载体表面官能团分布对热自养甲烷杆菌粘附的影响。

IF 2.3 4区 生物学 Q3 MICROBIOLOGY Archaea-An International Microbiological Journal Pub Date : 2020-01-22 eCollection Date: 2020-01-01 DOI:10.1155/2020/9432803
Masaki Umetsu, Takaaki Sunouchi, Yasuhiro Fukuda, Hideyuki Takahashi, Chika Tada
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引用次数: 4

摘要

在厌氧废水处理系统中,各种载体用于产甲烷古菌的高密度滞留。虽然载体材料和微生物的物理化学性质会影响产甲烷古菌的粘附,但其潜在机制的细节仍不清楚。采用7种化学表面改性方法对碳毡进行表面改性,研究了具有代表性的嗜热产氢甲烷菌——热自养甲烷菌(Methanothermobacter thermautotrophicus)的粘附性能。评价了载体表面性能与甲烷菌粘附的关系。在NaOH、HCl、H2SO4和Na2HPO4处理的碳毡中,热自养m.c htrophicus的粘附力显著提高,是对照的2.6倍。处理后碳毡的水接触角较低,但载体表面接触角与甲烷菌粘附不相关。另一方面,载体表面的-COOH: -OH的比值为1:0 .65。这样的比例没有观察到处理载体的甲烷菌粘附没有改善。因此,在热自养芽孢杆菌的粘附过程中,官能团的丰度以及疏水性等物理表面性质都很重要。氢营养型产甲烷菌在厌氧消化启动过程中参与活性甲烷化。此外,这些产甲烷古菌还具有产甲烷阴极催化剂的作用。因此,通过控制热自养芽胞杆菌等产氢甲烷菌的粘附,将大大提高厌氧消化性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Functional Group Distribution of the Carrier Surface Influences Adhesion of Methanothermobacter thermautotrophicus.

Various support carriers are used for high-density retention of methanogenic archaea in anaerobic wastewater treatment systems. Although the physicochemical properties of carrier materials and microorganisms influence the adhesion of methanogenic archaea, details about the underlying mechanism remain poorly characterized. We applied seven types of chemical surface modifications to carbon felts to clarify the adhesion properties of Methanothermobacter thermautotrophicus, a representative thermophilic hydrogenotrophic methanogen. The relationship between carrier surface properties and methanogen adhesion was evaluated. M. thermautotrophicus adhesion was significantly increased up to 2.6 times in comparison with control on carbon felts treated with NaOH, HCl, H2SO4, or Na2HPO4. Treated carbon felts showed a lower water contact angle, but no correlation between the carrier surface contact angle and methanogen adhesion was observed. On the other hand, at the surface of the carrier that showed improved adhesion of methanogens, the ratio of -COOH : -OH was 1 : 0.65. Such a ratio was not observed with treated carriers for which methanogen adhesion was not improved. Therefore, in the adhesion of M. thermautotrophicus, the functional group abundance was important as well as physical surface properties such as the hydrophobicity. Hydrogenotrophic methanogens are involved in active methanation during the startup of anaerobic digestion. Additionally, these methanogenic archaea function as methanogenic cathode catalysts. Therefore, anaerobic digestion performance will greatly improve by controlling the adhesion of hydrogenotrophic methanogens such as M. thermautotrophicus.

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来源期刊
CiteScore
7.50
自引率
0.00%
发文量
1
审稿时长
>12 weeks
期刊介绍: Archaea is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles dealing with all aspects of archaea, including environmental adaptation, enzymology, genetics and genomics, metabolism, molecular biology, molecular ecology, phylogeny, and ultrastructure. Bioinformatics studies and biotechnological implications of archaea will be considered. Published since 2002, Archaea provides a unique venue for exchanging information about these extraordinary prokaryotes.
期刊最新文献
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