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稀磷酸加蒸汽爆破杨木产生的抑制剂对生长的影响

Effects of Inhibitors Generated by Dilute Phosphoric Acid Plus Steam-Exploded Poplar on Growth.

作者信息

Wang Yanan, Zhan Peng, Shao Lishu, Zhang Lin, Qing Yan

机构信息

School of Materials Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, China.

Hunan International Joint Laboratory of Woody Biomass Conversion, Central South University of Forestry and Technology, Changsha 410004, China.

出版信息

Microorganisms. 2022 Jul 19;10(7):1456. doi: 10.3390/microorganisms10071456.

Abstract

The pretreatment of lignocellulosic biomass is important for efficient bioethanol conversion, but causes undesirable by-products that inhibit microbial growth, conversely affecting the bioconversion efficiency. In this study, the main inhibitors derived from dilute phosphoric acid plus steam-exploded poplar wood were identified as 0.22 g/L furfural, 3.63 g/L acetic acid, 0.08 g/L syringaldehyde, etc., indicating the green nature and low toxicity of the pretreatment process. The effects of the three typical inhibitors (furfural, acetic acid, and syringaldehyde) on 1517RM growth were analyzed and shown to prolong the lag phase of microbial growth to different degrees. In all the inhibitor groups, the ergosterol secretion was boosted, indicating low cell membrane fluidity and robustness of the strain to an adverse environment. The cell electronegativity and morphology of 1517RM also changed under different growth conditions, which was helpful for monitoring the physicochemical properties of cells. Furfural, acetic acid, and syringaldehyde had a synergistic effect on each other, providing an important reference to improving the subsequent ethanol fermentation process.

摘要

木质纤维素生物质的预处理对于高效生物乙醇转化很重要,但会产生抑制微生物生长的不良副产物,进而影响生物转化效率。在本研究中,稀磷酸加蒸汽爆破杨木产生的主要抑制剂被鉴定为0.22 g/L糠醛、3.63 g/L乙酸、0.08 g/L紫丁香醛等,表明预处理过程具有绿色环保和低毒性的特点。分析了三种典型抑制剂(糠醛、乙酸和紫丁香醛)对1517RM生长的影响,结果表明它们会不同程度地延长微生物生长的延迟期。在所有抑制剂组中,麦角固醇分泌增加,表明细胞膜流动性低且菌株对不利环境具有耐受性。在不同生长条件下,1517RM的细胞负电性和形态也发生了变化,这有助于监测细胞的物理化学性质。糠醛、乙酸和紫丁香醛之间存在协同作用,为改进后续乙醇发酵过程提供了重要参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c604/9318740/f9ec3119c514/microorganisms-10-01456-g001.jpg

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