反硝化
熔渣(焊接)
水泥
煤
废物管理
分解
煤气化
氮气
一氧化二氮
化学
水泥窑
环境科学
窑
环境工程
冶金
材料科学
有机化学
工程类
作者
Yanling Gan,Suping Cui,Wenjing Dai,Pingli Huang,Boge Zhang,Haibao Huang
标识
DOI:10.1061/joeedu.eeeng-7459
摘要
Nitrogen oxide emissions have attracted much attention due to their impact on the atmospheric environment and human health. Combined with NO removal in the cement production process, coal gasification slag was used to prepare denitrification materials to decompose NO in cement kilns without the addition of reducing agents. Denitrification materials were synthesized by a chemical precipitation method at different pH. The denitrification mechanism was proposed in this study. The results indicated that the denitrification material prepared at a pH of 7 exhibited the best denitrification performance. The NO decomposition rate first increased and then decreased below 400°C, and then increased as the temperature increased, reaching over 97% above 700°C. In the low-temperature range, Fe(II) was assumed to be active species, and the absorbed NO on the Fe(II) site obtained an electron, which promoted the decomposition of NO. In the high-temperature range, besides the active element Fe, the residual carbon in the coal gasification slag was prone to oxidation-reduction reactions, reducing nitric oxide to nitrogen. A new waste-to-value concept is introduced in this study, which promotes green technology for sustainable development.
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