Irstea, UR GERE, 17 avenue de Cucillé, CS 64427, F-35044 Rennes Cedex, France.
Bioresour Technol. 2013 May;136:49-57. doi: 10.1016/j.biortech.2013.02.038. Epub 2013 Feb 21.
Nitrification plays an important role in nitrogen turnover in composting process. It has been believed that nitrification occurs mainly during the maturation phase due to the elevated temperature during the active phase of composting. In this work, the intense biodegradation of organic matters is demonstrated to be another negative impact on the ammonia oxidation, the first step of nitrification. We investigated the ammonia oxidation in compost following organic matters addition at intermediate temperature. Different indicators of ammonia oxidation were studied, respectively. The accumulation of nitrite and nitrate was 10(2)-10(3) lower in composts with organic matters addition. The nitrous oxide emissions were absent or 40-fold inferior in these composts. The nitrogen mass balance indicated a less amount of oxidized ammonia after the addition. The ammonia-oxidizing bacteria declined following the organic matters addition. In contrast, the ammonia-oxidizing archaea were supported by the organic matters. Possible mechanisms of this impact were also discussed.
硝化作用在堆肥过程中的氮转化中起着重要作用。人们一直认为,由于堆肥过程中活跃阶段的高温,硝化作用主要发生在成熟阶段。在这项工作中,强烈的有机物生物降解被证明是对硝化作用(硝化作用的第一步)的氨氧化的另一个负面影响。我们研究了中间温度下添加有机物后堆肥中的氨氧化。分别研究了不同的氨氧化指标。添加有机物的堆肥中亚硝酸盐和硝酸盐的积累分别低 10(2)-10(3)倍。这些堆肥中没有或减少了 40 倍的氧化亚氮排放。氮质量平衡表明添加有机物后氧化的氨量减少。添加有机物后,氨氧化细菌减少。相反,有机物支持氨氧化古菌。还讨论了这种影响的可能机制。