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微波和塑料含量对生物质与塑料共热解过程中硫迁移的影响。

Effects of microwave and plastic content on the sulfur migration during co-pyrolysis of biomass and plastic.

作者信息

Sun Jiaman, Luo Juan, Ma Rui, Lin Junhao, Fang Lin

机构信息

College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, 518060, China.

School of Environment, Harbin Institute of Technology, Harbin, 150090, China.

出版信息

Chemosphere. 2023 Feb;314:137680. doi: 10.1016/j.chemosphere.2022.137680. Epub 2022 Dec 27.

Abstract

In order to reduce the risks of sulfur-containing contaminants present in biofuels, the effects of microwave and content of hydrogen donor on the cracking of C-S bonds and the migration of sulfur were studied by co-pyrolysis of biomass and plastic. The synergistic mechanism of microwave and hydrogen donor was explored from the perspective of deducing the evolution of sulfur-containing compounds based on microwave thermogravimetric analysis. By combining temperature-weight curves, it was found that microwaves and hydrogen radicals promoted the cracking of sulfur-containing compounds and increased the mass loss of biomass during pyrolysis. The mixing ratio of hydrogen donor (plastic) was the key parameter resulting in the removal of sulfur from oil. By adjusting the mixing ratio, the yield of co-pyrolyzed oil was three times higher than that of cow dung pyrolysis alone and the relative removal rate of sulfur reached 73.67%. The relative content of sulfur in the oil was reduced by 73.77% due to the escape of sulfur-containing gases (HS, COS and CHSH) and the formation of sulfate crystals in the char. Microwave selectively heated sulfur-containing organics and hydrogen radicals stimulated the breaking of C-S bonds, which improved the cracking efficiency of the oil. This breaking will provide a theoretical and technological reference for the environmentally friendly treatment of biomass and biofuels.

摘要

为降低生物燃料中含硫污染物的风险,通过生物质与塑料的共热解,研究了微波和供氢体含量对C-S键裂解及硫迁移的影响。基于微波热重分析推断含硫化合物的演变,从这个角度探索了微波与供氢体的协同机理。结合温度-质量曲线发现,微波和氢自由基促进了含硫化合物的裂解,增加了热解过程中生物质的质量损失。供氢体(塑料)的混合比例是实现油中硫脱除的关键参数。通过调整混合比例,共热解油的产率比单独牛粪热解高出三倍,硫的相对脱除率达到73.67%。由于含硫气体(HS、COS和CHSH)逸出以及焦炭中形成硫酸盐晶体,油中硫的相对含量降低了73.77%。微波选择性加热含硫有机物,氢自由基促使C-S键断裂,提高了油的裂解效率。这种断裂将为生物质和生物燃料的环境友好处理提供理论和技术参考。

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