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Transpiration on the rebound in lowland Sumatra

机译:对低地苏门答腊省反弹的蒸腾

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摘要

Following large-scale conversion of rainforest, rubber and oil palm plantations dominate lowland Sumatra (Indonesia) and other parts of South East Asia today, with potentially far-reaching ecohydrological consequences. We assessed how such land-use change affects plant transpiration by sap flux measurements at 42 sites in selectively logged rainforests, agroforests and rubber and oil palm monoculture plantations in the lowlands of Sumatra. Site-to-site variability in stand-scale transpiration and tree-level water use were explained by stand structure, productivity, soil properties and plantation age. Along a land-use change trajectory forest rubber-oil palm, time-averaged transpiration decreases by 43 +/- 11% from forest to rubber monoculture plantations, but rebounds with conversion to smallholder oil palm plantations. We uncovered that particularly commercial, intensive oil palm cultivation leads to high transpiration (827 +/- 77 mm yr(-1)), substantially surpassing rates at our forest sites (589 +/- 52 mm yr(-1)). Compared to smallholder oil palm, land-use intensification leads to 1.7-times higher transpiration in commercial plantations. Combined with severe soil degradation, the high transpiration may cause periodical water scarcity for humans in oil palm-dominated landscapes. As oil palm is projected to further expand, severe shifts in water cycling after land-cover change and water scarcity due to land-use intensification may become more widespread.
机译:雨林的大规模转换后,橡胶和油棕种植园占据了低地苏门答腊(印度尼西亚)和东南亚的其他地区,潜在的生态学后果。我们评估了这种土地使用变化如何影响苏门答腊的低地的42个地点的SAP通量测量因SAP通量测量,在42个地点。通过站立结构,生产力,土壤性质和种植年龄,解释了站点蒸腾蒸腾和树级水的现场对现场的可变性。沿着土地使用改变轨迹林橡胶 - 油棕,时间平均蒸腾从森林到橡胶单一栽培种植园减少了43 +/- 11%,但转化为小农油棕榈种植园反弹。我们发现特别是商业,密集的油棕榈栽培,导致高蒸腾(827 +/- 77mm YR(-1)),在我们的森林网站(589 +/- 52 mm YR(-1))上大致超过速率。与小农油棕相比,土地利用率导致商业种植园蒸腾率高的1.7倍。结合严重的土壤降解,高蒸腾可能会导致油掌上型景观的人类的周期性水资源稀缺。随着油棕被预测到进一步扩展,在陆地覆盖变化和由于土地利用率引起的水资源稀缺后,水循环的严重变化可能变得更加普遍。

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  • 来源
    《Agricultural and Forest Meteorology》 |2019年第2019期|共12页
  • 作者单位

    Univ Goettingen Trop Silviculture &

    Forest Ecol Buesgenweg 1 D-37077 Gottingen Germany;

    Univ Goettingen Trop Silviculture &

    Forest Ecol Buesgenweg 1 D-37077 Gottingen Germany;

    Univ Goettingen Bioclimatol Gottingen Germany;

    Univ Goettingen Trop Silviculture &

    Forest Ecol Buesgenweg 1 D-37077 Gottingen Germany;

    Univ Goettingen Silviculture &

    Forest Ecol Temperate Zones Gottingen Germany;

    Univ Goettingen Soil Sci Temperate Ecosyst &

    Agr Soil Sci Gottingen Germany;

    Agcy Meteorol Climatol &

    Geophys Ctr Climate Change Informat Jakarta Indonesia;

    Univ Goettingen Trop Silviculture &

    Forest Ecol Buesgenweg 1 D-37077 Gottingen Germany;

    Bogor Agr Univ Forest Management Bogor Indonesia;

    Univ Goettingen Plant Ecol &

    Ecosyst Res Gottingen Germany;

    Univ Goettingen Plant Ecol &

    Ecosyst Res Gottingen Germany;

    Univ Goettingen Biodivers Macroecol &

    Biogeog Gottingen Germany;

    Univ Goettingen Soil Sci Temperate Ecosyst &

    Agr Soil Sci Gottingen Germany;

    Univ Goettingen Plant Ecol &

    Ecosyst Res Gottingen Germany;

    Univ Goettingen Biodivers Macroecol &

    Biogeog Gottingen Germany;

    Univ Goettingen Ctr Biodivers &

    Sustainable Land Use Gottingen Germany;

    Univ Goettingen Biodivers Macroecol &

    Biogeog Gottingen Germany;

    Univ Goettingen Forest Bot &

    Tree Physiol Gottingen Germany;

    Univ Goettingen Silviculture &

    Forest Ecol Temperate Zones Gottingen Germany;

    Univ Goettingen Trop Silviculture &

    Forest Ecol Buesgenweg 1 D-37077 Gottingen Germany;

    Univ Goettingen Bioclimatol Gottingen Germany;

    Univ Goettingen Trop Silviculture &

    Forest Ecol Buesgenweg 1 D-37077 Gottingen Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业基础科学;
  • 关键词

    Forest; Jungle rubber; Land-cover change; Land-use intensification; Oil palm; Tropics; Rubber plantation; Sap flux; Water use;

    机译:森林;丛林橡胶;陆地覆盖变化;土地使用强化;油棕;热带地带;橡胶种植园;SAP助焊剂;用水;

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