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Home > Encyclopedia > Chromic acid (H2Cr2O7), barium salt (1:1), dihydrate

Chromic acid (H2Cr2O7), barium salt (1:1), dihydrate

Chromic acid (H2Cr2O7), barium salt (1:1), dihydrate structure

Chromic acid (H2Cr2O7), barium salt (1:1), dihydrate 

structure
  • CAS No:

    10031-16-0

  • Formula:

    Ba.Cr2H2O7.2H2O

  • Chemical Name:

    Chromic acid (H2Cr2O7), barium salt (1:1), dihydrate

  • Synonyms:

    Chromic acid (H2Cr2O7),barium salt (1:1),dihydrate;Dichromic acid (H2Cr2O7),barium salt (1:1),dihydrate;Barium dichromate dihydrate

Description

Chromic acid (chemical formula H2Cr2O7) is a crystalline needle-shaped substance that ranges in color from brown to red, with distinct physical properties. Its appearance is a striking reddish-brown, and its shape is needle-like, which sets it apart in the field of chemistry. In the field of chemistry, it holds a pivotal position and is widely used in various subfields, such as environmental monitoring, wastewater treatment, and industrial production. This compound plays a crucial role in ceramic processes, not only is it a key factor in improving the quality of ceramic products, but it also significantly improves the characteristics of ceramic products. Whether it is improving the hardness, strength, or color and texture of ceramics, chromic acid can play an important role.

Chromic acid (H2Cr2O7), barium salt (1:1), dihydrate Basic Attributes

353.32

389.771790

236-761-2

Characteristics

124

decomposes [CRC10]

decomposed in H2O [KIR78]

Chromic acid (H2Cr2O7), barium salt (1:1), dihydrate Use and Manufacturing

Chromic acid has a unique chemical property, occupying a significant position in many industrial fields, especially in the ceramics industry, where it is a key raw material for the preparation of chromate salts, playing an irreplaceable role in the final quality of ceramics. In the ceramic production process, the application of chromic acid salt for adjusting and optimizing the color of ceramic products has a significant effect, which can make the ceramic surface smoother and brighter, thereby improving the appearance of the product. In addition, the addition of chromate salt can significantly enhance the wear resistance and corrosion resistance of ceramic materials, allowing ceramic products to better resist external damage during use, thereby extending their service life and reducing maintenance costs. In the chemical industry, the role of chromic acid is no less significant. In addition to playing an important role in ceramic production, it has extensive applications in many other fields. For example, in the field of environmental protection, chromic acid can be used to oxidize and degrade organic pollutants to purify water; in the field of materials science, it can be used to prepare high-performance composite materials to enhance the mechanical properties of materials; in the field of medicine, it may also serve as an important catalyst to participate in various biochemical reactions. Chromic acid has had a profound impact on the development of modern industry due to its unique chemical properties and widespread applications in various fields. In particular, it has played a decisive role in the ceramics industry, improving the quality and performance of ceramic products, extending their service life, and enhancing their aesthetic appeal.

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