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Environmental Impact and Biosecurity of Composting for Emergency Disposal of Livestock Mortalities

机译:堆肥对牲畜死亡率的紧急处置的环境影响和生物安全性

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摘要

A two-year project was begun in Iowa in 2002 to test the decay performance, air and water environmental impacts, and bio-security of using composting for emergency disposal of cattle carcasses in the event of a foot-and-mouth disease outbreak. Of the three emergency cover materials tested to date, silage produced the highest and most sustained internal heat, the most rapid and thorough carcass decomposition, and the most rapid destruction of avian vaccine viruses introduced into the piles for bio-security testing. Although internal temperatures within ground cornstalk cover material were much lower than in the silage, carcass decomposition appeared to occur almost as rapidly as in the silage. The cornstalk material produced more collectable leachate with higher pollutant concentrations than the silage. Downwind odor from test units constructed with ground cornstalk, which has a much higher air permeability coefficient than silage, appeared to be strongest and more frequent during the initial 2–3 weeks following construction of the piles.
机译:2002年在爱荷华州开始了一个为期两年的项目,以测试腐烂性能,空气和水对环境的影响以及在口蹄疫爆发时使用堆肥紧急处置牛cattle体的生物安全性。迄今为止,在测试的三种紧急覆盖材料中,青贮饲料产生的热量最高,持续时间最长,内部分解最快,最彻底,并且以最快的速度破坏了用于生物安全性测试的禽流感疫苗。尽管地面玉米秸秆覆盖材料内部的温度远低于青贮饲料,但car体分解的发生速度几乎与青贮饲料一样快。与青贮饲料相比,玉米秸秆材料产生的可收集渗滤液具有更高的污染物浓度。用地面玉米秸秆建造的测试单元产生的顺风气味比青贮饲料具有更高的透气系数,在堆放后的最初2-3周内,这种气味似乎最强烈且更频繁。

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