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Effect of Surface Cover on NPS Pollution from Sloping Fields under Intensive Farming in Korea

机译:集约耕作下地表覆盖对坡地NPS污染的影响

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Sloping fields under intensive farming have been a major source of agricultural nonpoint source (NPS) pollution in Korea. Comprehensive studies to quantify edge-of-field water quality and measure surface mulch effects on NPS pollution discharge have been conducted over the past several years. Edge-of-field water quality was seriously degraded by NPS pollutants. The range of average event mean concentrations (EMCs) was suspended solids (SS) 547 similar to 2600mgl(-1), biochemical oxygen demand (BOD) 8.7 similar to 50.7mgl(-1), total nitrogen (TN) 3.5 similar to 21.8mgl(-1), and total phosphorus (TP) 2.4 similar to 13.1mgl(-1). Experiments treated by a rice straw mat mulch (S), S with gypsum (SG), and SG with PAM (SPG) showed good results as best management practices (BMPs) in controlling NPS pollution from sloping fields. The range of reductions by the treatments was runoff 28.3 similar to 96.7%, SS 71.5 similar to 99.5%, BOD 37.5 similar to similar to 91.9%, TN 32.4 similar to 91.0%, and TP 43.0 similar to 95.7%. The SPG showed the best reduction effect for both runoff and NPS pollution. The S also showed encouraging results as a prospective BMP. Crop yields under the treatments also increased by up to 740% (lettuce) and 6.1 similar to 39.2% (cabbage and radish). The mulch treatments were proven to be effective for the increase of farm productivity and to improve runoff quality as well. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:集约化耕作的坡地在韩国一直是农业面源污染的主要来源。在过去的几年中,已经进行了综合研究以量化场边缘水质并测量地表覆盖物对NPS污染排放的影响。 NPS污染物严重降低了边缘水质。平均事件平均浓度(EMC)的范围是悬浮固体(SS)547类似于2600mgl(-1),生化需氧量(BOD)8.7类似于50.7mgl(-1),总氮(TN)3.5类似于21.8 mgl(-1)和总磷(TP)2.4类似于13.1mgl(-1)。用稻草席覆盖物(S),含石膏的S(SG)和含PAM的SG(SPG)处理的实验显示,作为控制坡地NPS污染的最佳管理方法(BMP),其效果良好。处理的减少量范围为径流28.3,与96.7%相似,SS 71.5与99.5%相似,BOD 37.5与91.9%相似,TN 32.4与91.0%相似,TP 43.0与95.7%相似。 SPG对径流和NPS污染均显示出最佳的减排效果。 S作为预期的BMP也显示出令人鼓舞的结果。处理后的作物单产也提高了740%(莴苣)和6.1,与39.2%(白菜和萝卜)相似。地膜处理被证明对提高农业生产力和改善径流质量也有效。版权所有(c)2016 John Wiley&Sons,Ltd.

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