o-aminoazotoluene

Ortho-aminoazotoluene structural formula

Structural formula

Business number 02CC
Molecular formula C14H15N3
Molecular weight 255.29
label

4-amino-2‘,3-dimethylazobenzene,

Toluene azoaminotoluene,

2,3′-dimethyl-4′-aminoazobenzene,

o-Aminoazotoluene,

Solvent yellow 3,

2,3-Dimethyl-4′-aminoazobenzene,

Fast garnet GBS base,

2-Methyl-4-[(2-methylpentyl)azo]benzenamine,

Solvent yellow35-(o-Tolylazo)-2-aminnotoluene

Numbering system

CAS number:97-56-3

MDL number:MFCD00007733

EINECS number:202-591-2

RTECS number:XU8800000

BRN number:6506005

PubChem number:24847463

Physical property data

  1. Appearance: yellow-brown powder.
  2. Density (g/mL, 20?): Undetermined
  3. Relative vapor density (g/mL, air=1): Undetermined
  4. Melting point ( ºC): 101?102
  5. Boiling point (ºC, normal pressure): Undetermined
  6. Boiling point (ºC, KPa): Undetermined
  7. Refractive index: Undetermined Determined
  8. Flash point (ºC): Not determined
  9. Specific optical rotation (º): Not determined
  10. Autoignition point or ignition temperature (ºC): Not determined Determined
  11. Vapor pressure (mmHg, ºC): Undetermined
  12. Saturation vapor pressure (kPa, ºC): Undetermined
  13. Heat of combustion (KJ/mol) : Undetermined
  14. Critical temperature (ºC): Undetermined
  15. Critical pressure (KPa): Undetermined
  16. Oil-water (octanol/water) partition coefficient Log value: Undetermined
  17. Upper explosion limit (%, V/V): Undetermined
  18. Lower explosion limit (%, V/V): Undetermined
  19. Solubility: insoluble in water, soluble in ethanol, chloroform, and ether.

Toxicological data

1. Acute toxicity: Rat oral LD5O: 1500 mg/kg N02

Ecological data

This substance is harmful to the environment. Do not let this substance enter the environment.

Molecular structure data

1. Molar refractive index: 69.61

2. Molar volume (cm3/mol): 205.4

3. Isotonic specific volume (90.2K ): 516.9

4. Surface tension (dyne/cm): 40.0

5. Polarizability (10-24cm3): 27.59

Compute chemical data

1. Reference value for hydrophobic parameter calculation (XlogP): 3.7

2. Number of hydrogen bond donors: 1

3. Number of hydrogen bond acceptors: 3

4. Number of rotatable chemical bonds: 2

5. Number of tautomers: 2

6. Topological molecule polar surface area 50.7

7. Number of heavy atoms: 17

8. Surface charge: 0

9. Complexity: 264

10. Number of isotope atoms: 0

11. Determine the number of atomic stereocenters??: 0

12. Uncertain number of stereocenters of atoms: 0

13. Determined number of stereocenters of chemical bonds: 0

14. Uncertain Number of stereocenters of chemical bonds: 0

15. Number of covalent bond units: 1

Properties and stability

1. Avoid contact with strong oxidants.

2. May cause cancer, avoid exposure.

Storage method

1. Store in a cool, ventilated warehouse. Keep away from fire and heat sources. Protect from direct sunlight. The packaging is sealed. should be kept away from oxidizer, do not store together. Equipped with the appropriate variety and quantity of fire equipment. Suitable materials should be available in the storage area to contain spills.

