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N-(2-HYDROXY ETHYL) MORPHOLINE
N-(2-HYDROXY ETHYL) MORPHOLINE

N-(2-HYDROXY ETHYL) MORPHOLINE

N-(2-HYDROXY ETHYL) MORPHOLINE Specification

  • Grade
  • Industrial Grade
  • Smell
  • Characteristic
  • Water Solubility
  • Completely miscible
  • Shelf Life
  • 2 Years
  • Moisture (%)
  • 0.1%
  • Storage
  • Store in a cool, dry, well-ventilated area in tightly closed containers
  • Structural Formula
  • C6H13NO2
  • Loss on Drying
  • 0.2%
  • Heavy Metal (%)
  • 0.001%
  • Molecular Formula
  • C6H13NO2
  • EINECS No
  • 218-668-2
  • Molecular Weight
  • 131.18 g/mol
  • Assay
  • 99%
  • HS Code
  • 2921.19.90
  • Ph Level
  • ~10 (1% aqueous solution)
  • Chemical Name
  • N-(2-Hydroxy Ethyl) Morpholine
  • CAS No
  • 2212-32-0
  • Usage
  • Used as buffer, intermediate, corrosion inhibitor, and reagent in chemical synthesis
  • Purity(%)
  • 99%
  • Appearance
  • Clear colorless to pale yellow liquid
  • Application
  • Buffer agent, corrosion inhibitor, chemical intermediate
 
 

About N-(2-HYDROXY ETHYL) MORPHOLINE

N-(2-HYDROXY ETHYL) MORPHOLINE

CAS No.: 622-40-2

Synonyms : HEM, 2-Morpholinoethanol,N-(2-Hydroxyethyl)morpholine, 4-Morpholineethanol, 4-(2-Hydroxyethyl)morpholin, 2-(4-Morpholinyl)ethanol, [2-(4-Morpholino)ethanol], -Morpholinoethanol

Mol. Formula : C6H13NO2

Molecular Weight : 131.2

Assay : Min. 99% by GC

Distillation Range : 221oc 228 D.C.

Water Content : 0.5 Max % by wt

Colour : 50 APHA max

Freezing Point : 1-2 D.C.

Refractive Index, n20D : 1.4760

Density at 25oC : 1.080 g/ml

Applications : Pharmaceuticals, Textile Auxiliaries


Features & Specifications

N-(2-Hydroxy Ethyl) Morpholine boasts a molecular formula of C6H13NO2 and a molecular weight of 131.18 g/mol. It is distinguished by a refractive index of 1.468 and a viscosity of 5.4 cP at 25 C. Its pH level (~10 for a 1% solution) and complete water miscibility make it an ideal buffer and reagent in various chemical processes.


Applications & Benefits

This versatile compound serves multiple roles, including functioning as a buffer agent, corrosion inhibitor, and intermediate in synthesis. It is valued for its stability and high assay (99%), making it favored by manufacturers, distributors, and traders in the chemical industry across India. Its effective buffering capacity and reliable corrosion protection offer operational advantages.


Safe Storage & Handling

Ensure N-(2-Hydroxy Ethyl) Morpholine is stored in a tightly closed container, in a cool, dry, well-ventilated area. Maintaining recommended conditions preserves the compounds quality and extends its shelf life to 2 years. Always refer to safety documents and handle with appropriate protective equipment.

FAQs of N-(2-HYDROXY ETHYL) MORPHOLINE:


Q: How should N-(2-Hydroxy Ethyl) Morpholine be stored to maintain stability?

A: Store the product in a tightly closed container within a cool, dry, well-ventilated area. This ensures stability under recommended conditions and helps preserve its quality for up to two years.

Q: What are the primary industrial applications of N-(2-Hydroxy Ethyl) Morpholine?

A: N-(2-Hydroxy Ethyl) Morpholine is mainly used as a buffer agent, corrosion inhibitor, and intermediate in chemical synthesis. It is also utilized by manufacturers, exporters, importers, and other industry stakeholders.

Q: When is N-(2-Hydroxy Ethyl) Morpholine preferred as a buffer in chemical processes?

A: It is preferred for processes that require a stable pH around 10 in aqueous solutions, thanks to its excellent buffering capacity and complete water miscibility.

Q: Where can N-(2-Hydroxy Ethyl) Morpholine be sourced in India?

A: It is available through various channels, including distributors, suppliers, traders, wholesalers, retailers, and manufacturers across India.

Q: What is the benefit of using N-(2-Hydroxy Ethyl) Morpholine as a corrosion inhibitor?

A: Utilizing this compound as a corrosion inhibitor prolongs equipment life and enhances the safety of systems by protecting surfaces from chemical degradation.

Q: How is N-(2-Hydroxy Ethyl) Morpholine typically handled in laboratories and industry?

A: It should be handled with standard safety practices: using gloves, eye protection, and working within a ventilated space to avoid contact or inhalation, aligning with its characteristic odor.

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