Julie Maria Falk , Peter Kjeldsen , Anders Michael Fredenslund , Christian Buck , Charlotte Scheutz
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The average biofilter CH<sub>4</sub> load for the first year was 4.6 kg CH<sub>4</sub> h<sup>−1</sup>, and the total yearly load was 42 tons of CH<sub>4</sub>. The biofilter was monitored for 1.5 years by measuring the collected gas, gas concentrations in the gas distribution layer and the temperature and moisture in the CH<sub>4</sub> oxidation layer. Gas concentrations in the gas distribution layer were similar to inlet gas concentrations, indicating efficient gas transportation and distribution in the biofilter, whilst biofilter surface CH<sub>4</sub> screenings revealed only a few localised emission hotspots. The annual average temperature in the biofilter was 49 °C and was related to the CH<sub>4</sub> load. When the CH<sub>4</sub> load to the biofilter was stable and above 2 kg CH<sub>4</sub> h<sup>−1</sup>, the temperature in the oxidation layer was found to be around 57 °C or higher, indicating that CH<sub>4</sub> oxidation was occurring.</div></div>","PeriodicalId":23969,"journal":{"name":"Waste management","volume":"206 ","pages":"Article 115087"},"PeriodicalIF":7.1000,"publicationDate":"2025-09-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Design and establishment of a biofilter for treatment of manure methane emissions\",\"authors\":\"Julie Maria Falk , Peter Kjeldsen , Anders Michael Fredenslund , Christian Buck , Charlotte Scheutz\",\"doi\":\"10.1016/j.wasman.2025.115087\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><div>During the storage of livestock manure in tanks, anaerobic degradation of organic material results in the production and emission of CH<sub>4</sub>. 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引用次数: 0
摘要
畜禽粪便在池中贮存过程中,有机物的厌氧降解导致CH4的产生和排放。本研究测试了一种设计用于CH4氧化的生物过滤器,作为一种潜在的技术,可以减少有盖粪肥储罐中CH4的排放。一个全尺寸的生物过滤器(400平方米)建在一个猪粪池(4400立方米)旁边。在建立生物过滤器之前,粪池每年的CH4排放总量在2.1至21.1 kg h - 1之间变化。在泵流量为~ 100 m3 h−1的情况下,可以从帐篷覆盖的粪池顶部空间收集75%的产生气体。第一年生物滤池平均CH4负荷为4.6 kg CH4 h−1,年总负荷为42吨CH4。对生物过滤器进行了为期1.5年的监测,测量了收集的气体、气体分布层的气体浓度以及CH4氧化层的温度和湿度。气体分布层中的气体浓度与入口气体浓度相似,表明生物过滤器中的气体输送和分布有效,而生物过滤器表面CH4筛选仅显示了少数局部排放热点。生物滤池年平均温度为49℃,与CH4负荷有关。当生物过滤器的CH4负荷稳定且大于2 kg CH4 h−1时,氧化层温度在57℃左右或更高,表明CH4氧化发生了。
Design and establishment of a biofilter for treatment of manure methane emissions
During the storage of livestock manure in tanks, anaerobic degradation of organic material results in the production and emission of CH4. This study tested a biofilter designed for CH4 oxidation as a potential technology for mitigating CH4 emissions from covered manure storage tanks. A full-scale biofilter (400 m2) was built next to a pig manure tank (4.400 m3). Total yearly CH4 emissions from the manure tank prior to the establishment of the biofilter varied between 2.1 and 21.1 kg h−1. With a pump flow of ∼ 100 m3 h−1, it was possible to collect 75 % of the produced gas from the headspace of the tent covered manure tank. The average biofilter CH4 load for the first year was 4.6 kg CH4 h−1, and the total yearly load was 42 tons of CH4. The biofilter was monitored for 1.5 years by measuring the collected gas, gas concentrations in the gas distribution layer and the temperature and moisture in the CH4 oxidation layer. Gas concentrations in the gas distribution layer were similar to inlet gas concentrations, indicating efficient gas transportation and distribution in the biofilter, whilst biofilter surface CH4 screenings revealed only a few localised emission hotspots. The annual average temperature in the biofilter was 49 °C and was related to the CH4 load. When the CH4 load to the biofilter was stable and above 2 kg CH4 h−1, the temperature in the oxidation layer was found to be around 57 °C or higher, indicating that CH4 oxidation was occurring.
期刊介绍:
Waste Management is devoted to the presentation and discussion of information on solid wastes,it covers the entire lifecycle of solid. wastes.
Scope:
Addresses solid wastes in both industrialized and economically developing countries
Covers various types of solid wastes, including:
Municipal (e.g., residential, institutional, commercial, light industrial)
Agricultural
Special (e.g., C and D, healthcare, household hazardous wastes, sewage sludge)