Growth Media Efficacy in Biochemical Methane Potential Assays.

Methane Pub Date : 2023-04-18 DOI:10.3390/methane2020013
Giles Chickering, Thabet Tolaymat
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Abstract

The Biochemical Methane Potential (BMP) assay is a vital tool for quantifying the amount of methane that specific biodegradable materials can generate in landfills and similar anaerobic environments. Applications of the protocol are extensive and while simple in design, the BMP assay can use anaerobic seed from many different types of sources to determine the methane potential from most biodegradable substrates. Many researchers use differing protocols for this assay, both including and excluding the use of synthetic growth medias, intended to provide vital nutrients and trace elements that facilitate methanogenesis and leave the substrate being tested as the only limiting factor in methane generation potential. The variety of previous approaches inspired this effort to determine the efficacy of adding synthetic growth media to BMP assays. The presented findings suggest the use of M-1 synthetic growth media, defined in this study, at a volumetric ratio of 10% active sludge: 90% M-1 media yielded optimal results in terms of gas yield and reduced variability.

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生长培养基在生化甲烷势测定中的功效。
生化甲烷势(BMP)测定是量化特定可生物降解材料在垃圾填埋场和类似厌氧环境中产生的甲烷量的重要工具。该方案的应用范围广泛,设计简单,BMP测定可以使用来自许多不同类型来源的厌氧种子来确定大多数可生物降解底物的甲烷潜力。许多研究人员使用不同的实验方案,包括或不包括使用合成生长培养基,旨在提供促进甲烷生成的重要营养物质和微量元素,并将被测试的底物作为甲烷生成潜力的唯一限制因素。以前的各种方法激发了我们的努力,以确定在BMP检测中添加合成生长介质的功效。目前的研究结果表明,使用本研究中定义的M-1合成生长培养基,活性污泥的体积比为10%:90% M-1培养基在产气量和减少可变性方面产生了最佳结果。
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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