A Review of Precision Irrigation Water-Saving Technology under Changing Climate for Enhancing Water Use Efficiency, Crop Yield, and Environmental Footprints

Q2 Agricultural and Biological Sciences Agriculture Pub Date : 2024-07-14 DOI:10.3390/agriculture14071141
Imran Ali Lakhiar, Haofang Yan, Chuan Zhang, Guoqing Wang, Bin He, Beibei Hao, Yujing Han, Biyu Wang, Rongxuan Bao, Tabinda Naz Syed, Junaid Nawaz Chauhdary, Md. Rakibuzzaman
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Abstract

Water is considered one of the vital natural resources and factors for performing short- and long-term agricultural practices on Earth. Meanwhile, globally, most of the available freshwater resources are utilized for irrigation purposes in agriculture. Currently, many world regions are facing extreme water shortage problems, which can worsen if not managed properly. In the literature, numerous methods and remedies are used to cope with the increasing global water crises. The use of precision irrigation water-saving systems (PISs) for efficient water management under climate change is one of them and is a highly recommended approach by researchers. It can mitigate the adverse effects of changing climate and help enhance water use efficiency, crop yield, and environmental footprints. Thus, the present study aimed to comprehensively examine and review PISs, focusing on their development, implementation, and positive impacts on sustainable water management. In addition, we searched the literature using different online search engines and reviewed and summarized the main results of the previously published papers on PISs. We discussed the traditional irrigation method and its modernization for enhancing water use efficiency, PIS monitoring and controlling, architecture, data sharing communication technologies, the role of artificial intelligence for irrigation water-saving, and the future prospects of the PIS. Based on the brief literature review, the present study concluded that the future of PISs seems bright, driven by the need for efficient irrigation water management systems, technological advancements, and increasing environmental awareness. As the water scarcity problem intensifies due to climate change and population growth, the PIS is poised to play a critical role in optimizing and modernizing water usage, increasing water use efficiency, and reducing environmental footprints, thus ensuring sustainable agriculture development.
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气候变化条件下提高用水效率、作物产量和环境足迹的精准灌溉节水技术综述
水被认为是地球上重要的自然资源之一,也是进行短期和长期农业生产的重要因素。同时,全球大部分可用淡水资源都用于农业灌溉。目前,世界上许多地区都面临着极度缺水的问题,如果管理不当,情况还会恶化。文献中提到了许多方法和补救措施来应对日益严重的全球水资源危机。利用精确灌溉节水系统(PIS)实现气候变化下的高效水资源管理就是其中之一,也是研究人员强烈推荐的一种方法。它可以减轻气候变化的不利影响,有助于提高用水效率、作物产量和环境足迹。因此,本研究旨在全面研究和审查 PIS,重点关注其发展、实施以及对可持续水资源管理的积极影响。此外,我们还使用不同的在线搜索引擎检索了文献,并对以前发表的有关 PISs 的论文的主要结果进行了回顾和总结。我们讨论了传统灌溉方法及其为提高用水效率而进行的现代化改造、PIS 监测与控制、架构、数据共享通信技术、人工智能在灌溉节水中的作用以及 PIS 的未来前景。根据简要的文献综述,本研究得出结论:在高效灌溉水管理系统的需求、技术进步和环保意识增强的推动下,PIS 的前景似乎一片光明。随着气候变化和人口增长导致的缺水问题日益严重,灌溉与排泄系统将在优化用水和实现用水现代化、提高用水效率、减少环境足迹方面发挥关键作用,从而确保农业的可持续发展。
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来源期刊
Agriculture
Agriculture Agricultural and Biological Sciences-Horticulture
CiteScore
1.90
自引率
0.00%
发文量
4
审稿时长
11 weeks
期刊介绍: The Agriculture (Poľnohospodárstvo) is a peer-reviewed international journal that publishes mainly original research papers. The journal examines various aspects of research and is devoted to the publication of papers dealing with the following subjects: plant nutrition, protection, breeding, genetics and biotechnology, quality of plant products, grassland, mountain agriculture and environment, soil science and conservation, mechanization and economics of plant production and other spheres of plant science. Journal is published 4 times per year.
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