitrate should be isolated from flammables, organic compounds, nitro compounds, chlorates or acids.


The loading and unloading of Guanidinium nitrate should be carried out carefully and lightly with reinforcement pad to prevent knock and friction.
And spilled Guanidinium nitrate should be immediately cleaned.


Guanidinium nitrate's fire extinguisher can be sand, foam, carbon dioxide and mist water.
Guanidinium nitrate is the chemical compound with the formula [C(NH2)3]NO3.


USES and APPLICATIONS of GUANIDINIUM NITRATE:
Guanidinium Nitrate has numerous industrial applications due to its unique combination of high nitrogen content, controlled decomposition, and efficient gas production.
One of Guanidinium nitrate's most important historical and commercial applications has been gas-generant formulations for automotive airbag inflators.
When properly formulated and ignited, Guanidinium Nitrate rapidly decomposes to produce large volumes of nitrogen-rich gases, making it an effective alternative to earlier gas-generating materials.


Guanidinium nitrate is used as the gas generator in automobile airbags.
Guanidinium nitrate is less toxic than the mixture used in older airbags of sodium azide, potassium nitrate and silica (NaN3, KNO3, and SiO2), and it is less explosive and sensitive to moisture compared to the very cheap ammonium nitrate.


Guanidinium nitrate is used as a monopropellant in the Jetex engine for model airplanes.
Major industrial applications of Guanidinium nitrate include: Automotive airbag gas generants, Gas-generation cartridges, Pyrotechnic formulations, Propellant research, Explosives research, Energetic material synthesis, Laboratory reagent, Specialty nitrogen chemistry, Fine chemical intermediate, Military research applications.


Guanidinium nitrate has been particularly valuable where controlled gas production is required.
Guanidinium nitrate is used as the gas generator in automobile airbags.
Guanidinium nitrate is not only used as the raw materials of imidacloprid (a pesticide) to prepare the next intermediate, nitroguanidine, it can also be used as the intermediates of a variety of sulfonylurea herbicides, such as bensulfuron-methyl, pyrazosulfuron-ethyl, chlorimuron-ethyl, etc.


In addition, Guanidinium nitrate is also used for the synthesis of sulfonamides medicine, explosives, photographic materials and disinfectants.
In addition, Guanidinium nitrate is also used to test guanidine salt in the complex acid.
Guanidinium nitrate is the salt formed from guanidine and nitric acid and has been used as a high energy fuel used in gas generators and propellant applications.


Guanidinium nitrate has been used:in ammonium nitrate explosive formulations and in various propellant applications including triple-base gun propellantsto examine the vapor signatures of the nitrate salts of guanidine by isothermal thermogravimetric method
Guanidinium nitrate (GN) is an explosive used by the military and commercial sectors.


Guanidinium nitrate finds widespread applications, primarily in the synthesis of pharmaceutical and pesticide intermediates like sulfadiazine, rocket propellants, paint industry, photographic materials, and disinfectants.
Its primary use lies in the production of fertilizers, where Guanidinium nitrate acts as a nitrogen source, promoting plant growth and enhancing crop yields.
Additionally, Guanidinium nitrate is utilized in the formulation of explosives, where its stability and energy content make it a valuable component in the development of propellants and pyrotechnics.


Researchers also appreciate Guanidinium nitrate for its role in biochemical applications, particularly in protein denaturation and as a reagent in organic synthesis.
Its ability to stabilize proteins and facilitate reactions makes Guanidinium nitrate a crucial tool in laboratories.
With its diverse applications and benefits, Guanidinium nitrate stands out as a reliable compound for both industrial and research purposes, offering efficiency and effectiveness in various formulations.


-Energetic material applications of Guanidinium nitrate:
Guanidinium Nitrate has been extensively studied as an energetic material.
Research applications of Guanidinium nitrate include: Composite propellants, Pyrotechnic compositions, Low-smoke energetic formulations, Gas-generating compositions, Combustion research, Thermal decomposition studies.
Its nitrogen-rich composition makes Guanidinium nitrate particularly attractive for formulations that seek to maximize gas output while minimizing solid residues.


