Ammonium Chloride To Ammonia

Ammonium Chloride To Ammonia

CAS: 12125-02-9
EINECS number: 235-186-4
Molecular formula: ClH4N
HS code:2827101000
Molecular weight:53.49
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AMMONIUM CHLORIDE

Ammonium chloride is a versatile inorganic salt that has become increasingly popular due to its wide range of applications. It is primarily produced as a by-product of the thriving alkali industry, which has continuously improved its production technology to meet the growing demand.That product is readily available for purchase online, which makes it convenient for individuals and businesses to obtain. It is worth noting that there has been a slight decrease in demand for ammonium chloride due to a decline in China's compound fertiliser production and sales, but it remains a popular choice. This is a substance that has proven to be versatile and indispensable, fulfilling a wide range of needs across various industries due to its availability and reliability. Innovative businesses are finding new and exciting applications for it, enhancing its reputation as a valuable resource. If you are looking to harness its power for successful outcomes, so it is an ideal choice.

 

Item

RESULTS

Appearance

Colorless

Hydrazine Hydrate(N2H4 H2O)/%

80.16

Hydrazine(N2H4)/%

51.30

Nonvolatile Matters/%

0.01

Iron(Fe)/% 0.0005
Heavy Metal(Pb)/% <0.0005
Sulfate(SO4 )/% <0.0005
Chloride(Cl)/%

<0.003

 

Air & Water Reactions

Soluble in water. Slowly releases hydrogen chloride (USCG, 1999).

Fire Hazard

Special Hazards of Combustion Products: Toxic and irritating ammonia and hydrogen chloride gases may form in fire.
Behavior in Fire: May volatilize and condense on cool surfaces. (USCG, 1999)

Health Hazard

Inhalation of fumes irritates respiratory passages. Ingestion irritates mouth and stomach. Fumes are irritating to eyes. Contact with skin may cause irritation. (USCG, 1999)

Reactivity Profile

Acidic salts, such as AMMONIUM CHLORIDE, are generally soluble in water. The resulting solutions contain moderate concentrations of hydrogen ions and have pH's of less than 7.0. They react as acids to neutralize bases. These neutralizations generate heat, but less or far less than is generated by neutralization of inorganic acids, inorganic oxoacids, and carboxylic acid. They usually do not react as either oxidizing agents or reducing agents but such behavior is not impossible. Many of these compounds catalyze organic reactions.

Sodium sulfate anhydrous

 

ammonium-chloride-500x500

 

 

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