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首页> 外文期刊>Journal of irrigation and drainage engineering >Efficient Tillage Practice for Maximum Infiltration, Rainwater Use Efficiency, and Profitability from Groundnuts under Semiarid Vertisols in Western India
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Efficient Tillage Practice for Maximum Infiltration, Rainwater Use Efficiency, and Profitability from Groundnuts under Semiarid Vertisols in Western India

机译:印度西部半干旱Vertisols下花生有效渗透的最大利用方式,雨水利用效率和花生获利能力

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摘要

Field experiments were conducted on groundnuts (Arachis hypogea) at Rajkot, India, during kharif from 1996 to 2006 to assess the efficiency of four tillage treatments: (1) shallow ploughing, (2) deep ploughing every year, (3) deep ploughing alternate years, and (4) deep ploughing once every three years. The tillage treatments were assessed for their effects on rainwater use efficiency (RWUE), soil moisture at depths of 0-15 and 15-30 cm, cumulative depth of infiltration, pod and straw yields attained, and sustainability over the years based on the sustainability yield index (SYI) criterion. The rainfall received during the crop growing period (June to September) ranged from 210.9 to 1,119.5 mm with a mean of 582.4 mm and variation of 47.4% over the years. A significantly higher mean pod yield of 770 kg/ha and a straw yield of 2,134 kg/ha were attained under yearly deep ploughing than under shallow ploughing (664 and 1,840 kg/ha). Yearly deep ploughing resulted in a mean infiltration depth of 12.8 cm and a RWUE of 1.59 kg/ha/mm, which were significantly higher than those of shallow ploughing (8.8 cm and 1.37 kg/ha/mm). Regression models of pod and straw yield were calibrated through monthly rainfall received during June to September and cumulative rainfall of these four months to assess the sustainability of the models over the years. The models attained coefficient of determination values in the ranges of 0.41 to 0.53, based on monthly rainfall, and 0.71 to 0.76, based on cumulative rainfall, for predicting the pod and straw yields of groundnuts based on the long-term study. The SYI ranged from 19.7 to 24.8% based on monthly rainfall and 25.6 to 30.9% based on cumulative rainfall for attaining maximum pod yield, and from 35.7 to 40.5% based on monthly rainfall and 38.0 to 44.8% based on cumulative rainfall for straw yield. The deep ploughing done every year resulted in maximum gross returns of 22,661 Rupees per hectare with benefit-cost ratio of 1.53, compared to shallow ploughing, with 19,543 Rupees per hectare and 1.43, respectively. The study indicated that yearly deep tillage was superior to attain maximum groundnut pod and straw yields, SYI, RWUE, gross returns, and benefit-cost ratio, in addition to providing maximum depth of infiltration. The deep ploughing done every alternate year and every three years were found to be the second and third best treatments for different parameters based on the study.
机译:在1996年至2006年的哈里夫期间,对印度拉杰果德的花生(Arachis hypogea)进行了田间试验,以评估四种耕作处理的效率:(1)浅耕,(2)每年深耕,(3)深耕交替年,(4)每三年深耕一次。根据可持续性,评估了耕作处理对雨水利用效率(RWUE),0-15和15-30 cm深度的土壤水分,累计渗透深度,获得的豆荚和秸秆产量以及多年来的可持续性的影响收益指数(SYI)标准。作物生长期(6月至9月)的降雨量在210.9至1,119.5毫米之间,平均降雨量为582.4毫米,多年来变化为47.4%。每年深耕比浅耕(664和1,840 kg / ha)要高得多,平均豆荚平均产量为770 kg / ha,秸秆产量为2134 kg / ha。每年深耕的平均渗透深度为12.8 cm,RWUE为1.59 kg / ha / mm,显着高于浅耕(8.8 cm和1.37 kg / ha / mm)。通过6月至9月的月降雨量和这四个月的累积降雨量对豆荚和稻草产量的回归模型进行校准,以评估这些年来这些模型的可持续性。通过长期研究,该模型获得的确定值系数基于月降雨量在0.41至0.53之间,基于累积降雨量在0.71至0.76之间,以预测花生的荚果和稻草产量。为获得最大豆荚产量,SYI的月度降雨量为19.7%至24.8%,累积降雨量为25.6%至30.9%,以月降雨量为基础的SYI介于35.7%至40.5%,秸秆产量的累积降雨量的SYI为38.0%至44.8%。每年进行的深度耕作使每公顷最高总收益为22,661卢比,效益成本比为1.53,而浅耕方式分别为每公顷19,543卢比和1.43。研究表明,除了提供最大的渗透深度外,每年的深耕还可以达到最大的花生荚和稻草产量,SYI,RWUE,总收益和效益成本比。根据研究,每隔一年和每三年进行一次深耕是不同参数的第二和第三最佳处理。

著录项

  • 来源
    《Journal of irrigation and drainage engineering 》 |2014年第3期| 04013019.1-04013019.7| 共7页
  • 作者单位

    Professor, Soil and Water Conservation Engineering, All India Coordinated Research Project for Dryland Agriculture (AICRPDA), Dry Farming Research Station, Junagadh Agricultural Univ., Targhadia, Rajkot, Gujarat 360003, India;

    Agricultural Statistics, AICRPDA, Central Research Institute for Dryland Agriculture (CRIDA), Santoshnagar, Hyderabad, Andhra Pradesh 500059, India;

    Soil Science, AICRPDA, Dry Farming Research Station, Junagadh Agricultural Univ., Targhadia, Rajkot, Gujarat 360003, India;

    Soil and Water Conservation Engineering, Division of Resource Management, Central Research Institute for Dryland Agriculture, Santoshnagar, Hyderabad, Andhra Pradesh 500059, India;

    Soil Science, AICRPDA, Dry Farming Research Station, Junagadh Agricultural Univ., Targhadia, Rajkot, Gujarat 360003, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tillage; Depth of infiltration; Soil moisture; Rainwater use efficiency; Productivity; Regression model; Sustainability yield index; Profitability;

    机译:耕作;渗透深度;土壤湿度;雨水利用效率;生产率;回归模型;可持续性产量指数;盈利能力;

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