Cyanuric acid 108-8...

Cyanuric acid 108-80-5

Cyanuric acid 108-80-5

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1 Kilogram

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  • Min.Order :1 Kilogram
  • Purity: 99% min
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Keywords

108-80-5 Cyanuric acid C3H3N3O3

Quick Details

  • Appearance:white powder
  • Application:Cyanuric acid 108-80-5
  • PackAge:25kg plastic drum
  • ProductionCapacity:1|Metric Ton|Day
  • Storage:room temperature
  • Transportation:by air

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Details:

Cyanuric acid Basic information
Application Methods of production
Product Name: Cyanuric acid
Synonyms: TRICARBIMIDE;TRICYANIC ACID;trihydroxy-1,3,5-triazine;Trihydroxycyanidine;,4,6-Trihydroxy-S-triazine;,4,6-Trioxohexahydro-1,3,5-triazine;[1,3,5]triazinane-2,4,6-trione;[1,3,5]Triazintrion
CAS: 108-80-5
MF: C3H3N3O3
MW: 129.07
EINECS: 211-620-8
Product Categories: INORGANIC & ORGANIC CHEMICALS;Aromatics;Heterocycles;water treatment
Mol File: 108-80-5.mol
Cyanuric acid Structure
 
Cyanuric acid Chemical Properties
mp  360 °C
bp  74 °C
density  1.56
storage temp.  0-6°C
Water Solubility  0.3 g/100mL (25 ºC)
Merck  14,2698
BRN  126982
Stability: Stable. Incompatible with strong oxidizing agents.
CAS DataBase Reference 108-80-5(CAS DataBase Reference)
NIST Chemistry Reference 1,3,5-Triazine-2,4,6(1H,3H,5H)-trione(108-80-5)
EPA Substance Registry System 1,3,5-Triazine-2, 4,6(1H,3H,5H)-trione(108-80-5)
 
Safety Information
Hazard Codes  Xi
Risk Statements  36-36/37/38
Safety Statements  26-37/39
RIDADR  UN 3389 6.1/PG 1
WGK Germany  3
RTECS  XZ1800000
10
HS Code  29336980
Hazardous Substances Data 108-80-5(Hazardous Substances Data)
MSDS Information
Provider Language
Tricarbimide English
SigmaAldrich English
ACROS English
ALFA English
 
Cyanuric acid Usage And Synthesis
Application 1.Used as ultraviolet absorbent for plastic film.
2.Used as chemical reagent, also used in organic synthesis.
3.Mainly used in the production of new bleaching agent, disinfectant, water treatment agent and resin, paint and metal cyanide corrosion inhibitor, etc.
4.Used for the synthesis of chloro derivatives, trichloroisocyanuric acid, dichloro isocyano uric acid sodium or potassium; used for synthesizing cyanuric acid - formaldehyde resin, epoxy resin, antioxidant, coatings, adhesives, pesticides, herbicides, metal cyanide inhibitor and polymer modifier; used in the manufacture of halotrizinol.
Methods of production It is obtained by the polymerization of urea. Mixed urea and ammonium chloride, heating and melting, stirring and temperature to 210℃, solution thickened, warming up to 230℃, melting gradually solidified, stir fry evenly, continue to heat up to 250℃, thermal insulation for 15 min, cold to 100℃, adding a small amount of water immersion and down to room temperature in water soaking crushed, filtered solids. The water and hydrochloric acid are added into the solid, stirring and heating to 110 ℃, insulation for 3 h, supplementing with hydrochloric acid and water, cooling to 30 ℃, and washing to neutral, filter, filter cake with water washing and drying to obtain the product. The product purity is ≥95%, consumption of urea 1200kg per ton of product.
Chemical Properties white powder
Usage Diagnostic determination of Melamine and related compounds in kidney tissue.
General Description Crystals.
Air & Water Reactions Soluble in hot water [Hawley].
Reactivity Profile An amide and amine. Organic amides/imides react with azo and diazo compounds to generate toxic gases. Flammable gases are formed by the reaction of organic amides/imides with strong reducing agents. Amides are very weak bases (weaker than water). Imides are less basic yet and in fact react with strong bases to form salts. That is, they can react as acids. Mixing amides with dehydrating agents such as P2O5 or SOCl2 generates the corresponding nitrile. The combustion of these compounds generate mixed oxides of nitrogen (NOx)

 

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