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Effects of subsurface drip irrigation rates and furrow irrigation for cotton grown on a vertisol on off-site movement of sediments, nutrients and pesticides

机译:地下滴灌速率和沟灌对生长在紫杉醇上的棉花的影响是泥沙,养分和农药异地迁移的影响

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摘要

Subsurface drip irrigation can reduce off-farm movements of fertilizers and pollutants and improve the water use efficiency of irrigated agriculture. Here we compared the effects of furrow and subsurface drip at different irrigation rates, based on a percentage of dailycrop-evapotranspiration rates (ETc), on run-off and off-site movement of suspended sediment, nutrients and pesticides from cotton crops grown on a vertisol. Our results show that furrow irrigation significantly increased suspended soil loss, of 5.26 t ha−1, compared to that of subsurface drip irrigation at 120% of ETc, of 2.53 t ha−1, whereas no erosion was recorded with deficit subsurface drip irrigation. Off-site movement of nitrogen in furrow, of 18.63 kg ha−1, was five times greater than subsurface drip irrigation at 120% ETc. It was much less with 105% ETc(0.37 kg ha−1) and 90% ETc (0.15 kg ha−1), and absent for 75% and 50% of ETc. Phosphorus loss from furrow, of 778 g ha−1, was greater than for the wetter subsurface drip treatments that gave 23 g ha−1 for 90% ETc and 19 g ha−1 for 120% ETc. No P loss was recorded from drier subsurface drip irrigation rates. Herbicides such as atrazine and diuron were applied in the year prior to the experiment, but considerable amounts were recorded in furrow run-off in both years, but only at 90 and 120% ETc subsurface drip irrigation in the first year. Concentrations of applied herbicide residues in the runoff exceeded the minimum threshold level for 99% species protection and, although the total amount of herbicide movement was higher in furrow, at times the concentration was greater for wetter subsurface drip irrigation run-off. Residues of insecticides, such as endosulphan applied in a previous year and dimethoate applied in the current years, were recorded in runoff from subsurface drip at 120% and furrow irrigation. Their concentrations in each year exceeded minimum threshold level. Subsurface drip irrigationat 75% ETc offered the best trade-off between off-site run-off, erosion and pesticide movement and yield and water use efficiency.
机译:地下滴灌可以减少农田外肥料和污染物的运移,并提高灌溉农业的用水效率。在这里,我们根据每日作物蒸发蒸腾量(ETc)的百分比,比较了不同灌溉速率下的犁沟和地下滴灌对棉花作物上悬浮的沉积物,养分和农药的径流和场外运动的影响。细粉我们的结果表明,与120%ETc的地下滴灌2.53 t ha-1相比,犁沟灌溉显着增加了5.26 t ha-1的悬浮土壤流失,而地下地下滴灌没有记录到侵蚀。在120%ETc下,沟中氮的异位移动量为18.63 kg ha-1,是地下滴灌的五倍。 ETc的105%(0.37 kg ha-1)和ETc的90%(0.15 kg ha-1)少得多,而ETc的75%和50%则不存在。犁沟的磷损失为778 g ha-1,大于湿润的地下滴灌处理,后者的90%ETc为23 g ha-1,120%ETc为19 g ha-1。干燥的地下滴灌速率未记录到磷的损失。在实验前的一年中使用了除草剂,如阿特拉津和杜隆,但在这两个年份的犁run径流中均记录到大量除草剂,但第一年仅在90%和120%的ETc地下滴灌中使用。径流中施用的除草剂残留物的浓度超过了99%物种保护的最低阈值水平,尽管犁沟中除草剂的移动总量较高,但有时湿润的地下滴灌径流中的浓度更高。记录在下一年的地下滴灌径流和沟灌中的杀虫剂残留量,例如上一年使用的硫丹和今年使用的乐果。他们每年的浓度都超过了最低阈值水平。 75%ETc的地下滴灌在异地径流,侵蚀和农药移动以及产量和水分利用效率之间取得了最佳平衡。

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