-Chemical synthesis applications of Guanidinium nitrate:
Beyond energetic uses, Guanidinium Nitrate serves as a useful synthetic intermediate.
Guanidinium nitrate participates in the preparation of:
Guanidine derivatives
Nitrogen-containing heterocycles
Pharmaceutical intermediates
Specialty organic compounds
Coordination compounds
Guanidinium nitrate ion itself is an important building block in nitrogen chemistry.


GAS-GENERATING APPLICATIONS of GUANIDINIUM NITRATE:
One of the defining characteristics of Guanidinium Nitrate is its ability to generate large volumes of gas upon controlled decomposition.
Advantages of Guanidinium nitrate include:
High nitrogen yield
Rapid gas production
Controlled decomposition
Good storage stability
High energy density
Relatively clean gaseous products
These properties make guanidinium nitrate especially suitable for airbag inflator technology, where rapid gas generation must occur within milliseconds.


INDUSTRIAL CHARACTERISTICS of GUANIDINIUM NITRATE:
Commercial production generally involves the neutralization of guanidine with nitric acid under carefully controlled conditions.
Industrial characteristics of Guanidinium nitrate include:
High purity production
Good crystallization behavior
Excellent storage stability
Efficient aqueous processing
High nitrogen content
Relatively low volatility
Guanidinium nitrate is available in laboratory-grade and industrial-grade specifications.


BENEFITS AND ADVANTAGES of GUANIDINIUM NITRATE:
Guanidinium Nitrate offers numerous technical advantages.
Guanidinium nitrate's greatest strengths include:
Very high nitrogen content
Excellent gas-generation capability
Good thermal stability
Efficient decomposition
Low volatility
Strong crystal stability
Good water solubility
Versatile chemical intermediate
High energetic efficiency
Controlled gas production
These properties explain Guanidinium nitrate's continued importance in energetic materials research.


CHARACTERISTICS of GUANIDINIUM NITRATE:
Guanidinium Nitrate is a white crystalline nitrogen-rich ionic salt that combines excellent gas-generation capability with relatively good storage stability.
Its guanidinium cation provides high nitrogen content, while the nitrate anion supplies oxidizing functionality, making Guanidinium nitrate valuable for airbag inflators, gas-generating systems, energetic materials, and specialty chemical synthesis.
Guanidinium nitrate's greatest strengths include high nitrogen yield, controlled decomposition, good thermal stability, strong hydrogen-bonded crystal structure, low volatility, and versatile industrial applications.
Although Guanidinium nitrate offers significant advantages in gas-generating technologies and nitrogen chemistry, its energetic and oxidizing properties require careful storage, contamination control, and appropriate industrial safety procedures.


ENVIRONMENTAL CHARACTERISTICS of GUANIDINIUM NITRATE:
Guanidinium Nitrate behaves differently from many hydrophobic organic chemicals.
Important environmental characteristics of Guanidinium nitrate include:

*High water solubility
*Low bioaccumulation potential
*Ionic behavior in water
*Potential nitrate contribution to aquatic environments
*Low volatility
Although Guanidinium nitrate is not strongly bioaccumulative, releases should be minimized because nitrate-containing compounds may contribute to nutrient loading in aquatic systems.


STORAGE CONSIDERATIONS of GUANIDINIUM NITRATE:
Proper storage significantly improves safety.
Recommended storage conditions of Guanidinium nitrate include:

*Cool, dry storage.
*Protection from moisture.
*Separation from combustible materials.
*Separation from reducing agents.
*Protection from excessive heat.
*Tightly sealed containers.
*Good ventilation.
These precautions help maintain product stability and reduce accidental hazards.


SYNTHESIS of GUANIDINIUM NITRATE:
The reaction of dicyandiamide and ammonium nitrate:
The condensation reaction dicyandiamide and ammonium nitrate in the ratio of 1: 2 is carried out at 120~210 ° C.
The reaction product is crystallized, sliced to obtain finished product.
Guanidinium nitrate also can be prepared by the reaction between calcium cyanamide and nitric acid.


