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首页> 外文期刊>The Science of the Total Environment >Microbial recycling cells (MRCs): A new platform of microbial electrochemical technologies based on biocompatible materials, aimed at cycling carbon and nutrients in agro-food systems
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Microbial recycling cells (MRCs): A new platform of microbial electrochemical technologies based on biocompatible materials, aimed at cycling carbon and nutrients in agro-food systems

机译:微生物回收池(MRC):基于生物相容性材料的微生物电化学技术的新平台,旨在循环农业食品系统中的碳和营养

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摘要

This article reviews the mechanisms that drive nutrients and carbon sequestration from wastewaters by microbial electrochemical technologies (METs). In this framework, a new generation of METs is also presented (to be called microbial recycling cells, MRCs), based on 100%-recyclable materials (biomass-derived char coal, clay, terracotta, paper, ligno-cellulosic plant materials, etc.), which can act as bio-electrodes, separators and structural frames. In traditional METs architectures (based on technological materials such as carbon cloths, plastic panels, membranes, binders), inorganic salts precipitation and adsorption, as well as biofouling due to organic-matter deposition, are considered as main drawbacks that clog and hinder the systems over relatively short periods. In MRCs, these mechanisms should be maximized, instead of being avoided. In this perspective, both inorganic and organic forms of the main nutrients are sequestered from wastewater and deposited on METs modules. Once the systems become saturated, they can entirely be recycled as agricultural soil conditioners or as base for organic-mineral fertilizers. (c) 2018 Elsevier B.V. All rights reserved.
机译:本文回顾了通过微生物电化学技术(METs)驱动废水中养分和碳固存的机理。在此框架中,还提出了基于100%可回收材料(生物质衍生的炭,粘土,兵马俑,纸张,木质纤维素植物材料等)的新一代METs(称为微生物回收单元,MRC)。 。),可以用作生物电极,隔板和结构框架。在传统的METs体系结构(基于诸如碳纤维布,塑料板,膜,粘合剂等技术材料)中,无机盐的沉淀和吸附以及由于有机物沉积引起的生物污损被认为是堵塞和阻碍系统的主要缺陷。在相对较短的时间内。在MRC中,应最大化这些机制,而不是避免它们。从这个角度来看,主要养分的无机和有机形式都被从废水中隔离出来并沉积在METs模块上。一旦系统变得饱和,就可以将其完全用作农业土壤改良剂或用作有机矿物肥料的基础。 (c)2018 Elsevier B.V.保留所有权利。

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