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    • Caustic soda flakes CAS 1310-73-2 Sodium hydroxide flakes (2)
    • Sodium hydroxide CAS 1310-73-2 NaOH, Caustic soda
    • Sodium hydroxide CAS 1310-73-2 NaOH, Caustic Soda Flake
    • Sodium Hydroxide Solution CAS 1310-73-2

    Sodium Hydroxide Caustic Soda CAS 1310-73-2

    Description

    • CAS: 1310-73-2
    • Synonyms: Caustic soda, Lye, Sodium hydrate
    • Einecs: 215-185-5
    • Molecular Formula: NaOH
    • Grade: Industrial / Food / Reagent Grade
    • Package: as required
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    Details

    Introduction

    Sodium hydroxide, commonly known as caustic soda or lye, is a white, translucent crystalline solid (commonly found in flake or pearl form). It is an extremely strong base with severe corrosiveness and intense hygroscopicity. It reacts with carbon dioxide in the air to form sodium carbonate. It dissolves in water, releasing massive amounts of heat. It undergoes saponification reactions with fats and vigorously neutralizes acids.

    Specification

    ItemSpecification
    AppearanceWhite pearls, flakes, or solid block
    Assay (Purity)≥ 99.0%
    Melting Point318 °C
    VolatilityNon-volatile
    Ash ContentHigh (Transforms to Na2CO3)
    SolubilityHighly soluble in water (exothermic), soluble in ethanol
    Thermal StabilityVery stable at high temperatures, boils at 1,388 °C

    Applications

    • Soap & Detergent Industry: Reacts with animal/vegetable fats (saponification) to produce soap and surfactants.
    • Paper & Textiles: Used in wood pulping to remove lignin; used in textiles for the mercerization of cotton to increase luster and dyeing properties.
    • Water Treatment & Metallurgy: Adjusts water pH; used in the Bayer process to extract alumina from bauxite ore.

    Storage Requirements

    Must be stored in a dry, ventilated warehouse. Keep containers absolutely sealed to prevent absorbing moisture (which causes clumping) and absorbing carbon dioxide (which causes deterioration). Strictly prohibit mixed storage or transport with acids, flammables, or amphoteric metals like aluminum or zinc.

    Handling and Precautions

    Extremely corrosive. Skin contact will cause severe chemical burns; eye contact may lead to blindness. Operators must wear acid/alkali-resistant work clothes, long rubber gloves, and a full face shield. When dissolving, slowly add the caustic flakes into the water with constant stirring. NEVER pour water into the solid alkali, to avoid boiling and explosive splattering.

    Formula & Function

    Traditional Handmade Soap: Olive Oil (70%) + Coconut Oil (30%) + Appropriate Sodium Hydroxide + Water.

    Function: Sodium hydroxide is the essential reactant for saponification. It chemically reacts with fats (triglycerides), breaking them down and recombining them into sodium fatty acids (the main cleansing agent in soap) and glycerol. True soap cannot be made without sodium hydroxide.

    Packaging

    fiber drum or carton box, lined with PE bag. Customized packaging available upon request.

    FAQ

    • Q: How to get more information about the product?
      A: You can contact us via email at info@zhpmchem.com or WhatsApp at +8618321309391 for more information about our products and company.
    • Q: Does the product meet our requirements regarding formulation, equipment, and processing?
      A: Yes, we will adjust the product formulation to your specific needs, ensuring it meets your processing requirements.
    • Q: Why do caustic soda flakes become wet and clump up when left in the air?
      A: Sodium hydroxide has extreme deliquescence; it rapidly absorbs moisture from the air to dissolve itself. Simultaneously, it absorbs carbon dioxide to form sodium carbonate, causing it to clump and deteriorate.
    • Q: What is the difference between an alkali burn and an acid burn?
      A: Alkali burns are often much more severe than acid burns because alkalis dissolve tissue proteins (saponifying fats), causing the corrosion to continually penetrate deeper into the skin. Thus, it requires prolonged rinsing with large amounts of water.
    • Q: Why can't aluminum containers be used to hold sodium hydroxide?
      A: Sodium hydroxide reacts violently with aluminum to form sodium aluminate and releases highly explosive hydrogen gas, while severely corroding the aluminum container.

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