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Utilization of MSW compost for organic matter conservation in agricultural soils of NW Spain

机译:垃圾堆肥用于西班牙西北部农业土壤中有机物的保护

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The recycling of the organic matter contained in municipal solid waste (MSW) as an amendment for agricultural soils after composting can be an option for conserving the organic matter levels in soil. In order to ascertain the amounts of compost needed for the conservation of soil organic matter, the mineralization rates of two MSW composts (obtained in the two main industrial composting facilities in Galicia, NW Spain), and three agricultural soils from different parent material (granite, schist, and gabbro) were determined in a laboratory study. A simple first-order kinetic model adequately described the mineralization of compost, whereas the mineralization of soil was best described by a two-compartment first-order model. The addition rate for each of the composts for maintaining the soil organic carbon (SOC) in the soils in targeted levels after 25 years was calculated from the mineralization data for two soil temperature scenarios. At the current mean soil temperature the compost doses would range from 4.0 to 7.2 t ha(-1) (dry weight) to maintain the present SOC concentrations and from 8.5 to 15.6 to reach 3.5% SOC. An increment of 2 degrees C in the mean soil temperature as a consequence of climate change would increase in a 10% the requirements of compost to maintain the targeted levels of SOC.
机译:堆肥后,将城市固体废物(MSW)中包含的有机物循环利用作为农业土壤的一种改良方法,可以作为节省土壤中有机物含量的一种选择。为了确定保存土壤有机质所需的堆肥数量,两种城市固体废弃物堆肥的矿化率(在西班牙西北部加利西亚的两个主要工业堆肥设施中获得),以及三种土壤土壤的母质含量不同(花岗岩,片岩和gabbro)在实验室研究中确定。一个简单的一阶动力学模型足以描述堆肥的矿化作用,而土壤的矿化作用最好由两室一阶模型描述。根据两种土壤温度情景下的矿化数据,计算出25年后将土壤中的有机碳(SOC)保持在目标水平的每种堆肥的添加率。在目前的平均土壤温度下,堆肥的剂量范围为4.0至7.2 t ha(-1)(干重),以保持当前的SOC浓度,而从8.5至15.6,以达到3.5%的SOC。气候变化导致平均土壤温度每升高2摄氏度,堆肥保持SOC目标水平的需求将增加10%。

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