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Greenhouse gas emissions during composting of dairy manure: Influence of the timing of pile mixing on total emissions

机译:奶牛粪堆肥过程中的温室气体排放:堆肥时间对总排放量的影响

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摘要

The effect of the timing of pile mixing on greenhouse gas (GHG) emissions during dairy manure composting was determined using large flux chambers designed to completely cover replicate pilot-scale compost piles. Approximately 50-70% of total CO2 and 75-80% of CH4 emissions occurred within the first two weeks of composting. Total GHG emissions from compost piles that were mixed at 2, 3, 4, or 5 weeks after initial construction were not significantly different from the emissions from unmixed (static) piles during a six week trial period. Although delaying initial pile mixing (2, 3, 4, or 5 weeks) generally lead to decreases in CO2 emissions, delaying mixing did not significantly affect CH4 or total GHG emissions. When normalised for degraded volatile solids (VS), CO2, CH4, N2O, and total emissions values ranged from 600-700, 130-150, 50-100, and 800-950 g CO2-eq per kg VS degraded, respectively. Carbon dioxide, methane, and nitrous oxide accounted for 75%, 14-19%, and 6-12%, respectively, of total GHG emissions from static and mixed piles
机译:乳化肥堆肥过程中,搅拌桩的时间安排对温室气体(GHG)排放的影响是使用大型通量试验箱确定的,该试验箱可完全覆盖重复的中试堆肥堆。在堆肥的前两周内,约有50-70%的二氧化碳和75-80%的甲烷排放。在六周的试验期内,在初始施工后第2、3、4或5周混合的堆肥堆产生的总温室气体排放与未混合的堆(静堆)的排放没有显着差异。尽管延迟初始混合(2、3、4或5周)通常会导致CO2排放量减少,但延迟混合不会显着影响CH4或总温室气体排放量。当对降解的挥发性固体(VS)进行归一化时,CO2,CH4,N2O和总排放值分别为600-700、130-150、50-100和800-950 g CO2-eq / kg降解的VS。二氧化碳,甲烷和一氧化二氮分别占静态桩和混合桩温室气体排放总量的75%,14-19%和6-12%

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