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首页> 外文期刊>European Journal of Agronomy >Impact of tillage and mulch management on economics, energy requirement and crop performance in maize-wheat rotation in rainfed subhumid inceptisols, India
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Impact of tillage and mulch management on economics, energy requirement and crop performance in maize-wheat rotation in rainfed subhumid inceptisols, India

机译:印度雨养半湿稻玉米耕作方式中耕作和覆盖物管理对经济,能源需求和农作物性能的影响

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Different tillage systems (conventional minimum raised bed and no tillage) and four mulch levels (control polythene straw and soil) were compared in maize (Zea mays) and wheat (Triticum aestivum) production for three years on an experimental field (sandy loam) located at Dry Land Research Sub Station Dhiansar Jammu Each treatment was replicated four times in split plot design The aim of the research was to determine the influence of tillage and mulch practices on economics energy requirement soil physical properties and performance of maize and wheat Tillage methods significantly affected the soil physical properties as change in soil moisture contents and infiltration rate of soil was recorded The soil moisture contents in minimum tillage (MT) were maximum (12 4% 16 6%) in surface soil as compared to conventional tillage (CT) in maize and wheat crops respectively Comparing to the CT infiltration rate was (1 16times 1 21 times and 1 11times) higher in minimum tillage (MT) no tillage (NT) and raised bed (RB) respectively in kharif season Similar results were also found in rabi season The greatest maize yield of 1865 kg ha(-1) was achieved with CT system while not significantly lower yield was achieved with MT system (1837 kg ha(-1)) However wheat yield was recorded higher in MT as compare to the CT system Comparing to the energy requirement of different operations MT required 34 3% less NT 31 1% less and RB 46 0% less than the CT system MT system saved 2 5 times energy in tillage operation compared to the CT system The economic analysis also revealed that the maximum benefits could be obtained from MT (EUR 202 4 ha(-1)) followed by RB (EUR 164 2 ha(-1)) and NT (EUR 158 3 ha(-1)) and lowest in CT (EUR 149 5 ha(-1)) Benefit-cost ratio was highest in MT (0 71) and lowest in CT (0 44) Results revealed that mulch significantly affected the soil physical properties and growth of maize The maximum soil moisture content infiltration rate and grain yield of maize and wheat recorded higher in mulching practices over no mulch treatment Polythene mulch and straw mulch were almost equally valuable in maize and wheat sequence Tillage (minimum) and mulch (polythene and straw) have pronounced effect on soil physical properties (improved infiltration rate and conserve soil water) energy requirement economics and growth of maize and wheat
机译:在一个试验田(砂壤土)上,比较了玉米(Zea mays)和小麦(Triticum aestivum)三年中不同耕作制度(常规的最低起床高度和不耕作)和四个覆盖水平(对照聚乙烯秸秆和土壤)在旱地研究分站Dhiansar Jammu,每种处理在样地设计中重复四次。研究的目的是确定耕作和覆盖做法对经济能源需求的影响土壤物理性质以及玉米和小麦的耕作方式的影响显着记录土壤物理特性随土壤含水量和土壤入渗率的变化。与常规耕作(CT)相比,玉米的最低耕作(MT)的土壤含水量最大(12 4%16 6%)最小耕作(MT)免耕(N)比CT入渗速率高(1 16倍,1 21倍和1 11倍) kharif季节的T)和高床(RB)在狂犬病季节也有类似的结果CT系统获得的最大玉米产量为1865 kg ha(-1),而MT系统(1837 kg)的产量却没有明显降低ha(-1))然而,与CT系统相比,MT的小麦产量更高,相比不同作业方式的能源需求MT所需的能源比CT系统的MT少34 3%少NT 31 1%和RB 46 0%与CT系统相比,该系统在耕作过程中节省了2到5倍的能源。经济分析还显示,最大的收益可从MT(202 202 ha(-1)),随后是RB(164 2 ha(-1))获得。 )和新台币(EUR 158 3 ha(-1))最低,而CT(EUR 149 5 ha(-1))最低。MT收益成本比最高(0 71),CT最低(0 44)结果显示,地膜明显影响玉米的土壤物理性质和生长。玉米和小麦的最大土壤水分入渗速率和籽粒产量。在不进行覆盖处理的情况下,覆盖膜的使用率更高能源需求经济学与玉米和小麦的生长

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