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Effect of temperature and simulated coal gas composition on tar production during pyrolysis of a subbituminous coal

机译:温度和模拟煤气成分对次烟煤热解过程中焦油生成的影响

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摘要

Simulated coal gas (SCG) was used as pyrolysis atmosphere to improve tar yield and quality of coal pyrolysis, and the effect of SCG compositions including H-2, CH4, CO, CO2 on pyrolysis products was also investigated. The results show that tar yield of coal pyrolysis is obviously enhanced under SCG atmosphere compared with that under N-2. The components in SCG apparently influence the distribution of pyrolysis products and play a different role in coal pyrolysis. The highest tar yield (16.3 wt%) is obtained under SCG atmosphere at 650 degrees C. H-2 reduces the char yield by suppressing secondary reaction; coexistence of H-2 and CO2 in pyrolysis atmosphere increases water yield significantly via reverse water gas shift reaction, but the addition of CO inhibits this reaction. The analysis of tar by simulated distillation and GC/MS showed that the addition of CH4 increases the contents of benzenes and phenols; the introduction of H-2 mainly increases naphthalenes; while the introduction of CO inhibits the formation of phenols. Lower aromaticity of tar under SCG than that under N-2 indicates that small molecular radicals (i.e. center dot H, center dot CHx radicals) generated from SCG participate in the stabilization of free radicals from coal pyrolysis, resulting in high tar yield and quality.
机译:以模拟煤气(SCG)作为热解气氛,提高焦油产率和煤热解质量,并研究了H-2,CH4,CO,CO2等SCG成分对热解产物的影响。结果表明,与N-2相比,SCG气氛下煤热解焦油收率明显提高。 SCG中的成分显然会影响热解产物的分布,并在煤热解中发挥不同的作用。在650℃的SCG气氛下获得最高的焦油收率(16.3重量%)。H-2通过抑制二次反应而降低了焦炭收率。 H-2和CO2在热解气氛中的共存可通过逆向水煤气变换反应显着提高水产率,但添加CO会抑制该反应。通过模拟蒸馏和GC / MS对焦油的分析表明,CH4的添加会增加苯和酚的含量; H-2的引入主要增加萘。而一氧化碳的引入会抑制酚的形成。 SCG条件下焦油的芳香度低于N-2条件下的焦油芳香度,表明SCG产生的小分子自由基(即中心点H,中心点CHx自由基)参与了煤热解过程中自由基的稳定作用,从而提高了焦油收率和质量。

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