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首页> 外文期刊>Journal of Hydrology >Model-based coefficient method for calculation of N leaching from agricultural fields applied to small catchments and the effects of leaching reducing measures
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Model-based coefficient method for calculation of N leaching from agricultural fields applied to small catchments and the effects of leaching reducing measures

机译:基于模型的小流域农田氮素淋溶系数计算及减量措施效果

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A method to calculate N leaching from arable fields using model-calculated N leaching coefficients (NLCs) was developed. Using the process-based modelling system SOILNDB, leaching of N was simulated for four leaching regions in southern Sweden with 20-year climate series and a large number of randomised crop sequences based on regional agricultural statistics. To obtain N leaching coefficients, mean values of annual N leaching were calculated for each combination of main crop, following crop and fertilisation regime for each leaching region and soil type.The field-NLC method developed could be useful for following up water quality goals in e.g. small monitoring catchments, since it allows normal leaching from actual crop rotations and fertilisation to be determined regardless of the weather. The method was tested using field data from nine small intensively monitored agricultural catchments. The agreement between calculated field N leaching and measured N transport in catchment stream outlets, 19-47 and 8-38 kg ha(-1) yr(-1), respectively, was satisfactory in most catchments when contributions from land uses other than arable land and uncertainties in groundwater flows were considered.The possibitity of calculating effects of crop combinations (crop and following crop) is of considerable value since changes in crop rotation constitute a large potential for reducing N leaching. When the effect of a number of potential measures to reduce N leaching (i.e. applying manure in spring instead of autumn; postponing ploughing-in of ley and green fallow in autumn; undersowing a catch crop in cereals and oilseeds; and increasing the area of catch crops by substituting winter cereals and winter oilseeds with corresponding spring crops) was calculated for the arable fields in the catchments using field-NLCs, N leaching was reduced by between 34 and 54% for the separate catchments when the best possible effect on the entire potential area was assumed. (c) 2004 Elsevier B.V. All rights reserved.
机译:开发了一种使用模型计算的N浸出系数(NLC)从耕地中计算N浸出的方法。使用基于过程的建模系统SOILNDB,基于区域农业统计数据,对瑞典南部四个具有20年气候序列和大量随机作物序列的淋洗区域的N淋洗进行了模拟。为了获得N淋溶系数,计算了主要作物每种组合的年N淋溶平均值,根据每个淋溶区域和土壤类型的作物和施肥制度,开发的田间NLC方法可用于跟踪水质目标。例如小监测流域,因为它可以确定实际作物轮作和施肥的正常淋溶,而不受天气影响。使用来自9个小型密集监视农业流域的现场数据测试了该方法。当大部分集水区的土地用途不是耕地时,在大多数集水区,计算出的田间氮淋失量与集水区河流出口处测得的氮迁移量分别为19-47和8-38 kg ha(-1)yr(-1)之间的协议是令人满意的。考虑了土地和地下水流动的不确定性。计算作物组合(作物和后续作物)的影响的可能性具有相当大的价值,因为作物轮作的变化具有减少氮淋失的巨大潜力。当采取多种可能的措施来减少氮淋失时(例如,在春季而不是秋季施肥;在秋季推迟犁ley和绿色休耕;在谷物和油料种子中播种收获作物;并增加收获面积)用田间NLC计算集水区的耕地,用冬谷物和冬油籽替代相应的春季作物),当对整个潜力的最佳影响达到最佳时,单独集水区的氮淋失减少了34%至54%。假定面积。 (c)2004 Elsevier B.V.保留所有权利。

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