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苯甲酸对不同变质程度煤生物气生成及产物有机组分荧光光谱特征的影响

Effect of Benzoic Acid on Biogenic Gas Production with Different Rank Coals and the Fluorescence Spectra Characteristic of Produced Organic Products.

作者信息

Wei Guoqin, Song Dangyu, He Huan, Su Xianbo, Xia Daping, Li Yunbo, Qiao Yu

机构信息

Institute of Resource and Environment, Henan Polytechnic University, Jiaozuo 454000, China.

State Key Laboratory of Coal and CBM Co-Mining, Shanxi Jinneng Group Co., Ltd., Jincheng 048000, China.

出版信息

ACS Omega. 2025 Apr 15;10(16):16169-16183. doi: 10.1021/acsomega.4c09883. eCollection 2025 Apr 29.

Abstract

Biogas production was conducted using samples from different coal beds and laboratory-domesticated microbes to investigate the effect of the addition of benzoic acid on biogas production. Furthermore, the response properties of produced organic substances at different gas production stages were analyzed with ultraviolet-visible (UV-Vis) spectroscopy and three-dimensional fluorescence spectroscopy. The results showed that adding benzoic acid significantly enhanced the microbial gas production with different rank coals. Obvious spectroscopic differences were observed in the gas production effects and liquid-phase composition across varying rank coals. The UV-vis spectroscopy findings indicated that soluble organic matter gradually increased in molecular weight during gas production, leading to increased aromatization and an increase in aromatic ring substituents with hydrogen and oxygen functional groups. Fluorescence spectroscopy revealed changes in protein-like substances during gas production, indicating the involvement of humic acid-like substances from coal in microbial gas production. The results of the fluorescence index supported the biological origin of humic acid during the gas production process. Benzoic acid augmentation promoted biogas production in different coal grades, and distinct differences were observed in the organic spectral properties during gas production, suggesting that the metabolic pathways of the same microbes acting on different coal grades vary.

摘要

利用来自不同煤层的样品和实验室驯化的微生物进行沼气生产,以研究添加苯甲酸对沼气生产的影响。此外,采用紫外可见(UV-Vis)光谱和三维荧光光谱分析了不同产气阶段产生的有机物质的响应特性。结果表明,添加苯甲酸显著提高了不同变质程度煤的微生物产气率。在不同变质程度煤的产气效果和液相组成中观察到明显的光谱差异。UV-vis光谱结果表明,产气过程中可溶性有机物分子量逐渐增加,导致芳构化增加,含氢和氧官能团的芳环取代基增加。荧光光谱显示产气过程中类蛋白质物质发生变化,表明煤中类腐殖酸物质参与了微生物产气过程。荧光指数结果支持了产气过程中腐殖酸的生物来源。苯甲酸的添加促进了不同煤级的沼气生产,产气过程中有机光谱特性存在明显差异,表明同一微生物作用于不同煤级的代谢途径不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c4d/12044434/c984f75cf6fe/ao4c09883_0001.jpg

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