Synthesis method

None yet

Purpose

1. Used as dyes and pharmaceutical intermediates.

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4-Aminomethylbenzoic acid

4-aminomethylbenzoic acid structural formula

Structural formula

Business number 0184
Molecular formula C8H9NO2
Molecular weight 151.17
label

p-aminomethylbenzoic acid

Numbering system

CAS number:56-91-7

MDL number:MFCD00010203

EINECS number:200-297-9

RTECS number:None

BRN number:1100606

PubChem number:24846170

Physical property data

1. Character: Hydrate It is white scaly or crystalline powder. Odorless, slightly bitter taste.


2. Density (g/mL,25/4?) ? Undetermined


3. Relative vapor density (g/mL,AIR=1): Undetermined


4. Melting point (ºC): 340-350


5. Boiling point (ºC,Normal pressure): Undetermined


6. Boiling point (ºC,5.2kPa): Undetermined


7. Refractive index: not OK


8. Flash point (ºC): Undetermined


9. Specific optical rotation ( º): Undetermined


10. Spontaneous ignition point or ignition Combustion temperature (ºC): not OK


11. Vapor Pressure (kPa,25ºC): Undetermined


12. Saturated vapor pressure ( kPa,60ºC): Undetermined


13. Heat of combustion (KJ/mol): Undetermined


14. Critical temperature (ºC): Undetermined


15. Critical Pressure (KPa): Undetermined


16. Oil and water (octanol /Water) partition coefficient pair Value: Undetermined


17. Explosion upper limit (%,V/V): not OK


18. Lower explosion limit (%,V/V): Undetermined


19. Solubility: soluble In boiling water, slightly soluble in water, almost insoluble in ethanol, benzene and chloroform.

Toxicological data

None yet

Ecological data

None yet

Molecular structure data

5. Molecular property data:


1. Molar refractive index: 41.63


2. Molar volume (m3/mol??121.9


3. isotonic specific volume (90.2K):335.2


4. Surface tension (dyne/cm??57.1


5. Polarizability?10-24cm3):16.50

Compute chemical data

1. Reference value for hydrophobic parameter calculation (XlogP): None

2. Number of hydrogen bond donors: 2

3. Number of hydrogen bond acceptors: 3

4. Number of rotatable chemical bonds: 2

5. Number of tautomers: none

6. Topological molecule polar surface area 63.3

7. Number of heavy atoms: 11

8. Surface charge: 0

9. Complexity: 139

10. Number of isotope atoms: 0

11. Determine the number of atomic stereocenters: 0

12. Uncertain number of atomic stereocenters: 0

13. Determine the number of chemical bond stereocenters: 0

14. Number of uncertain chemical bond stereocenters: 0

15. Number of covalent bond units: 1

Properties and stability

None yet

Storage method

This product should be kept sealed.

Synthesis method

There are three processes: (1) is derived from the catalytic hydrogenation of p-cyanobenzoic acid; (2) aminated from p-chloromethylbenzoic acid And get; (3) is derived from the amination of p-bromomethylbenzoic acid.

Purpose

Organic synthesis intermediates. Hemostatic drugs and fibrinolytic inhibitors are suitable for various diseases caused by excessive fibrinolytic enzyme activity.

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calcium carbide

Calcium carbide structural formula

Structural formula

Business number 01J6
Molecular formula CaC2
Molecular weight 64.10
label

Carbide Level 4,

calcium carbide,

Calcium acetylide,

Acetylenogen,

other

Numbering system

CAS number:75-20-7

MDL number:MFCD00010905

EINECS number:200-848-3

RTECS number:None

BRN number:3909011

PubChem number:24856368

Physical property data

1. Characteristics: Colorless crystals, industrial products are gray-black lumps, and the cross-section is purple or gray. [1]

2. Melting point (?): 2300[2]

3. Boiling point (?): decomposition [3]

4. Relative density (water = 1): 2.22[4]

5. Octanol/ Water distribution coefficient: -0.30[5]

6. Ignition temperature (?): >325[6]

7.Solubility: No data yet

Toxicological data

1. Acute toxicity No data available

2. Irritation No data available

Ecological data

1. Ecotoxicity No data available

2. Biodegradability No data available

3 .Non-biodegradability No information available

4. Other harmful effects[7] This substance is harmful to the environment and should be specially Pay attention to water pollution.

