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从木材水热处理废水中产生生物电能:在 MFC 进料混合废水中增强发电。

Bioelectricity production from wood hydrothermal-treatment wastewater: Enhanced power generation in MFC-fed mixed wastewaters.

机构信息

Warsaw University of Life Sciences, Faculty of Wood Technology, 159 Nowoursynowska St, Warsaw, Poland.

Warsaw University of Life Sciences, Faculty of Wood Technology, 159 Nowoursynowska St, Warsaw, Poland.

出版信息

Sci Total Environ. 2018 Sep 1;634:586-594. doi: 10.1016/j.scitotenv.2018.04.002. Epub 2018 Apr 7.

Abstract

Electrogenic microorganisms are the heart of microbial fuel cell (MFC) systems that enable the conversion of waste into bioelectricity. Bacteria able to generate current, found in various natural and anthropogenic environments, need simple substrates such as acetate or glucose. Complex substrates are utilized by bacterial consortia made up of strains that exhibit a wide range of enzymatic and metabolic activity that determines the type of substrate they are able to degrade. The characteristics of the environment that a bacterial consortium develops in strongly affect the consortium's species composition and electrogenic potential. This study presents the first attempt to use industrial raw wastewater from the hydrothermal treatment of wood (WHTW) as a substrate and a source of bacterial consortia for MFC, so that such wastewater could simultaneously be treated and produce bioelectricity. The power generated in MFCs fed with WHTW was enhanced remarkably from 70 to 360mW/m when municipal wastewater was introduced into the reactor. An analysis of the bacterial composition of these two types of wastewater revealed that the WHTW was dominated by the genera Thermoanaerobacterium and Paenibacillus while in the biofilm developed in the anode the main genera were Hydrogenophilus and Anaerobaculum. It has been shown for the first time that highly polluted wood industry wastewater may be effectively treated in MFC systems and the use of appropriate bacterial consortium may result in enhancing power generation accompanying wastewater treatment.

摘要

产电微生物是微生物燃料电池(MFC)系统的核心,能够将废物转化为生物电能。在各种自然和人为环境中发现的能够产生电流的细菌,需要简单的基质,如乙酸盐或葡萄糖。由具有广泛酶和代谢活性的菌株组成的细菌群落利用复杂的基质,这些活性决定了它们能够降解的基质类型。细菌群落所处环境的特点强烈影响着群落的物种组成和产电潜力。本研究首次尝试将木材水热处理(WHTW)产生的工业废水用作 MFC 的基质和细菌群落的来源,以便同时处理废水并产生生物电能。当向反应器中引入城市废水时,MFC 中 WHTW 的产电量从 70mW/m 显著提高到 360mW/m。对这两种类型废水的细菌组成分析表明,WHTW 以 Thermoanaerobacterium 和 Paenibacillus 属为主,而在阳极生物膜中,主要属为 Hydrogenophilus 和 Anaerobaculum。首次表明,高度污染的木材工业废水可以在 MFC 系统中得到有效处理,而使用适当的细菌群落可能会在处理废水的同时提高发电效率。

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