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利用浮动动态室测定储存奶牛粪浆的温室气体和氨排放。

Determination of GHG and ammonia emissions from stored dairy cattle slurry by using a floating dynamic chamber.

机构信息

Hokkaido Research Organization, Animal Research Center, Shintoku, Hokkaido, Japan.

出版信息

Anim Sci J. 2013 Feb;84(2):165-77. doi: 10.1111/j.1740-0929.2012.01053.x. Epub 2012 Aug 19.

DOI:10.1111/j.1740-0929.2012.01053.x
PMID:23384359
Abstract

We developed a system for measuring emissions from stored slurry by using a floating dynamic chamber. CH(4) , CO(2) , N(2) O and NH(3) emitted from the storage tank of a dairy cattle farm in eastern Hokkaido were measured during summer 2008 (7/16-8/6), fall 2008 (10/2-10/26), spring 2009 (6/2-6/21) and winter 2009 (3/11). Average daily gas emission rates in summer, fall and spring were, respectively, 54.8, 54.2 and 34.3 g/m(2) for CH(4) ; 602, 274 and 254 g/m(2) for CO(2) ; 55.4, 68.2 and trace mg/m(2) for N(2) O; and 0.55, 0.73 and 0.46 g/m(2) for NH(3) . CH(4) , CO(2) and NH(3) emission rates during the brief measurement period in winter were reduced to 1/4, 1/23 and 1/2, respectively, of summer emission rate levels. All gas emissions showed diurnal fluctuation and were greatest during the daytime, when the ambient temperature rose. CH(4) , NH(3) and CO(2) emissions increased significantly during the daytime, and the daily emission (in grams) of each gas was positively correlated with maximum daily temperature. According to the combined spring, summer and fall measurements, the CH(4) , N(2) O and NH(3) annual emission factors were 1.42% (g CH(4) /g volatile solids), 0.02% (g N(2) O-N/g total N) and 0.43% (g NH(3) -N/g total N), respectively.

摘要

我们开发了一种使用浮动动态室测量储存泥浆排放的系统。2008 年夏季(7/16-8/6)、秋季(10/2-10/26)、春季(6/2-6/21)和 2009 年冬季(3/11)期间,我们测量了北海道东部一个奶牛场储存罐中 CH(4)、CO(2)、N(2)O 和 NH(3)的排放情况。夏季、秋季和春季的平均日气体排放率分别为 CH(4)54.8、54.2 和 34.3 g/m(2);CO(2)602、274 和 254 g/m(2);N(2)O 痕量 mg/m(2)和 55.4、68.2 和 0.46 g/m(2);NH(3)0.55、0.73 和 0.46 g/m(2)。冬季短暂测量期间,CH(4)、CO(2)和 NH(3)的排放率分别降至夏季排放率水平的 1/4、1/23 和 1/2。所有气体排放均表现出昼夜波动,当环境温度升高时,白天最大。CH(4)、NH(3)和 CO(2)排放白天显著增加,每种气体的日排放量(以克计)与最高日温度呈正相关。根据春季、夏季和秋季的综合测量结果,CH(4)、N(2)O 和 NH(3)的年排放因子分别为 1.42%(g CH(4)/g 挥发性固体)、0.02%(g N(2)O-N/g 总氮)和 0.43%(g NH(3)-N/g 总氮)。

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