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首页> 外文期刊>Journal of hazardous, toxic and radioactive waste >Study on the Correlation between Dissolved Organic Carbon, Specific Oxygen Uptake Rate, and Exchangeable Nitrogen and the Performance of Granular Materials as Support Media for Methanotrophic Biofiltration
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Study on the Correlation between Dissolved Organic Carbon, Specific Oxygen Uptake Rate, and Exchangeable Nitrogen and the Performance of Granular Materials as Support Media for Methanotrophic Biofiltration

机译:溶解性有机碳,比氧吸收率和可交换氮与颗粒材料作为甲烷营养生物滤池载体的性能相关性研究

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摘要

Anaerobic decomposition of organic materials in landfills is a key source of anthropogenic methane (CH_4) emissions into the atmosphere. The use of methane biofilter (MB) technology for biological oxidation of CH_4 into carbon dioxide (CO_2) and water is an emerging area of interest for researchers and practicing engineers. Studies were undertaken to assess the influence of dissolved organic carbon (DOC), specific oxygen uptake rate (SOUR), and exchangeable nitrogen (N_(ex)) on different materials used as filter media in MBs. The obtained results showed that these parameters are strongly correlated with the CH_4 oxidation potential observed for different porous materials. Low DOC, SOUR, and N_(ex) values [318 parts per million (ppm), 168 ppm, and 228 mg O-2/kg volatile solids/h, respectively] were associated with the highest methanotrophic activity rate observed in this study (3.6596 μmol CH-4/gVS/d).
机译:垃圾填埋场中有机物质的厌氧分解是人为甲烷(CH_4)排放到大气中的重要来源。甲烷生物滤池(MB)技术用于将CH_4生物氧化为二氧化碳(CO_2)和水的方法正在引起研究人员和实践工程师的兴趣。进行了研究以评估溶解的有机碳(DOC),特定的摄氧速率(SOUR)和可交换的氮(N_(ex))对用作MBs过滤介质的不同材料的影响。所得结果表明,这些参数与在不同多孔材料上观察到的CH_4氧化电位密切相关。低DOC,SOUR和N_(ex)值[分别为318百万分之一(ppm),168 ppm和228 mg O-2 / kg挥发性固体/ h]与本研究中观察到的最高甲烷营养活性有关(3.6596μmolCH-4 / gVS / d)。

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