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首页> 外文期刊>Soil & Tillage Research >Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays L.
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Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays L.

机译:玉米覆盖对降雨截留,土壤物理特性和温度的影响。

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摘要

Application of organic amendment to the soil surface is widely used in order to ameliorate topsoil physical conditions, especially with respect to temperature, evaporation and water content. Water intercepted by mulch and crop canopy involves loss through evaporation that never replenishes the soil water. In this study, hydrological and temperature conditions beneath mulches of manufactured materials, organic waste, wheat straw (Tritium aestivum L.) and soybean straw (Glycine max L. Merrill) appliedat different thickness were investigated in glasshouse and field conditions in southern England. Interception loss by a maize (Zea mays L.) canopy and mulch modified the soil water balance by adversely affecting soil water content beneath thicker application. Mulching had a beneficial effect on soil water and temperature regimes. These findings are important for identifying mulching practices for dryland agriculture and under scenarios of climatic change that predict lower rainfall and higher temperatures in summer.
机译:为了改善表土的物理条件,特别是在温度,蒸发和水分方面,有机改良剂在土壤表面的应用被广泛使用。覆盖物和农作物冠层截获的水会因蒸发而流失,从而永远无法补充土壤水。在这项研究中,在英格兰南部的温室和田间条件下,研究了在不同厚度的人造材料,有机废物,小麦秸秆(Tritium aestivum L.)和大豆秸秆(Glycine max L. Merrill)覆盖下的水文和温度条件。玉米(Zea mays L.)冠层和覆盖物的截留损失通过在较厚施肥条件下对土壤含水量产生不利影响而改变了土壤水分平衡。覆盖对土壤水分和温度状况有有益的影响。这些发现对于确定旱地农业的覆盖措施以及在气候变化的情况下预测夏季降雨量减少和温度升高具有重要意义。

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