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Irrigation water saving through adoption of direct rice sowing technology in the Indo-Gangetic Plains: empirical evidence from Pakistan

机译:通过在印度恒河平原采用直接水稻播种技术来节水:来自巴基斯坦的经验证据

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The main purpose of this article is to estimate the impact of the direct rice sowing (DRS) technology on irrigation water saving in the Indo-Gangetic plains. For this study, a comprehensive data set was collected from the rice-wheat area of the Pakistani Punjab. In total, 238 farmers were interviewed from the three major rice-producing districts i.e. Gujranwala, Sheikhupura and Hafizabad. The empirical analysis was carried out by employing the propensity score matching approach to correct for potential sample selection bias that may arise due to systematic differences between the participants and non-participants. The empirical results indicate that the DRS technology is a water saving technology and, on average, the adopters need four less irrigation as compared to the traditional transplanting method. The DRS technology is also labour saving and requires less labour than the conventional rice sowing technology. The water productivity of the DRS technology is also higher as compared to the conventional transplanting method. The DRS technology also has a beneficial yield impact on the subsequent wheat crop. However, the major problem with the DRS technology is weed infestation which needs to be addressed. Farm size analysis indicates that DRS technology has a positive impact for all farmers and particularly on the small and medium scale farmers.
机译:本文的主要目的是评估直接稻田播种(DRS)技术对印度恒河平原灌溉节水的影响。对于这项研究,从巴基斯坦旁遮普邦的稻米小麦地区收集了一个综合数据集。总共采访了三个主要稻米产区即Gujranwala,Sheikhupura和Hafizabad的238位农民。通过采用倾向得分匹配方法来校正实证分析,以纠正由于参与者和非参与者之间的系统差异而可能引起的潜在样本选择偏差。实验结果表明,DRS技术是一种节水技术,与传统的移植方法相比,采用者平均需要少灌溉四次。与传统的水稻播种技术相比,DRS技术还节省了劳动力,并且所需的劳动力更少。与传统的移植方法相比,DRS技术的水生产率也更高。 DRS技术还对随后的小麦作物产生了有益的产量影响。但是,DRS技术的主要问题是杂草侵扰,需要解决。农场规模分析表明,DRS技术对所有农民,特别是对中小型农民具有积极影响。

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