PHYSICAL and CHEMICAL PROPERTIES of GUANIDINIUM NITRATE:
Guanidinium nitrate is a white crystalline powder or granules.
Guanidinium nitrate is soluble in water and alcohol but insoluble in acetone, benzene, and ether.
Guanidinium nitrate (CAS 506-93-4) is a high-energy compound used primarily as an oxidizing agent in propellants, explosives, and pyrotechnic formulations.
Guanidinium nitrate is also valued as a nitrogen source in pharmaceutical intermediates and chemical synthesis.
Its high purity and stable structure make Guanidinium nitrate a reliable raw material for industrial applications.


CHEMICAL PROPERTIES of GUANIDINIUM NITRATE:
Guanidinium Nitrate is chemically stable under recommended storage conditions but possesses energetic characteristics because it combines a nitrogen-rich cation with an oxidizing nitrate anion.
Important chemical characteristics of Guanidinium nitrate include:

*Nitrogen-rich ionic compound
*Strong hydrogen-bonding crystal lattice
*High thermal stability before decomposition
*Oxidizing nitrate component
*High gas-generation efficiency
*Nonvolatile crystalline solid
*Good water solubility
*Decomposes exothermically at elevated temperatures
When heated beyond its decomposition temperature, Guanidinium nitrate releases large volumes of gaseous products.


MOLECULAR STRUCTURE AND CHARACTERISTICS of GUANIDINIUM NITRATE:
The molecular structure of Guanidinium nitrate consists of:
One guanidinium cation (CH₆N₃⁺)
One nitrate anion (NO₃⁻)
The guanidinium ion exhibits extensive resonance stabilization, while the nitrate ion contributes oxidizing capability.

Structural characteristics include:
Ionic molecular structure
Resonance-stabilized guanidinium cation
Planar nitrate anion
Extensive hydrogen bonding
High nitrogen content
Stable crystalline lattice
The crystal structure contributes significantly to Guanidinium nitrate's storage stability and controlled decomposition behavior.


THERMAL CHARACTERISTICS of GUANIDINIUM NITRATE:
One of the most important properties of Guanidinium Nitrate is its thermal decomposition behavior.
Instead of melting into a stable liquid, Guanidinium nitrate begins to decompose at elevated temperatures, releasing gases rapidly.

Major decomposition products include:
Nitrogen (N₂)
Carbon dioxide (CO₂)
Water vapor
Nitrogen oxides (NOx)
Ammonia (minor amounts under some conditions)
The high proportion of nitrogen gas produced during decomposition explains Guanidinium nitrate's importance as a gas-generating material.


SOLUBILITY BEHAVIOR of GUANIDINIUM NITRATE:
Guanidinium Nitrate exhibits favorable aqueous solubility.
Guanidinium nitrate is:
Highly soluble in water
Slightly soluble in ethanol
Practically insoluble in acetone
Its ionic nature makes Guanidinium nitrate particularly suitable for aqueous processing during industrial manufacturing.


CHEMICAL REACTIVITY of GUANIDINIUM NITRATE:
Guanidinium Nitrate participates in numerous chemical reactions.
Guanidinium nitrate reacts with:
*Strong bases
*Strong reducing agents
*Oxidizable materials under energetic conditions
*Certain metal salts
*Acids under specific reaction conditions


GENERAL PHYSICOCHEMICAL PROPERTIES OF GUANIDINIUM NITRATE:
The molecular formula of Guanidinium nitrate is CH6N4O3, with a molecular weight of 122.08.
Guanidinium nitrate typically appears as white crystalline powder or granules, functioning as an organic strong base and a strong oxidizer with moderate toxicity.
Guanidinium nitrate has a melting point of 217°C, is soluble in methanol, ethanol, and water, and insoluble in acetone, benzene, and ether.
Guanidinium nitrate maintains a neutral pH and decomposes explosively at high temperatures.


HOW IS GUANIDINIUM NITRATE MANUFACTURED?
Production Process:
The process involves condensation reaction, distillation purification, solvent recovery, and drying to obtain the final product.

Production Methods:
Chemical synthesis methods primarily include cyanamide method, calcium cyanamide method, cyanamide method, and Guanidinium nitrate method.
Raw material for manufacture of nitroguanidine; building block for heterocycles; ingredient for gas generants for airbags

Nitrate guanidine, guanidine hydrochloride, guanidine carbonate and guanidine phosphate are four common kinds of guanidine salts, can be used to produce sulfamidine, sulfadiazine sulfonamides and nitroguanidine, guanidine carbonate, and also used for photography materials and disinfectants.
Industrial preparation of Guanidinium nitrate is through the reaction of dicyandiamide and ammonium nitrate.


