Soda Ash Light (99%) - Turkey

Soda Ash Light (99%) - Turkey

Origin
: Turkey
CAS Number
: 497-19-8
HS Code
: 2836.20.00
Basic Info
IUPAC Name
: disodium carbonate
Molecular Formula
: Na2CO3
Molecular Weight (g/mol)
: 105.9900
Synonyms & Trade Names
: Soda ash light; Sodium carbonate; Washing soda; E500ii
Purity / Assay (%)
: 99.2% min
Physical Form
: Solid
Concentration
: Pure substance
Appearance / Color
: White to off-white solid
Odor
: Odorless
Melting Point (°C)
: 851.0000
Density (g/cm³)
: 2.5320
Solubility in Water
: Freely soluble (21.6g/100mL at 20°C)
Signal Word
: Warning
GHS Hazard Class
: Skin irritant; Eye irritant; Respiratory irritant
H-Statements
: H302|H319|H335
P-Statements
: P260|P261|P264|P270|P271|P280|P305+P351+P338
REACH Status
: Registered
Drug Precursor Status
: Non-precursor
Storage Class (GHS)
: 10
Storage Conditions
: Cool, dry; sealed; avoid moisture
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Technical Document
Download MSDS

Brief Overview

There are three main grades of soda ash: dense soda ash, light soda ash, and washing soda. Light soda ash, also referred to as anhydrous sodium carbonate (Na2CO3), is a white, odorless granular powder that easily dissolves in water, forming a highly alkaline solution. It exhibits hygroscopic properties, absorbing moisture from the atmosphere and causing clumping. While its primary form is the monohydrate, it can also exist as decahydrate and heptahydrate.
Spontaneous formation of soda ash light occurs from sodium deposits, which undergo extensive geological processes, including igneous rock erosion, sodium sediment transport, and chemical reactions. During weathering, sodium deposits are initially released from igneous rocks, washed away, flowed downstream, and accumulated in basins. Exposure to carbon dioxide is the catalyst for soda ash production.

Manufacturing Process

Solvay Technique

In 1861, Belgian chemist Ernest Solvay introduced the Solvay technique, a highly efficient means of converting sodium chloride into soda ash light. This method entails the interaction of ammonia with sodium chloride, utilizing calcium carbonate as a catalyst. The resulting product is sodium bicarbonate, which undergoes a heating process to be transformed into soda ash light.