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Least limiting water range for different soil management practices in dryland farming in Iran

机译:伊朗旱地农业的不同土壤管理实践中最不限制水分

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Integrated evaluation of soil physical properties using the least limiting water range (LLWR) approach may allow a better knowledge of soil water availability. We determined the LLWR for four tillage practices consisted of conventional tillage (CT), reduced tillage (RT), no-tillage (NT) and fallow no-tillage (NTf). In addition, LLWR was determined for abandoned soils (i.e. control), compacted soils, ploughed compacted soils and abandoned soils with super absorbent polymers (SAPs) application. Soil water retention, penetration resistance (PR), air-filled porosity and bulk density were determined for the 0-5 and 0-25-cm depths. Mean LLWR (0.07-0.08cm(3)cm(-3)) was lower in compacted soils than the soils under CT, NT, NTf, RT, tilled, abandoned and SAP practices but it was not different among tillage practices. The values of LLWR were 0.12cm(3)cm(-3) for NT and CT. LLWR for tilled plots (0.12cm(3)cm(-3)) became greater than compacted soils by 1.3 times. Analysis of the lower and upper limits of the LLWR further indicated that PR was the only limiting factor for soil water content, but aeration was not a limiting factor. The LLWR was more dependent on soil water content at permanent wilting point and at PR.
机译:使用最少限制的水范围(LLWR)方法的土壤物理性质的综合评价可以更好地了解土壤水量可用性。我们确定了四种耕作实践的LLWR,由常规耕作(CT),减少耕作(RT),无耕作(NT)和休耕无耕种(NTF)。此外,LLWR被确定为废弃的土壤(即控制),压实的土壤,犁过的压实土壤和具有超级吸水性聚合物(SAPS)应用的废弃土壤。测定0-5和0-25cm深度测定土壤保水,渗透率(Pr),充气孔隙率和堆积密度。在CT,NT,NTF,RT,耕种,废弃和SAP实践下,压实的土壤中的平均LLWR(0.07-0.08cm(3)厘米(3)厘米(3)厘米)较低,但在耕作实践中没有不同。对于NT和CT,LLWR的值为0.12cm(3)厘米(-3)。 LLWR用于耕地图(0.12cm(3)厘米(-3))比压实的土壤大于1.3倍。对LLWR的下限和上限的分析进一步表明PR是土壤含水量的唯一限制因素,但曝气不是限制因素。 LLWR更依赖于永久性萎缩点和PR的土壤含水量。

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