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评估暴露于沼气系统中的胶凝材料上微生物的增殖情况。

Evaluation of microbial proliferation on cementitious materials exposed to biogas systems.

机构信息

LMDC, Université de Toulouse, UPS, Toulouse, France.

LGC, Université de Toulouse, CNRS, INPT, UPS, Toulouse, France.

出版信息

Environ Technol. 2020 Aug;41(19):2439-2449. doi: 10.1080/09593330.2019.1567610. Epub 2019 Jan 20.

Abstract

Understanding the interactions between biofilm and cementitious materials in biogas production systems is an essential step toward the development of durable concrete for this expanding sector. Although the action of the liquid phase medium on the material has been the subject of several research studies, the possible impact of the material's properties on biofilm formation and composition has been little investigated, if at all. The aim of this paper is to evaluate the characteristics of the biofilm according to the surface properties of the materials. Four cementitious materials with different chemical and mineralogical compositions, and various topological surface characteristics (pastes of CEM I, CEM III/C and CAC, and CEM I paste treated with oxalic acid) were exposed to the liquid phase of a fermenting biowaste for 10 weeks. The steps of biofilm formation were observed using SEM. Even though all the cementitious material surfaces were intensely colonized at the end of the experiments, the establishment of the biofilm seems to have been delayed on the oxalate-treated CEM I and on CAC coupons. Roughness and surface pH effects were not of prime importance for the biofilm development. The analysis of bacterial population diversity using 16S rDNA sequencing showed a less diversified microbial flora in the biofilm than in the reaction medium.

摘要

了解沼气生产系统中生物膜与胶凝材料的相互作用,是为这个不断发展的领域开发耐用混凝土的重要一步。尽管液相介质对材料的作用已经成为了几个研究课题的主题,但材料特性对生物膜形成和组成的可能影响,如果有的话,也很少被研究。本文旨在根据材料的表面特性来评估生物膜的特性。四种具有不同化学和矿物组成的胶凝材料,以及各种拓扑表面特性(CEM I、CEM III/C 和 CAC 的浆体,以及用草酸处理过的 CEM I 浆体)被暴露于发酵生物废物的液相中 10 周。使用 SEM 观察生物膜形成的步骤。尽管在实验结束时,所有胶凝材料表面都被强烈地定植,但在经过草酸处理的 CEM I 和 CAC 试片上,生物膜的建立似乎被延迟了。粗糙度和表面 pH 值的影响对生物膜的发展并不是至关重要的。使用 16S rDNA 测序对细菌种群多样性的分析表明,生物膜中的微生物群落比反应介质中的微生物群落多样性要低。

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