国产精品久久久久久精品贰摆|亚洲精品成人无码中文毛片不卡|久久国产精品日本波多野结衣|国产日韩欧美在线不卡高清视频

CISDI 3R blast furnace showcases marked reductions in carbon dioxide emissions and costs

Date:2024/9/29 Source: CISDI

Striking environmental, economic and social benefits are resulting from the roll out of two world-first 3R Carbon-Hydrogen blast furnaces at Zongheng Steel Fengnan Plant in China’s Hebei Province.

Achievements compared with China’s conventional blast furnaces of the same 2,300-cubic-metre volume:

           Solid fuel consumption reduced by 20 to 30kg per tonne of hot metal

           Mixed hydrogen and carbon monoxide gas replacement ratio ranges 0.50 to 0.57 kilogram per cubic metre in normal working conditions

           Carbon dioxide emissions during blast furnace production reduced by 5 to 10 per cent

           Smelting costs decreased by USD1.41 to 4.23 per tonne of hot metal.

These performance indicators were reached during the first year of operation.

The 3R Carbon-Hydrogen Reduction, Re-use and Recycle ironmaking tech lays a new pathway to economical and stable carbon emissions reduction at large blast furnace plants.

In July 2024, ground was broken on a project to create a further two Zongheng 3R C-H blast furnaces (at 2,000m3 level), and three more at a Jiangsu Province steel plant.

 

 

The world’s first 3R low-carbon blast furnace (2,000m3-level) demo at Zongheng Steel, Hebei, China

 

          Breakthroughs in theoretical study on carbon-hydrogen coupled intensified reducing

Long-term low-carbon ironmaking research has boosted CISDI’s theoretical foundation for intensifying the in-blast furnace reducing effect by coupling hydrogen and carbon monoxide.

Thanks to the team’s study on smelting basics and gas-solid flows and their massive analysis, simulation calculation and lab testing of iron oxide’s efficient reduction and low-carbon blast furnace operation, systematic C-H blast furnace ironmaking tech solutions have been formed.

These solutions define the most favourable hydrogen concentration, the optimal proportion between hydrogen-enriched and CO-enriched gases, and an expert gas blending and blowing method in the smelting process.

 

 

 

 

          Safe, reliable equipment and digital applications for stable and smooth low-carbon blast furnace operation

The CISDI 3R BF has been operating smoothly since its startup, thanks to its innovative tech applications and the methodological foundation of carbon-hydrogen coupled intensified reducing.

Achievements:

          Gas boosting and deep de-carbonisation

          Collaborative gas and coal powder injecting

          Smart regulation and control of furnace conditions

The gas decarbonisation system is demonstrating high standards of economy and efficiency. Removing carbon not only meets the recycled blowing requirement, but roots out mutual interference between carbon-recycling gas and the regulating of furnace conditions.

The innovative blowing and gas lance system relieves gas and coal powder’s interference in simultaneous combustion and enhances coal powder’s combustion efficiency.

It leads to stabler furnace conditions and safer blowing and injecting. The gas lance is designed to sustain safe and stable operation for a minimum of four months.

The 3R BF’s big data centre controls its entire operational data and is a basic platform for the development of an artificial intelligence-based multi-medium injection system.

Compared with conventional BFs with the same burden design, it operates more stably and is more resistant to fluctuations in raw materials and fuels.

 

 

          Recycling byproduct gas at a blast furnace – basic oxygen furnace integrated mill opens new horizons for low-carbon smelting

Based on the integrated mill’s gas balance calculation and its systematic analysis, CISDI proposes to progressively use gas - the integrated mill’s byproduct - as a reducing agent instead of a heating and burning medium. Its new role of replacing part of the solid carbon to be consumed by BF smelting reduces carbon from the source.

A new technological flow has been created for combined carbon and hydrogen recycling throughout blast furnace, coke oven and basic oxygen furnace processes. This is a steel sector first and takes the perspective of flow metallurgical engineering and five-flow theories (iron, mass, energy, emission and smart application flows).

This method has opened up a new paradigm for integrated mill low-carbon smelting, transforming carbon recycling at a single blast furnace procedure to a method which operates throughout process flows.

 


欧美性群另类交| 无码一区二区三区av免费蜜桃| 国产午夜影视大全免费观看| 国产人妻精品一区二区三区不卡 | 免费99精品国产自在在线| 免费国产黄网站在线观看视频| 久久亚洲av永久无码精品| 日韩精品人妻中文字幕| 精品久久亚洲中文无码| 亚洲精品无码久久久久久久| 韩国午夜理伦三级在线观看| 全球av集中精品导航福利| 亚洲欧美日韩中文久久| 久久精品熟女亚洲av麻豆| 成人免费一区二区三区视频软件| 人人妻人人添人人爽欧美一区 | 18成禁人视频免费| 无码国产精品一区二区免费16| 亚洲av色先锋资源电影网站| 日韩国产乱码中文字幕| 国产熟妇另类久久久久| 天堂av资源在线免费| 男人扒开添女人下部免费视频| 美女精品黄色淫秽片网站| 吃奶呻吟张开双腿做受在线播放| 国产精品二区一区二区aⅴ污介绍| 亚洲人成电影网站色www两男一女 肉体暴力强伦轩在线播放 | 人妻少妇精品中文字幕av蜜桃| 无码喷潮a片无码高潮| 人妻精品国产一区二区| 国产真实露脸乱子伦| 国产真人作爱免费视频道歉| 午夜福利视频极品国产83| 国产免费又色又爽粗视频| 国产一区二区三区高清免费视频| 国产极品美女到高潮| 国产成人精品一 二区| 高清国产精品人妻一区二区| 亚洲精品国产精品国自产| 亚洲av无码不卡| 97性无码区免费|