* Application of compounds

* Application of compounds * The hydrogen system is a traditional and widely used method for the analysis of cations. It is based on the significant differences in the solubility of the various ions and divides common cations into five groups. Due to the high toxicity of H2S gas and inconvenient storage, the aqueous solution of acetamide (CH3CSNH2, TAA) is generally used as a precipitant.

In acidic solution, TAA hydrolyzes to produce H2S, which can replace H2S: CH3CSNH2 + H + 2H2O ⇌ CH3COOH + NH4 + H2S ↑ Hydrolysis in ammonia solution to generate HS, instead of (NH4)2S: CH3CSNH2 + 2NH3 ⇌ CH3-C (- NH2) = NH + NH4 + HS is hydrolyzed in an alkaline solution to form S, which can be used as an alternative to Na2S: Other uses of CH3CSNH2 + 3OH ⇌ CH3COO + NH3 + H2O + S * are:

Dimethyl molybdenum is a catalyst in organic synthesis. Due to the poisoning of common hydrogenation catalysts by the presence of organic compounds such as thiophene, di-molybdenum can be used to catalyze the hydrogenation of organic substances. * Cadmium can be used to make photovoltaic cells. * Lead is used to make infrared sensors. Multi-calcium, polyoxime, and poly-ammonium are fungicides and insecticides. Double carbon is used industrially as a solvent. In addition, carbon dioxide is also used to produce carbon tetrachloride. In organic chemistry, carbon dioxide is inserted into the -C(=S)-S- group. * Zinc and cadmium chloride are used to make phosphors, and high purity cadmium oxide is a good semiconductor. Three phosphorus tetraphosphates are used to make matches and pyrotechnics. Ten times of tetraphosphorus is used to make insecticides, lubricant additives and flotation agents. *Sodium is widely used in the manufacture of dyestuffs, production of organic medicines and pulps. * Calcium and Xenon are used to make luminescent paints.

Product introduction
HHCMS-220 Carbon Molecular Sieve
The HHCMS-220 is a new nonpolar adsorbent designed to extract nitrogen-rich gas from air. It is suitable for separating nitrogen from air. It has a high adsorption capacity for oxygen and can separate nitrogen from air.
The most notable features of the carbon molecular sieve are high gas-producing efficiency and low energy consumption, especially for the preparation of nitrogen with a purity of less than 99.5% to 99.9%.

It is widely used in large air separation nitrogen equipment, and its application fields include coal mine, ship, oil storage and transportation.


Project parameters

Project parameters
The diameter of:1.0-1.3   1.3-1.5
Packing density:≥660kg/m³
The intensity of particle:≥95
Compressive strength abrasion:≤1%
The moisture content:≤0.5%
Standard packing:20Kg/barrel. 40Kg/barrel. 130Kg/barrel


The adsorption time of test condition was 58s with an average pressure of 1-2s

Adsorption pressure

Nitrogen purity (%)

 Yield (Nm3/ h.t.)

Nitrogen recovery rate

 

 

 

0.8MPa

99.99

80

23

99.9

150

30

99.5

220

36

99

310

42

98

370

45

97

450

47

96

520

50

95

580

55

 

 

0.6MPa

99.99

64

24

99.9

110

32

99.5

180

37

99

245

43

98

300

46

97

360

48

96

410

52

95

465

56


Pay attention to
1. The nitrogen production equipment can reduce the adsorption temperature to better show its excellent nitrogen production performance under conditions;
2. Pay attention to low temperature drying and seal preservation during storage;

Molecular Sieves Hhcms-220

Molecular Sieves Hhcms-220,Molecular Sieve Dehydration,Molecular Sieve Activation,Hhcms Molecular Sieve

Zhejiang Changxing Haihua Chemical Co.,Ltd. , http://www.zjcxhhcms.com

Posted on