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Performance Evaluation of a Passively-Aerated Plastic-Wrapped Composting System Designed for Emergency Disposal of Swine Mortalities

机译:被动处置猪死亡率的被动充气式塑料堆肥系统的性能评估

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摘要

Monitoring of a passively-aerated plastic-wrapped mortality composting system designed for emergency disposal of diseased swine highlighted the importance of the physical characteristics of materials used to envelop the carcasses. Inadequate moisture was a problem when using envelope materials such as ground cornstalks or straw having low density and high air-filled porosity. High O2 concentrations throughout these materials, and significantly higher moisture levels in the top layers than in the materials surrounding the carcasses, suggested significant air movement and transport of carcass moisture away from the carcasses, resulting in carcass desiccation and incomplete decay. Although internal temperatures and moisture levels in test units constructed with corn silage were much more favorable than in those constructed with cornstalks or straw, less carcass decomposition occurred. Settling and compaction, resulting in high bulk density and low air-filled porosity, caused low O2 concentrations that appeared to impair carcass decay in the silage test units.
机译:对用于紧急处理患病猪的被动充气式塑料包裹的死亡率堆肥系统的监测突显了用于包裹尸体的材料的物理特性的重要性。当使用诸如低密度和高空气孔隙率的地面玉米秸秆或稻草之类的信封材料时,水分不足是一个问题。贯穿这些材料的高O2浓度以及顶层的水分含量明显高于the体周围的材料,这表明significant体有大量的空气运动和水分运离from体,导致car体干燥和不完全腐烂。尽管用玉米青贮饲料建造的测试单元的内部温度和水分含量比用玉米秸秆或稻草建造的测试单元的内部温度和湿度水平要好得多,但less体分解的发生率却较低。沉降和压实导致高堆积密度和低空气填充孔隙率,导致较低的O2浓度,似乎削弱了青贮饲料测试单元中car体的腐烂。

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