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气候变化、人口增长和发展对 2100 年孟加拉国可持续水资源安全的影响。

The impact of climate change, population growth and development on sustainable water security in Bangladesh to 2100.

机构信息

CSIRO Land and Water, GPO Box 1700, Canberra, ACT, 2610, Australia.

出版信息

Sci Rep. 2022 Dec 26;12(1):22344. doi: 10.1038/s41598-022-26807-6.

Abstract

There are concerns that groundwater use for irrigation and for urban water supply is unsustainable in some parts of Bangladesh, particularly in the agriculturally productive northwest region. We use an integrated population - GDP - food - water model to examine water demand to 2100 in Bangladesh in development scenarios relevant to food and water security. The results indicate that irrigation water demand is projected to increase in coming decades, but later in the century it may decrease due to increasing crop yields and a falling population. The increased demand is greatest in the northwest region and, if unchecked, would increase concerns there about the unsustainable use of groundwater. The growth in demand is determined particularly by growth in crop yields, population growth and the fraction of food demand satisfied by imports. An extreme hot-dry climate change scenario has a lesser impact. This suggests that, in principle, Bangladesh can offset the impacts of climate change on irrigation water demand through its domestic policies. Urban water use currently also leads to concerns over unsustainable groundwater use. Our results suggest that urban water demand is likely to grow proportionately significantly more than irrigation water demand. Alternative sources for urban water are therefore urgently required.

摘要

有人担心,在孟加拉国的一些地区,特别是在农业生产发达的西北部地区,用于灌溉和城市供水的地下水可能是不可持续的。我们使用综合人口-国内生产总值-粮食-水模型,研究了与粮食和水安全相关的发展情景下,到 2100 年孟加拉国的用水需求。结果表明,在未来几十年,灌溉用水需求预计将增加,但在本世纪后期,由于作物产量的提高和人口的减少,灌溉用水需求可能会下降。这种增长在西北部地区最为显著,如果不加以控制,将加剧人们对地下水不可持续利用的担忧。需求的增长主要取决于作物产量的增长、人口增长以及进口满足的粮食需求份额。一个极端炎热干旱的气候变化情景的影响较小。这表明,原则上,孟加拉国可以通过其国内政策来抵消气候变化对灌溉用水需求的影响。目前,城市用水也导致了对地下水不可持续利用的担忧。我们的研究结果表明,城市用水需求可能会比灌溉用水需求增长得更快。因此,迫切需要寻找城市用水的替代水源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e00/9792451/df19da8b4e90/41598_2022_26807_Fig1_HTML.jpg

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