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Sulfuric acid 98%
Sulfuric acid 98%
Sulfuric acid 98%
Sulfuric acid 98%
Sulfuric acid 98%
Sulfuric acid 98%
Sulfuric acid 98%
Sulfuric acid 98%

Sulfuric acid 98%

Price 125.0 INR/ Liter

MOQ : 1000 Liters

Sulfuric acid 98% Specification

  • Structural Formula
  • H2SO2
  • Molecular Weight
  • 98.079 Grams (g)
  • HS Code
  • 2807
  • Solubility
  • 100%
  • Density
  • 1.98 Gram per litre (g/L)
  • Form
  • Liquid
  • Purity
  • 98%
  • Melting Point
  • 10.31
  • Molecular Formula
  • H2SO4
  • Classification
  • Inorganic Chemicals
  • Chemical Name
  • Sulfuric Acid 98% Pure
  • Grade
  • Reagent Grade
  • Standard
  • YES
  • Usage
  • Industrial and Lab use only
  • Main Material
  • Sulfuric Acid
  • Application
  • Textile Industry, Nuclear, Paper, Oil Industry, Industrial, food, Toothpastes, Plastic, Fertilizer, Rubber, Pharmaceutical, Water Treatment, Paints, Printing Industry, Explosive, Lubricants, Metal, medicine
  • Non Toxic
  • No
 
 

About Sulfuric acid 98%

Sulphuric acid ((H_{2}SO_{4})) is a highly corrosive, dense, colorless, and odorless mineral acid, often called the "King of Chemicals" due to its extensive industrial use. It is a strong acid and powerful dehydrating/oxidizing agent, vital for producing fertilizers, lead-acid batteries, metal processing, and petroleum refining.

Versatile Industrial Applications

Sulfuric Acid 98% is notable for its versatility, serving essential functions in a host of sectors from pharmaceuticals to fertilizers. Its potency and purity ensure optimal reaction efficiency in processes such as chemical synthesis, refining, and pH regulation. Industries benefit from its role in manufacturing plastics, paper, detergents, and even in water treatment solutions.


High Purity for Laboratory and Research Use

This reagent grade acid meets stringent purity standards, making it suitable for precise laboratory experiments and advanced research. Its consistency and high solubility allow for accurate dilution and dependable use in analytical chemistry, titrations, and as a drying or dehydrating agent in labs worldwide.

FAQ's of Sulfuric acid 98%:


Q: How is Sulfuric Acid 98% typically used in industrial processes?

A: Sulfuric Acid 98% is widely used for manufacturing fertilizers, refining oil, processing metals, producing plastics, and synthesizing chemicals. Its high reactivity and purity make it an essential reagent in a variety of processes such as dehydration, catalysis, and pH control.

Q: What industries benefit most from using Sulfuric Acid 98%?

A: A broad range of industries utilize Sulfuric Acid 98%, including the textile, nuclear, paper, oil, pharmaceutical, food, plastic, rubber, printing, explosives, lubricants, fertilizer, metal, water treatment, and paint industries. Its application ensures efficiency and quality in production processes.

Q: Where should Sulfuric Acid 98% be stored for safety?

A: Sulfuric Acid 98% must be stored in corrosion-resistant containers, away from direct sunlight, heat, and incompatible materials such as organic compounds or metals. It should be located in designated chemical storage areas with proper ventilation and clear access for handling emergencies.

Q: What are the key benefits of using reagent grade Sulfuric Acid 98%?

A: The main benefits of using reagent grade Sulfuric Acid 98% include its high purity for critical reactions, complete solubility for easy integration into solutions, predictable performance in manufacturing, and compliance with industrial standards, making it ideal for both lab and industrial applications.

Q: When should Sulfuric Acid 98% be handled with extra precaution?

A: Extra precaution should be taken whenever handling, transferring, or mixing Sulfuric Acid 98%, as it is highly corrosive. Always use appropriate personal protective equipment (PPE) like gloves, goggles, and chemical-resistant clothing, and operate in well-ventilated or controlled environments.

Q: What is the process for diluting Sulfuric Acid 98% safely?

A: To dilute Sulfuric Acid 98%, always add the acid slowly to water (never the reverse), to minimize the risk of exothermic splattering or boiling. This process should be conducted with proper PPE and under controlled laboratory or industrial settings to ensure safety.

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