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首页> 外文期刊>The Science of the Total Environment >Can forests buffer negative impacts of land-use and climate changes on water ecosystem services? The case of a Brazilian megalopolis
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Can forests buffer negative impacts of land-use and climate changes on water ecosystem services? The case of a Brazilian megalopolis

机译:森林能否缓冲土地利用和气候变化对水生态系统服务的负面影响?巴西大都市的情况

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摘要

While the role of land-use conversion on water quality is reasonably understood, its role on water quantity is controversial. Climate change is also expected to impact water availability. Here we explore the interplay of hydrology, land-use change and climate change in one of the most populous urban areas in the world. We examined the potential of forests to buffer the negative impacts of land-use and climate changes on water-related ecosystem services in Tiete Basin, Brazil, which supplies water to the Sao Paulo megalopolis. We modelled six hydrological parameters using the WaterWorld Policy Support System, simulating the current baseline and six future scenarios (with different land-use and climate changes). Our results corroborate the general trend that increased forest cover improves water quality. Our modelling also predicts that increased forest cover increases water quantity in the southern part of the basin. The effects of climate change are observed mainly in urban areas, with a reduction in water quality. Because urban areas are not eligible for reforestation, they cannot benefit from its buffering effect on climate change. The increase in water availability is the greatest benefit of reforestation as a strategy to improve water-related ecosystem services in the region. Reforestation, however, will not suffice to restore all hydrological parameters in the basin, and additional sustainable agricultural practices are needed to mitigate impacts on water quality. (C) 2019 Elsevier B.V. All rights reserved.
机译:虽然合理地理解了土地利用转化对水质的作用,但它对水量的作用仍存在争议。预计气候变化也将影响水的供应。在这里,我们探讨了世界上人口最多的城市地区之一的水文学,土地利用变化和气候变化之间的相互作用。我们研究了森林在缓解巴西土地利用和气候变化对与水有关的生态系统服务的负面影响方面的潜力,该地区为圣保罗特大城市供水。我们使用“水世界”政策支持系统对六个水文参数进行建模,以模拟当前基准线和六个未来情景(不同的土地利用和气候变化)。我们的结果证实了森林覆盖率提高改善水质的总体趋势。我们的模型还预测,森林覆盖率的增加将使流域南部的水量增加。主要在城市地区观察到气候变化的影响,水质下降。由于城市地区不符合重新造林的条件,因此无法从城市对气候变化的缓冲作用中受益。作为改善该地区与水有关的生态系统服务的一项战略,增加水的供应是重新造林的最大好处。然而,重新造林不足以恢复流域内的所有水文参数,还需要采取其他可持续的农业作法来减轻对水质的影响。 (C)2019 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第1期|248-258|共11页
  • 作者单位

    Univ Fed Rio de Janeiro, Alberto Luiz Coimbra Inst Grad Studies & Res Engn, Grad Program Energet Planning, Rio De Janeiro, Brazil;

    Kings Coll London, Dept Geog, Bush House,North East Wing,30 Aldwych, London WC2B 4BG, England|UN Environm World Conservat Monitoring Ctr, Cambridge, England;

    Kings Coll London, Dept Geog, Bush House,North East Wing,30 Aldwych, London WC2B 4BG, England;

    Univ Fed Rio de Janeiro, Alberto Luiz Coimbra Inst Grad Studies & Res Engn, Grad Program Energet Planning, Rio De Janeiro, Brazil|Minist Sci Technol & Innovat, Brazilian Res Network Climate Change Rede Clima, Brasilia, DF, Brazil;

    Minist Sci Technol & Innovat, Brazilian Res Network Climate Change Rede Clima, Brasilia, DF, Brazil|Univ Fed Rio de Janeiro, Dept Ecol, Rio De Janeiro, Brazil|CSIC, Inst Recursos Nat, Int Global Change Lab LINC Global, Madrid, Spain|Natl Inst Sci & Technol Ecol Evolut & Biodivers C, Goiania, Go, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Forest cover; Scenario modelling; Water quantity; Water quality; Land cover; Sao Paulo;

    机译:森林封面;场景建模;水量;水质;陆地封面;圣保罗;

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