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Intermediate tree cover can maximize groundwater recharge in the seasonally dry tropics

机译:树木中间覆盖可以使季节性干燥的热带地区的地下水补给最大化

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摘要

Water scarcity contributes to the poverty of around one-third of the world’s people. Despite many benefits, tree planting in dry regions is often discouraged by concerns that trees reduce water availability. Yet relevant studies from the tropics are scarce, and the impacts of intermediate tree cover remain unexplored. We developed and tested an optimum tree cover theory in which groundwater recharge is maximized at an intermediate tree density. Below this optimal tree density the benefits from any additional trees on water percolation exceed their extra water use, leading to increased groundwater recharge, while above the optimum the opposite occurs. Our results, based on groundwater budgets calibrated with measurements of drainage and transpiration in a cultivated woodland in West Africa, demonstrate that groundwater recharge was maximised at intermediate tree densities. In contrast to the prevailing view, we therefore find that moderate tree cover can increase groundwater recharge, and that tree planting and various tree management options can improve groundwater resources. We evaluate the necessary conditions for these results to hold and suggest that they are likely to be common in the seasonally dry tropics, offering potential for widespread tree establishment and increased benefits for hundreds of millions of people.
机译:缺水加剧了世界约三分之一人口的贫困。尽管有很多好处,但人们担心树木会减少水的供应,因此往往不鼓励在干旱地区植树。然而,来自热带地区的相关研究却很少,而中间树木覆盖的影响尚待探索。我们开发并测试了一种最佳的树木覆盖理论,该理论在中等树木密度下使地下水补给最大化。低于此最佳树木密度,任何其他树木因渗水而获得的好处将超过其额外用水量,从而导致地下水补给量增加,而高于最佳树木密度,则相反。我们的结果基于对西非耕地林地排水和蒸腾量的测量结果校准的地下水预算,表明在中等树木密度下,地下水的补给量达到了最大。因此,与普遍观点相反,我们发现适度的树木覆盖可以增加地下水的补给,植树和各种树木管理选择可以改善地下水资源。我们评估了保持这些结果的必要条件,并建议它们可能在季节性干燥的热带地区很常见,为广泛植树和增加亿万人民的利益提供了可能。

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