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马尾藻和稻草生物质微波共热解过程中硫的释放行为和固硫机理。

Sulfur release behavior and sulfur fixation mechanism during biomass microwave co-pyrolysis of Ascophyllum and rice straw.

机构信息

College of Ocean Engineering and Energy, Guangdong Ocean University, Zhanjiang 524088, China; Guangdong Provincial Key Laboratory of Intelligent Equipment for South China Sea Marine Ranching, Guangdong Ocean University, Zhanjiang 524088, China.

College of Ocean Engineering and Energy, Guangdong Ocean University, Zhanjiang 524088, China.

出版信息

Bioresour Technol. 2024 Sep;407:131073. doi: 10.1016/j.biortech.2024.131073. Epub 2024 Jul 10.

Abstract

Co-pyrolysis with low-sulfur biomass is expected to improve the yield and quality of bio-fuels, without the usage of calcium-based desulfurizer. Sulfur transformation during microwave fluidized-bed co-pyrolysis between terrestrial and marine biomass (Ascophyllum, AS; Rice straw, RS) was investigated. Sulfur release was promoted during biomass co-pyrolysis, but it was inhibited during pyrolysis between AS and low-sulfur char. Thermal cracking of biomass was promoted during co-pyrolysis between biomass, accelerating the combination of H atoms and -SH radicals. Introduction of low-sulfur bio-char (CA) inhibited the generation of bio-char and the release of sulfur. Released sulfur was captured by -OH/C = C functional groups on bio-char through dehydration reactions/addition reactions, forming mercaptan in bio-char. Furthermore, introduction of microwave and bio-char promoted the cyclization and aromatization reaction, converting mercaptan to thiophene and improving the thermal stability of solid sulfur, and thus increasing in-situ sulfur fixation rate.

摘要

与低硫生物质共热解有望提高生物燃料的产量和质量,而无需使用钙基脱硫剂。本文研究了陆地和海洋生物质(裙带菜、AS;稻秸、RS)在微波流化床共热解过程中的硫转化。生物质共热解过程中促进了硫的释放,但在 AS 和低硫焦之间的热解过程中抑制了硫的释放。生物质共热解过程中促进了生物质的热裂解,加速了 H 原子和 -SH 自由基的结合。引入低硫生物焦(CA)抑制了生物焦的生成和硫的释放。释放的硫通过脱水反应/加成反应被生物焦上的 -OH/C=C 官能团捕获,在生物焦中形成硫醇。此外,微波和生物焦的引入促进了环化和芳构化反应,将硫醇转化为噻吩,提高了固体硫的热稳定性,从而提高了原位固硫率。

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