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无需添加外部电子供体,由热水解污泥生产中链脂肪酸。

Medium-chain fatty acid production from thermal hydrolysed sludge without external electron donor supplementation.

作者信息

Zhang Liang, Wang Xiuping, Chen Yun, Zhang Baorui, Xu Hui, Li Chenchen, Zhou Yan

机构信息

Guangdong Provincial Key Lab of Environmental Pollution Control and Remediation Technology, School of Environmental Science and Engineering, Sun Yat-Sen University, Guangzhou, China.

Advanced Environmental Biotechnology Centre, Nanyang Environment and Water Research Institute, Nanyang Technological University, Singapore 637141, Singapore.

出版信息

Bioresour Technol. 2023 Apr;374:128805. doi: 10.1016/j.biortech.2023.128805. Epub 2023 Feb 26.

Abstract

In this study, medium-chain fatty acid (MCFA) generation from mixed sludge (including primary sludge and waste activated sludge) was investigated without additional electron donors (EDs). 0.5 g COD/L of MCFAs was produced and the in situ generated ethanol could serve as the EDs during the anaerobic fermentation of mixed sludge without thermal hydrolysis process (THP) pretreatment. THP increased the MCFA production by approximately 128% in the anaerobic fermentation. During 102 days of operation, the fermentation of THP pre-treated mixed sludge stably generated 2.9 g COD/L MCFAs. The self-generated EDs could not maximize MCFA production, and external addition of ethanol improved MCFA yield. Caproiciproducens was the dominant chain-elongating bacteria. PICRUST2 revealed that both fatty acid biosynthesis and reverse β-oxidation pathways could participate in MCFA synthesis, and ethanol addition could enhance the contribution of the reverse β-oxidation pathway. Future studies should focus on the improvement of MCFA production from THP-assisted sludge fermentation.

摘要

在本研究中,研究了在不添加额外电子供体(EDs)的情况下,混合污泥(包括初沉污泥和剩余活性污泥)中中链脂肪酸(MCFA)的产生情况。在不进行热水解预处理(THP)的情况下,混合污泥厌氧发酵过程中产生了0.5 g COD/L的MCFAs,原位产生的乙醇可作为电子供体。THP使厌氧发酵过程中的MCFA产量提高了约128%。在102天的运行过程中,经THP预处理的混合污泥发酵稳定产生2.9 g COD/L的MCFAs。自身产生的电子供体无法使MCFA产量最大化,添加外源乙醇可提高MCFA产率。产己酸菌是主要的链延长细菌。PICRUST2分析表明,脂肪酸生物合成途径和逆向β-氧化途径均参与了MCFA的合成,添加乙醇可增强逆向β-氧化途径的贡献。未来的研究应聚焦于提高THP辅助污泥发酵中MCFA的产量。

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