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Role of Landfill Cover Materials in Mitigating GHG. Emissions in Biogeochemical Landfill Cover System

机译:垃圾填埋覆盖材料在缓解温室气体的作用。生物地球化学垃圾填埋场排放系统

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Municipal solid waste (MSW) landfills are known to be one of the major sources of greenhouse gas (GHG) emissions into the atmosphere. In order to alleviate these emissions, an innovative biogeochemical cover system is proposed to mitigate both methane (CH_4) and carbon dioxide (CO_2) emissions, which are the predominant gases in landfill gas (LFG) emissions. This paper investigates four materials: soil, non-activated biochar, methanotrophic activated biochar, and basic oxygen furnace (BOF) slag for their CH_4 and CO_2 uptake capacity. First, the physical and chemical properties of the four materials were tested. Thereafter, several series of batch tests were conducted to determine CH_4 and CO_2 uptake by each material. The results demonstrate that the soil has the potential to oxidize CH_4 into CO-2 due to presence of CH_4 oxidizing (methanotrophic) bacteria, while the BOF steel slag has potential to sequester CO_2. The methanotrophic activated biochar showed enhanced biological activity due to high methanotrophic population, mitigating CH_4 efficiently. However, the non-activated biochar had little to no effect on the uptake of either CH_4 or CO_2. Finally, the combination of these cover materials at different proportions in different configurations is being investigated to optimize the biogeochemical cover system to mitigate both CH_4 and CO_2 emissions.
机译:已知市固体废物(MSW)垃圾填埋场是温室气体(GHG)排放到大气中的主要来源之一。为了缓解这些排放,提出了一种创新的生物地球化学覆盖系统,以减轻甲烷(CH_4)和二氧化碳(CO_2)排放,这是垃圾填埋气体(LFG)排放中的主要气体。本文研究了四种材料:土壤,非活化生物炭,甲虫萎缩活化的生物炭和基本氧气炉(BOF)炉渣,用于其CH_4和CO_2摄取能力。首先,测试四种材料的物理和化学性质。此后,进行几系列批量测试以确定每种材料的CH_4和CO_2吸收。结果表明,由于CH_4氧化(甲蛋白酶营养)细菌的存在,土壤具有氧化CH_4进入CO-2中的潜力,而BOF钢渣具有螯合CO_2的电位。由于高甲虫营养群体,甲基脱粒活化的生物炭表现出增强的生物活性,有效减轻CH_4。然而,未激活的生物炭对CH_4或CO_2的摄取没有影响。最后,正在研究以不同配置的不同比例的这些覆盖材料的组合,以优化生物地缘覆盖系统,以减轻CH_4和CO_2排放。

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