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首页> 外文期刊>Journal of Environmental Science and Health >Environmental factors influencing landfill gas biofiltration: Lab scale study on methanotrophic bacteria growth
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Environmental factors influencing landfill gas biofiltration: Lab scale study on methanotrophic bacteria growth

机译:影响垃圾掩埋场生物过滤的环境因素:甲烷营养细菌生长的实验室规模研究

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摘要

The post-management of landfills represents an important challenge for landfill gas treatment. Traditional systems (energy recovery, flares, etc.) present technical problems in treating flow with low methane (CH4) concentrations. The objective of this study was to isolate methanotrophic bacteria from a field-scale biofilter in order to study the bacteria in laboratories and evaluate the environmental factors that mostly influence Microbial Aerobic Methane Oxidation (MAMO). The soil considered was sampled from the biofilter located in the landfill of Venosa (Basilicata Region, Italy) and it was mainly composed of wood chips and compost. The results showed that methanotrophic microorganisms are mainly characterized by a slow growth and a significant sensitivity to CH4 levels. Temperature and nitrogen (N) also have a very important role on their development. On the basis of the results, biofilters for biological CH4 oxidation can be considered a viable alternative to mitigate CH4 emissions from landfills.
机译:垃圾填埋场的后处理是垃圾填埋气处理的一项重要挑战。传统系统(能量回收,火炬等)在处理低甲烷(CH4)浓度的流量方面存在技术问题。这项研究的目的是从现场规模的生物滤池中分离甲烷营养细菌,以便在实验室中研究细菌并评估主要影响微生物需氧甲烷氧化(MAMO)的环境因素。所考虑的土壤是从位于Venosa(意大利巴斯利卡塔地区)垃圾掩埋场的生物滤池中取样的,主要由木片和堆肥组成。结果表明,甲烷营养微生物的主要特征是生长缓慢且对CH4水平具有显着敏感性。温度和氮(N)对它们的发育也起着非常重要的作用。根据结果​​,可以将用于生物CH4氧化的生物滤池视为减轻垃圾填埋场CH4排放的可行替代方案。

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