Triethylamine hydrochloride
Triethylamine hydrochloride

Triethylamine hydrochloride

Price 10000.0 USD ($)/ Ton

MOQ : 1 Ton

Triethylamine hydrochloride Specification

  • Appearance
  • White solid
  • Molecular Formula
  • C6H15NHCl
  • Shape
  • Crystalline
  • Purity
  • 99%
  • Grade
  • Industrial / Laboratory
  • Poisonous
  • No, but may cause irritation
  • Solubility
  • Soluble in water, alcohol, and chloroform
  • Smell
  • Faint amine-like odor
  • EINECS No
  • 209-062-5
  • Application
  • Intermediate for chemical synthesis, pharmaceuticals, catalysts
  • HS Code
  • 29211990
  • CAS No
  • 554-68-7
  • Molecular Weight
  • 137.65 g/mol
  • Product Type
  • Chemical
  • Storage
  • Keep container tightly closed; store in a dry, cool, well-ventilated area away from moisture
  • Ingredients
  • Triethylamine and Hydrochloric acid
  • Usage
  • Used in organic synthesis, as a phase-transfer catalyst, and in pharmaceutical manufacturing
  • Melting Point
  • 261 C (decomposes)
  • Physical Form
  • Powder
  • Shelf Life
  • 12-24 months if properly stored
  • Properties
  • White crystalline powder, hygroscopic, stable under recommended storage conditions
  • Density
  • 1.06 Gram per cubic centimeter(g/cm3)
  • Structural Formula
  • (C2H5)3NHCl
  • Packaging
  • 25 kg / 50 kg fiber drum or as required
  • EC Number
  • 209-062-5
  • Incompatibilities
  • Strong oxidizing agents, strong acids
  • Transport Information
  • Non-hazardous for air, sea, and road transport
  • Flash Point
  • Not applicable (solid)
  • Boiling Point (Triethylamine)
  • 89 C (parent compound)
  • Stability
  • Stable under normal temperatures and pressures
  • Hazard Class
  • Not classified as a hazardous substance
 
 

About Triethylamine hydrochloride

Product Description

Triethylamine hydrochloride 554-68-7
1.Triethylamine hydrochloride
2.554-68-7
3.99.9%
4.25kg/drum or 25kg/bag

5. Synonyms: TRIETHYLAMINE HCL; HYDROCHLORIDE;amine,triethyl,hydrochloride;Ethanamine,N,N-diethyl-,hydrochloride;N,N-Diethylethanaminehydrochloride;n,n-diethyl-ethanaminhydrochloride;triethylaminemonohydrochloride

6. MP:261 C (dec.)(lit.)
7.Density:1.07
8.Solubility:1440 g/L (20C)
9.Water Solubility:1440 g/L (20 oC)
10.Sensitive:Hygroscopic
11.Merck:9666
12.BRN:3906409
13.CAS DataBase Reference:554-68-7(CAS DataBase Reference)

Introduction for Triethylamine hydrochloride 554-68-7

Name

Synonyms

CAS Registry Number

Molecular Formula

Molecular Weight

EINECS

Triethylamine HCL

Triethylamine Hydrochloride

554-68-7

C6H16ClN

137.65

209-067-2

Properties & Specification

Appearance

Physical properties

Application

White powder

Density: 1.07

Melting Point: 261C (dec.)(lit.)

Boiling Point: 90.5C at 760 mmHg

Flash Point: 39C

Water Solubility: 1440 g/L (20C)

Solubility: 1440 g/L (20C)

a, Used in preparation of organic synthesis and fourth amine compound.

b, Used as the base material of quatemary ammonium salt, pesticide, dyestuff and other organic synthesis.

Packing & Storage

Packing

Delivery

Storage

25kg/fiber drum or bag or according to per customer's requirement

Common chemical for Land, Sea and Air delivery

Stored in cool, dry and ventilation place; Away from fire and heat;

Handle with care; No breakage



Exceptional Chemical Stability

Triethylamine hydrochloride is highly stable under recommended storage conditions and normal temperatures and pressures. Its shelf life ranges from 12 to 24 months if kept in a tightly sealed container in a cool, dry, and well-ventilated area, making it a reliable choice for industrial and laboratory applications.


Versatile Applications in Industry

The compound serves as a crucial intermediate in organic synthesis and pharmaceutical manufacturing, and is popularly used as a phase-transfer catalyst. Its excellent solubility in water, alcohol, and chloroform broadens its usage, offering benefit to chemical manufacturers, researchers, and pharmaceutical producers.


Safe Handling and Transportation

Triethylamine hydrochloride is not classified as poisonous or hazardous. It is non-hazardous for air, sea, and road transport according to global regulations. For optimal safety, avoid exposure to strong oxidizing agents and acids, and handle with basic personal protective equipment to prevent irritation.

FAQ's of Triethylamine hydrochloride:


Q: How should Triethylamine hydrochloride be stored to maintain its stability?

A: To preserve its stability and quality, Triethylamine hydrochloride should be stored in a tightly closed container, in a cool, dry, and well-ventilated space, away from moisture and incompatible substances such as strong oxidizing agents and strong acids.

Q: What are the primary industrial and laboratory uses of Triethylamine hydrochloride?

A: This compound is chiefly used as an intermediate in chemical syntheses, in the pharmaceutical sector, and as a phase-transfer catalyst. Its solubility in water and organic solvents also allows for versatile use in research and manufacturing.

Q: When does Triethylamine hydrochloride decompose, and what is its melting point?

A: The compound possesses a melting point of 261C, at which temperature it decomposes. Proper storage conditions help maintain its solid, crystalline structure for its entire shelf life.

Q: Where is Triethylamine hydrochloride commonly utilized?

A: Triethylamine hydrochloride finds widespread use in India and around the world, notably by chemical manufacturers, pharmaceutical companies, and research institutions, owing to its high purity and effectiveness as an intermediate or catalyst.

Q: What is the packaging process and standard packaging sizes for Triethylamine hydrochloride?

A: This product is generally packaged in robust fiber drums of 25 kg or 50 kg capacity, although customized packaging can be arranged according to specific requirements. This ensures both safe transport and protection from moisture.

Q: How does the use of Triethylamine hydrochloride benefit chemical synthesis operations?

A: Its high purity, reliable stability, and strong solubility properties make it an attractive choice for precise and efficient chemical syntheses, enhancing yield and process efficiency in various industrial and laboratory settings.

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