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Maximizing soybean productivity and profitability by transitioning from flood to furrow irrigation on clay-textured soils

机译:大豆最大化生产力和盈利能力从洪水沟灌溉转变clay-textured土壤上

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The type of irrigation delivery system used in the mid-southern United States can have an effect on crop-water relationships and withdrawal from the Mississippi River Valley Alluvial Aquifer. This study was conducted to determine whether converting from flood irrigation to an optimized furrow irrigation delivery system improves soybean [Glycine max (L.) Merr.] grain yield, net returns, and irrigation water use efficiency (IWUE). The effects of flood and optimized furrow irrigation on soybean grain yield, net returns above specified costs, irrigation water applied, and IWUE were investigated from 2016 to 2018 on 24 paired fields with the same soil type, culti-var, planting date, and management practices in the Delta region of Mississippi. Transitioning from flood irrigation to an optimized furrow irrigation system increased soybean grain yield by 7% and net returns above specified costs by 18% but had no effect on consumptive water use or IWUE. Our data indicate that mid-southern US soybean producers should convert from flood to optimized furrow irrigation systems to maximize soybean grain yield and net returns; however, switching between irrigation delivery systems will have no effect on aquifer decline.
机译:灌溉输送系统中使用的类型自己的美国可以有影响作物水分关系和退出密西西比河谷冲积含水层。研究确定从洪水灌溉优化沟灌交付系统改善大豆(大豆(l)回报,和灌溉用水效率(IWUE)。对大豆籽粒产量的灌溉,净收益上面指定的成本,灌溉用水,和IWUE调查了从2016年到2018年24配对字段具有相同土壤类型、culti-var、播种日期和管理在密西西比三角洲地区实践。从洪水灌溉的过渡优化沟灌溉系统增加了大豆籽粒产量和净回报率高于7%指定的成本降低18%,但没有影响消费用水或IWUE。我们自己的大豆生产商应该从洪水优化沟灌系统,以最大限度提高大豆籽粒产量和净返回;交付系统将不会影响含水层下降。

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