Enhancing the irrigation water productivity of rice farming: A study on sowing and irrigation practices in Pakistan

IF 1.6 4区 农林科学 Q2 AGRONOMY Irrigation and Drainage Pub Date : 2024-05-20 DOI:10.1002/ird.2981
Ghani Akbar, Zafar Islam, Shahid Hameed Khalil, Zeeshan Wali
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Abstract

In Pakistan's arid agricultural landscape, this 4-year (2020–2023) study on silty loam soil examined the relationships between sowing methods, irrigation practices, rice yield and water productivity. Using a randomized split block design, no tillage (NT) with alternate wetting and drying (AWD) and a furrow-irrigated narrow bed (NB) emerged as being consistently competitive, showing potential for sustainable rice cultivation. Key findings indicate that AWD significantly enhances water productivity (11–35%) and increases yield (2–10%) compared to conventional practices. Drip-irrigated wide beds (WBs) conserve substantial amounts of water (73%) but may compromise rice yield (4–47%). This study provides valuable insights into the dynamic outcomes and distinct performance trends of different rice varieties. The results suggest a potential maximum yield increase of 2–22% through optimized practices, and replacing rice may increase yield by 25–231%. Conversely, the selection of improper irrigation schedules and sowing methods for the given soil and crop conditions may lead to a yield reduction of up to 47% in high-yielding rice varieties. These findings may help to establish a foundation for further research investigating informed decision making for sowing and irrigation methods. The potential scalability of the identified technologies and further in-depth simulation strategies across diverse agroecological zones in Pakistan holds promise for widespread adoption, enhancing the sustainability of rice farming in the region.

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提高水稻种植的灌溉水生产力:巴基斯坦播种和灌溉方法研究
在巴基斯坦干旱的农业地区,这项为期 4 年(2020-2023 年)的淤泥质壤土研究考察了播种方法、灌溉方式、水稻产量和水分生产率之间的关系。采用随机分块设计,采用湿润和干燥交替(AWD)的免耕(NT)和沟灌窄床(NB)具有持续竞争力,显示了可持续水稻种植的潜力。主要研究结果表明,与传统方法相比,交替湿润干燥法显著提高了水分生产率(11%-35%),并增加了产量(2%-10%)。滴灌宽床(WB)节约了大量的水(73%),但可能会影响水稻产量(4-47%)。这项研究为了解不同水稻品种的动态结果和不同表现趋势提供了宝贵的见解。研究结果表明,通过优化灌溉措施,水稻的潜在最大增产率为 2-22%,而替换水稻则可增产 25-231%。相反,在特定的土壤和作物条件下,选择不当的灌溉时间和播种方法可能会导致高产水稻品种减产达 47%。这些发现可能有助于为进一步研究播种和灌溉方法的知情决策奠定基础。已确定技术的潜在可扩展性以及在巴基斯坦不同农业生态区域的进一步深入模拟战略有望得到广泛采用,从而提高该地区水稻种植的可持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Irrigation and Drainage
Irrigation and Drainage 农林科学-农艺学
CiteScore
3.40
自引率
10.50%
发文量
107
审稿时长
3 months
期刊介绍: Human intervention in the control of water for sustainable agricultural development involves the application of technology and management approaches to: (i) provide the appropriate quantities of water when it is needed by the crops, (ii) prevent salinisation and water-logging of the root zone, (iii) protect land from flooding, and (iv) maximise the beneficial use of water by appropriate allocation, conservation and reuse. All this has to be achieved within a framework of economic, social and environmental constraints. The Journal, therefore, covers a wide range of subjects, advancement in which, through high quality papers in the Journal, will make a significant contribution to the enormous task of satisfying the needs of the world’s ever-increasing population. The Journal also publishes book reviews.
期刊最新文献
Issue Information Referees 2024 Emerging Irrigation and Drainage Technologies: A Bibliometric Review of the Journal Irrigation and Drainage From 2010 to 2024 Agricultural Water Management for Rural Development Issue Information
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