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Global Denitrification Catalyst For Steel Market Research Report 2028

07-05-2023 07:37 PM CET | Industry, Real Estate & Construction

Press release from: Valuates Reports

Global Denitrification Catalyst For Steel Market Research

The original flue gas temperature in the iron and steel industry is low, generally at 120-150°C; the SO2 concentration is high, and the SO2 concentration in the flue gas is generally 1000-1500 mg/m3, and some can reach 3000-5000 mg/m3; the moisture content is high, which can reach 10% to 16%; Dust is highly viscous under high humidity and high sulfur conditions, which can easily cause catalyst blockage; the dust composition is complex, containing various alkali/alkaline earth metal components such as K2O, Na2O, and ZnO. The denitrification catalyst in the iron and steel industry meets the denitrification performance at low temperature, and needs to have high anti-alkali, high anti-sulfur and other anti-poisoning capabilities.

The global Denitrification Catalyst For Steel Industry market is projected to reach US$ million by 2028 from an estimated US$ million in 2022, at a CAGR of % during 2023 and 2028.

The major global companies of Denitrification Catalyst For Steel Industry include Johnson Matthey, Nippon Shokubai, Topsoe, Hitachi Zosen Corporation, JGC C&C, Fujian Longking, Anhui Yuanchen Environmental Protection Science&technology, Nanning Elaiter Environmental Technologies and Beihai Kaite Chemical Packing, etc. In 2021, the world's top three vendors accounted for approximately % of the revenue.

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The denitrification catalyst for the steel market refers to the industry involved in the production and supply of catalysts used in the denitrification process within the steel manufacturing industry. Denitrification catalysts are designed to remove nitrogen oxides (NOx) from the exhaust gases generated during steel production.

Steel manufacturing processes, such as ironmaking and steelmaking, often involve high-temperature operations that result in the release of nitrogen oxides, which are harmful pollutants and contribute to air pollution. Denitrification catalysts play a crucial role in reducing the emission of NOx gases, thereby helping steel plants meet environmental regulations and improve air quality.

Denitrification catalysts typically utilize selective catalytic reduction (SCR) technology. In this process, the catalyst facilitates the reaction between nitrogen oxides and a reducing agent, typically ammonia or urea, converting the NOx gases into harmless nitrogen and water vapor. The catalyst provides a surface where the chemical reactions can occur efficiently and at lower temperatures.

The denitrification catalysts used in the steel industry are specifically designed to withstand the harsh conditions of steelmaking processes, including high temperatures, corrosive gases, and dust particles. They are typically made from materials such as vanadium oxide, titanium oxide, or zeolites, which exhibit high catalytic activity and durability under these conditions.

The market for denitrification catalysts in the steel industry is driven by environmental regulations and the increasing focus on sustainable and responsible manufacturing practices. Steel producers are under pressure to reduce emissions and comply with stringent air quality standards. Denitrification catalysts offer an effective solution for NOx reduction, allowing steel plants to minimize their environmental footprint.

Key players in the denitrification catalyst for the steel market provide a range of catalyst products tailored to the specific needs of steel manufacturers. These companies focus on continuous research and development to enhance the performance and longevity of their catalysts, enabling efficient and cost-effective denitrification solutions.

Denitrification Catalyst For Steel Industry segment by Type
• Honeycomb Catalyst
• Plate Catalyst
• Others

Denitrification Catalyst For Steel Industry segment by Application
• Small and Medium Steel Plants
• Large Steel Plant

BY REGION
• North America
• Europe
• Asia-Pacific
• Latin America
• Middle East & Africa

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