富钙/富铁焚烧灰对疫木热解的催化活性

Yanjun Hu, Zhenxing Luo, Long Jiao, Caimeng Yu, Jian Li, Qianqian Guo, Jian Song
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引用次数: 0

摘要

流行木材引起的松材线虫病的传播对环境造成了巨大的挑战,迫切需要开发有效的处理方法;而富Ca/ fe污泥灰能改善生物质的热解性能。因此,本文重点研究了富Ca/ fe污泥灰对疫木热解机理的影响。富钙污泥灰的存在延长了疫木的热解温度窗,加剧了其挥发性组分的裂解,延长了其反应时间。同时,富钙污泥使热解活化能降低到152.39 kJ/mol。富铁污泥灰在热解初期表现出降低能垒的能力。同时,富钙污泥灰分加速了疫病木的脱水反应,导致热解油中酸类和酮类含量分别增加21.02%和30.69%。富铁污泥灰分使油中芳香族化合物显著增加14.52%,醇类化合物显著减少19.14%。此外,富钙污泥灰在高温下加速了脂质有机物的分解,使热解炭具有更多的不饱和键。本研究为疫病木安全有效的热分解奠定了理论基础,从而提高疫病木在林业中的利用率。图形抽象
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The catalytic activity of Ca/Fe-rich incineration ash in the pyrolysis of epidemic wood

The spread of pine nematode disease caused by epidemic wood poses a great challenge to the environment, and there is an urgent need to develop effective processing methods; however, Ca/Fe-rich sludge ash can improve the pyrolysis properties of biomass. Therefore, this paper focuses on the pyrolysis mechanism of epidemic wood with the addition of Ca/Fe-rich sludge ash. The presence of Ca-rich sludge ash was found to extend the pyrolytic temperature window of epidemic wood, intensify the cracking of its volatile constituents, and extend its reaction duration. At the same time, the Ca-rich sludge reduces the pyrolysis activation energy to 152.39 kJ/mol. The Fe-rich sludge ash demonstrated the capacity to lower the energy barriers during the initial phase of pyrolysis. Concurrently, the Ca-rich sludge ash accelerated the dehydration reaction of the epidemic wood, leading to 21.02% and 30.69% increases in the contents of acids and ketones in the pyrolytic oil, respectively. The Fe-rich sludge ash contributed to a notable 14.52% increase in aromatic compounds in the oil and a 19.14% decrease in alcoholic compounds. Additionally, the Ca-rich sludge ash accelerated the decomposition of lipid organic matter at elevated temperatures, enriching the pyrolytic char with more unsaturated bonds. This research lays a theoretical foundation for the safe and efficacious thermal decomposition of epidemic wood, thereby enhancing its utilization within the forestry industry.

Graphical abstract

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