Molecular structure data

None yet

Compute chemical data

1. Reference value for hydrophobic parameter calculation (XlogP): None

2. Number of hydrogen bond donors: 0

3. Number of hydrogen bond acceptors: 5

4. Number of rotatable chemical bonds: 8

5. Number of tautomers: none

6. Topological molecule polar surface area 61.8

7. Number of heavy atoms: 18

8. Surface charge: 0

9. Complexity: 271

10. Number of isotope atoms: 0

11. Determine the number of atomic stereocenters: 0

12. Uncertain number of atomic stereocenters: 1

13. Determine the number of chemical bond stereocenters: 0

14. Number of uncertain chemical bond stereocenters: 0

15. Number of covalent bond units: 1

Properties and stability

1. Stability[8] Stable

2. Incompatible substances[9] Water, alcohols, acids

3. Conditions to avoid contact[10] Humid air

4. Hazards of aggregation[11] No aggregation

Storage method

Storage Precautions[12] Store in a cool, dry and well-ventilated special warehouse with a temperature not exceeding 32°C and a relative humidity not exceeding 75%. Keep away from fire and heat sources. The packaging must be sealed and protected from moisture. It should be stored separately from acids, alcohols, etc. and avoid mixed storage. The storage area should be equipped with appropriate? materials to contain spills.

Synthesis method

1. The electric furnace reduction method is currently the only method for industrial production of calcium carbide. This method was industrialized in the United States as early as 1895. The production involves high-temperature operations, a lot of dust, and high power consumption. Improvements in the process can improve operating conditions, reduce heat loss, and increase carbon monoxide recovery and utilization. Closed and large-scale Calcium carbide furnace. Crush the coke and lime, mix them evenly according to the proportion, add them to a closed calcium carbide furnace, heat them with electricity, and perform a reduction reaction at 2000-2200°C to generate molten calcium carbide, which flows from the furnace into a calcium carbide pot for cooling, crushing, and packaging. kg/ton of coke (84% fixed carbon) 550 limestone (CaO92%) 840 electrode paste 30 electricity 3200 (degree/ton)

2. Calcium carbide can be directly produced from the two elements of carbon and metallic calcium in an electric arc furnace Synthetically, or by reacting calcium oxide and carbon in an electric arc furnace at a high temperature of 2000°C. The purity of the products produced by these two methods is not high. The purity of calcium carbide produced by heating calcium cyanamide CaCN2 or calcium cyanamide and carbon in high vacuum can reach 99%.

The alumina boat is filled with pure calcium cyanamide or a mixture of calcium cyanamide and acetylene carbon black (or sugar charcoal), and the boat is placed in a ground-mouthed high-aluminum vessel with one end closed. To make porcelain tubes, this tube is connected to a vacuum pump and heated with a molybdenum wire furnace.

Heating CaCN2 or the mixture of CaCN2 and C must be carried out in two steps: the first step is to heat to 1100~1150? for 2~3 hours in high vacuum to fully decompose CaCN2 and remove as much N2 as possible. At this time, care should be taken to control the temperature not to exceed 1150°C to avoid the formation of a CaCN2?CaC2 eutectic at 1170°C. In the second step, continue to raise the temperature to 1350°C for 1 hour, remove the remaining N2, and obtain pure white calcium carbide. Purity reaches 99%.

Attached is the preparation method of calcium cyanamide. Pure HCN is dried by CaCl2 and P2O5 and condensed in a low-temperature receiver. The collection amount should be equal to 3 times the calculated amount. Put CaCO3 in a porcelain boat, place the porcelain boat in a porcelain tube, and heat the porcelain tube to 700~850°C. Then warm the HCN receiver to 18°C. N2 gas mixed with a small amount of NH3 is used to carry HCN through CaCO3, and pure white CaCN2 can be obtained after 3 hours, with a purity of 99.4%.

Purpose

1. About 60% of calcium carbide is used in chemical production, and the remaining 40% is used in metal welding and cutting. A series of chemical products can be produced using calcium carbide as raw materials, such as PVC resin, polyvinyl alcohol, vinyl acetate, chloroprene rubber, butanol, octanol, tricyanethylene, tetracyanoethylene, acetaldehyde, acetylene carbon black, lime nitrogen, etc. . The largest consumption is the production of PVC resin, accounting for 60% of the consumption of calcium carbide for chemical industry. Calcium carbide powder is irritating and can damage the skin and respiratory system.

2. It is an important basic chemical raw material, mainly used to produce acetylene gas and calcium cyanamide. Also used in organic synthesis, etc. [13]

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