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Reconciling irrigated food production with environmental flows for Sustainable Development Goals implementation

机译:使灌溉食品生产与环境流动相协调,以实现可持续发展目标

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Safeguarding river ecosystems is a precondition for attaining the UN Sustainable Development Goals (SDGs) related to water and the environment, while rigid implementation of such policies may hamper achievement of food security. River ecosystems provide life-supporting functions that depend on maintaining environmental flow requirements (EFRs). Here we establish gridded process-based estimates of EFRs and their violation through human water withdrawals. Results indicate that 41% of current global irrigation water use (997?km3 per year) occurs at the expense of EFRs. If these volumes were to be reallocated to the ecosystems, half of globally irrigated cropland would face production losses of ≥10%, with losses of ~20–30% of total country production especially in Central and South Asia. However, we explicitly show that improvement of irrigation practices can widely compensate for such losses on a sustainable basis. Integration with rainwater management can even achieve a 10% global net gain. Such management interventions are highlighted to act as a pivotal target in supporting the implementation of the ambitious and seemingly conflicting SDG agenda.
机译:维护河流生态系统是实现与水和环境有关的联合国可持续发展目标的前提,而严格执行此类政策可能会阻碍实现粮食安全。河流生态系统提供依赖维持环境流量要求(EFR)的生命维持功能。在这里,我们建立了基于网格的基于过程的EFR估计值,以及通过人类取水引起的EFR违反情况。结果表明,目前全球灌溉用水的41%(每年997?km 3 )是以EFR为代价的。如果将这些量重新分配给生态系统,全球一半的灌溉耕地将面临≥10%的生产损失,尤其是在中亚和南亚,将损失约20%至30%的国家总产量。但是,我们明确表明改善灌溉习惯可以在可持续的基础上广泛弥补此类损失。与雨水管理相结合甚至可以实现10%的全球净收益。强调了这种管理干预措施,将其作为支持实施雄心勃勃,看似矛盾的可持续发展目标议程的关键目标。

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