PRODUCTION AND PROPERTIES of GUANIDINIUM NITRATE:
Although Guanidinium nitrate is the salt formed by neutralizing guanidine with nitric acid, guanidine nitrate is produced industrially by the reaction of dicyandiamide (or calcium salt) and ammonium nitrate.
Guanidinium nitrate has been used as a monopropellant in the Jetex engine for model airplanes.

Guanidinium nitrate is attractive because it has a high gas output and low flame temperature.
Guanidinium nitrate has a relatively high monopropellant specific impulse of 177 seconds (1.7 kN·s/kg).
Guanidinium nitrate's explosive decomposition is given by the following equation: 
[C(NH2)3]NO3 (s) → 3 H2O (g) + 2 N2 (g) + C (s)


PHYSICAL and CHEMICAL PROPERTIES of GUANIDINIUM NITRATE:
Chemical Name: Guanidinium Nitrate
Common Name: Guanidine Nitrate
IUPAC Name: Guanidinium nitrate
CAS Number: 506-93-4
EC Number: 208-060-1
Molecular Formula: CH₆N₄O₃
Molecular Weight: 122.08 g/mol
PubChem CID: 10447
ChemSpider ID: 10010
Chemical Class: Guanidinium salt, Nitrate salt, Nitrogen-rich energetic compound
Appearance: White crystalline powder or crystals

Physical State: Solid
Crystal System: Monoclinic
Physical state: Solid
Appearance: White crystalline powder or crystals
Color: White
Odor: Odorless
Molecular formula: CH₆N₄O₃
Molecular weight: 122.08 g/mol
Crystal system: Monoclinic
Melting point: Approximately 212–215°C (decomposes)
Boiling point: Decomposes before boiling

Density: Approximately 1.44 g/cm³
Bulk density: Approximately 700–900 kg/m³
Vapor pressure: Negligible
Water solubility: Highly soluble (approximately 140–170 g/L at 20°C)
Solubility in ethanol: Slightly soluble
Solubility in acetone: Practically insoluble
pH (aqueous solution): Slightly acidic to neutral
Refractive index: Approximately 1.62
Chemical formula: CH5N3·HNO3
Molar mass: 122.084 g·mol−1

Appearance: White solid
Density: 1.44 g/cm3[1]
Melting point: 213–215 °C (415–419 °F; 486–488 K)[1]
Boiling point: Decomposes over 250 °C (482 °F; 523 K)[2]
Solubility in water: 50 mg/mL[1]
Molecular Weight: 122.08 g/mol
Hydrogen Bond Donor Count: 4
Hydrogen Bond Acceptor Count: 4
Rotatable Bond Count: 0
Exact Mass: 122.04399007 Da

Monoisotopic Mass: 122.04399007 Da
Topological Polar Surface Area: 142 Ų
Heavy Atom Count: 8
Formal Charge: 0
Complexity: 51
Isotope Atom Count: 0
Defined Atom Stereocenter Count: 0
Undefined Atom Stereocenter Count: 0
Defined Bond Stereocenter Count: 0
Undefined Bond Stereocenter Count: 0

Covalently-Bonded Unit Count: 2
Compound Is Canonicalized: Yes
Melting Point: 213-215 °C(lit.)
Boiling Point: 227.45°C (rough estimate)
Density: 1.44
Vapor Pressure: 0Pa at 25℃
Refractive Index: 1.4164 (estimate)
Storage Temperature: Store below +30°C.
Solubility: water: soluble50mg/mL, clear to very slightly hazy, colorless
pKa: 10.2[at 20 ℃]

Form: crystalline powder
Color: White
Odor: Odorless
PH: 4.9 (165g/l, H2O, 25℃)
Water Solubility: 130 g/L (20 ºC)
Merck: 14,4562
BRN: 3596600
Stability: May explode if heated. May be shock sensitive.
InChI: 1S/CH5N3.HNO3/c2*2-1(3)4/h(H5,2,3,4);(H,2,3,4)
InChIKey: CNUNWZZSUJPAHX-UHFFFAOYSA-N
SMILES: NC(N)=N.ON+=O

