Biological Degradation and Greenhouse Gas Emissions during Pre-Storage of Liquid Animal Manure

甲烷 沼气 厌氧消化 泥浆 肥料 二氧化碳 液肥 温室气体 环境科学 化学 废物管理 制浆造纸工业 无氧运动 碳纤维 环境化学 环境工程 农学 材料科学 生态学 复合材料 有机化学 工程类 复合数 生物 生理学
作者
Henrik Bjarne Møller,Sven G. Sommer,Birgitte K. Ahring
出处
期刊:Journal of Environmental Quality [Wiley]
卷期号:33 (1): 27-27 被引量:28
标识
DOI:10.2134/jeq2004.0027
摘要

Storage of manure makes a significant contribution to global methane (CH4) emissions. Anaerobic digestion of pig and cattle manure in biogas reactors before outside storage might reduce the potential for CH4 emissions. However, manure pre-stored at 15 to 20°C in buildings before anaerobic digestion may be a significant source of CH4 and could reduce the potential CH4 production in the biogas reactor. Degradation of energy-rich organic components in slurry and emissions of CH4 and carbon dioxide (CO2) from aerobic and anaerobic degradation processes during pre-storage were examined in the laboratory. Newly mixed slurry was added to vessels and stored at 15 and 20°C for 100 to 220 d. During storage, CH4 and CO2 emissions were measured with a dynamic chamber technique. The ratio of decomposition in the subsurface to that at the surface indicated that the aerobic surface processes contributed significantly to CO2 emission. The measured CH4 emission was used to calculate the methane conversion factor (MCF) in relation to storage time and temperature, and the total carbon-C emission was used to calculate the decrease in potential CH4 production by anaerobic digestion following pre-storage. The results show substantial methane and carbon dioxide production from animal manure in an open fed-batch system kept at 15 to 20°C, even for short storage times, but the influence of temperature was not significant at storage times of <30 d. During long-term storage (90 d), a strong influence of temperature on the MCF value, especially for pig manure, was observed.
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