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Predicting ammonia and carbon dioxide emissions from carbon and nitrogen biodegradability during animal waste composting

机译:预测动物粪便堆肥过程中碳和氮生物降解产生的氨和二氧化碳排放

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摘要

During composting of livestock manure, transformations of organic matter result in gaseous emissions, which can harm the environment. Two experiments were done in enclosures to measure the fluxes of NH3, N2O, CO2, CH4 and H2O emitted by 8 heaps of compost representing the range of biodegradability of nitrogen and carbon in the livestock manure. The heaps were monitored for the first 2 months, corresponding to the thermophilic phase during which nearly all-mass losses occur. Four parameters describe the NH3 emission kinetics and the main influential factors were noted: (1) the response time to reach maximum intensity is affected mainly by the initial micro-flora; (2) the amplitude depends mainly on C biodegradability and also on micro-flora; (3) the emission duration depends mainly on N biodegradability; and (4) the cumulative emission, which varied from 16.5 to 48.9% of the nitrogen initially present in the heap, depends both on C and N biodegradability. A predictive model for NH3 and CO2 emissions for the thermophilic phase of the composting of livestock manure is proposed. The variability in cumulative emissions of CO2 and of NH3 is well explained by the contents of soluble elements and hemicellulose in the dry matter (Van Soest fractioning), and soluble nitrogen (12 h extraction at 4 °C in water). In our conditions of favourable aeration and humidity, N2O and CH4 emissions were low. The role of the biodegradable carbon in reducing NH3 emission is highlighted.
机译:在畜牧粪肥堆肥期间,有机质转化导致气态排放,这可能危害环境。在外壳中进行了两个实验,以测量由8堆堆肥发出的NH 3,N 2 O,CO 2,CH4和H2O的助熔剂,该堆肥代表牲畜粪堆中的氮和碳的生物降解性范围。在前2个月监测堆,对应于嗜热期,在此期间发生几乎全质量损失。四个参数描述了NH3排放动力学,并注意到主要影响因素:(1)达到最大强度的响应时间主要受初始微菌群的影响; (2)幅度主要取决于C生物降解性,也取决于微菌群; (3)发射持续时间主要取决于N生物降解性; (4)累积发射从最初存在于堆中的氮的16.5%至48.9%,取决于C和N生物降解性。提出了对畜牧肥料堆肥的嗜热阶段的NH3和CO2排放的预测模型。通过干物质(面包车稳定分数)和可溶性氮气中的可溶性元素和半纤维素的含量和半纤维素的累积排放的累积发射的可变性是很好的解释(在水中4℃下的12h萃取)。在我们有利的曝气和湿度的条件下,N2O和CH4排放量很低。突出了可生物降解碳在减少NH3排放时的作用。

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