LogP: -1.7 at 20℃
CAS DataBase Reference: 506-93-4(CAS DataBase Reference)
EPA Substance Registry System: Guanidine nitrate (506-93-4)
Molecular Formula / Molecular Weight: CH5N3·HNO3 = 122.08
Physical State (20 deg.C): Solid
Storage Temperature: Room Temperature (Recommended in a cool and dark place, <15°C)
CAS RN: 506-93-4
Reaxys Registry Number: 3596600
PubChem Substance ID: 125309399
Merck Index (14): 4562
MDL Number: MFCD00013028
Linear Formula: NH2C(=NH)NH2 · HNO3

CAS Number: 506-93-4
Molecular Weight: 122.08
UNSPSC Code: 12352100
NACRES: NA.22
PubChem Substance ID: 24854032
EC Number: 208-060-1
Beilstein/REAXYS Number: 3596600
MDL Number: MFCD00013028
Assay: 98%

Form: solid
Physical State: solid
Color: No data available
Odor: No data available
Melting Point/Freezing Point: Melting point/range: 213 - 215 °C
Initial Boiling Point and Boiling Range: No data available
Flammability (Solid, Gas): No data available
Upper/Lower Flammability or Explosive Limits: No data available
Flash Point: No data available
Autoignition Temperature: No data available
Decomposition Temperature: No data available
pH: No data available

Viscosity, Kinematic: No data available
Viscosity, Dynamic: No data available
Water Solubility: No data available
Partition Coefficient: n-octanol/water: No data available
Vapor Pressure: No data available
Density: 1,44 g/cm3 at 20 °C
Relative Density: No data available
Relative Vapour Density: No data available
Particle Characteristics: No data available
Explosive Properties: No data available
Oxidizing Properties: The substance or mixture is classified as oxidizing with the category 3.
Other Safety Information: No data available


FIRST AID MEASURES of GUANIDINIUM NITRATE:
-Description of first-aid measures
*General advice:
Show this material safety data sheet to the doctor in attendance.
*If inhaled:
After inhalation: 
Fresh air.
*In case of skin contact: 
Take off immediately all contaminated clothing. 
Rinse skin with
water/ shower.
*In case of eye contact:
After eye contact: 
Rinse out with plenty of water. 
Call in ophthalmologist. 
Remove contact lenses.
*If swallowed:
After swallowing: 
Immediately make victim drink water (two glasses at most). 
Consult a physician.
-Indication of any immediate medical attention and special treatment needed.
No data available


ACCIDENTAL RELEASE MEASURES of GUANIDINIUM NITRATE:
-Environmental precautions:
Do not let product enter drains.
-Methods and materials for containment and cleaning up:
Cover drains. 
Collect, bind, and pump off spills. 
Observe possible material restrictions. 
Take up dry. 
Dispose of properly. 
Clean up affected area.


FIRE FIGHTING MEASURES of GUANIDINIUM NITRATE:
-Extinguishing media:
*Suitable extinguishing media:
Carbon dioxide (CO2) 
Foam 
Dry powder
*Unsuitable extinguishing media:
For this substance/mixture no limitations of extinguishing agents are given.
-Further information:
Prevent fire extinguishing water from contaminating surface water or the ground water system.


EXPOSURE CONTROLS/PERSONAL PROTECTION of GUANIDINIUM NITRATE:
-Control parameters:
--Ingredients with workplace control parameters:
-Exposure controls:
--Personal protective equipment:
*Eye/face protection:
Use equipment for eye protection. 
Safety glasses
*Body Protection:
protective clothing
*Respiratory protection:
Recommended Filter type: Filter A 
-Control of environmental exposure:
Do not let product enter drains.


HANDLING and STORAGE of GUANIDINIUM NITRATE:
-Conditions for safe storage, including any incompatibilities:
*Storage conditions:
Tightly closed. 
Dry.

 
STABILITY and REACTIVITY of GUANIDINIUM NITRATE:
-Chemical stability:
The product is chemically stable under standard ambient conditions (room temperature).
-Possibility of hazardous reactions:
No data available


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