首页> 外文期刊>Geoderma: An International Journal of Soil Science >Valley reshaping and damming induce water table rise and soil salinization on the Chinese Loess Plateau
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Valley reshaping and damming induce water table rise and soil salinization on the Chinese Loess Plateau

机译:谷重塑与坝上中国黄土高原诱发水台面上升与土壤盐渍化

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摘要

A megaproject, "Gully Land Consolidation" (GLC), was launched on the Chinese Loess Plateau in 2011 to combat land degradation and create new farmlands. However, the newly-claimed farmlands have suffered soil salinization, and the mechanism of salinization has been inadequately addressed. In this study, a creek valley that completed the GLC project in 2014 was selected and a total of 17 new farmlands along the reshaped creek valley were investigated in 2016. Moreover, the hillslope farmlands without conducting the GLC project, the loess parent material that used to fill the stream channel, and the water samples from reservoirs, irrigation wells and spring outlets in the reshaped valley were sampled and chemically analyzed. We found that the new farmlands experienced a significant rise in the water table that played a key role on soil salinization. After GLC, & 80% of the sampling sites (14 out of 17) showed a shallow depth (&= 3 m) from the soil surface down to the groundwater influence zone. Moreover, the closer the downstream farmlands to the newly-built dams, the shallower the water table, indicating considerable impacts of constructing dams on the water table depth in the near-dam farmlands. At the study site, more than half of the shallow soil samples (20 cm depth) underwent light soil salinization, and the most significant soil salinity occurred in the upper stream farmlands. The interplay between a near-surface water table, a high evaporation rate, landform features, and the alkaline properties of the loessial soil has led to the significant soil salinization in the upper stream of the valley. To mitigate soil salinization and ensure the sustainability of the newly-created farmlands in GLC, drainage trenches in the downstream near-dam farmlands and the drainage canals on both sides of the reshaped valley are suggested, which improve the drainage efficiency and control the water table depth.
机译:兆画幕“沟壑土地整合”(GLC)于2011年推出了中国黄土高原,以打击土地退化并创造新的农田。然而,新闻新闻的农田遭受了土壤盐渍化,盐渍化机制已经不足以解决。在这项研究中,2014年完成了GLC项目的溪流谷,于2016年举办了17艘沿着Reshaped Creek Valley的新农田。此外,Hillslope Farmlands而不进行GLC项目,这是一种使用的黄土母体材料为了填充流通道,并从储存器中的水样品,灌溉井和弹簧出口中被取样并化学分析。我们发现新的农田在水表中经历了显着的崛起,在土壤盐渍化上发挥了关键作用。 glc后,& 80%的采样位点(17个中的17个)显示,从土壤表面下降到地下水影响区的浅深度(& = 3米)。此外,较近新建水坝的下游农田越越来越浅,水桌子,表明在近坝农田中建造水坝对水位深度的相当大的影响。在研究现场,超过一半的浅层土壤样品(20厘米深度)接受了轻微的土壤盐渍化,并且在上游农田中发生了最显着的土壤盐度。近地表水位的相互作用,高蒸发速率,地形特征和后土土壤的碱性特性导致了山谷上游的显着土壤盐渍化。为了减轻土壤盐渍化并确保新创造的Glc中的农田的可持续性,建议在靠近坝上的下游近地区的排水沟和被重塑谷两侧的排水运河,从而提高了排水效率并控制水位深度。

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  • 作者单位

    Chinese Acad Sci Inst Earth Environm State Key Lab Loess &

    Quaternary Geol Xian 710061 Shaanxi Peoples R China;

    Penn State Univ Dept Ecosyst Sci &

    Management University Pk PA 16802 USA;

    Chinese Acad Sci Inst Earth Environm State Key Lab Loess &

    Quaternary Geol Xian 710061 Shaanxi Peoples R China;

    Chinese Acad Sci Inst Earth Environm State Key Lab Loess &

    Quaternary Geol Xian 710061 Shaanxi Peoples R China;

    Chinese Acad Sci Inst Earth Environm State Key Lab Loess &

    Quaternary Geol Xian 710061 Shaanxi Peoples R China;

    Chinese Acad Sci Inst Earth Environm State Key Lab Loess &

    Quaternary Geol Xian 710061 Shaanxi Peoples R China;

    Chinese Acad Sci Inst Earth Environm State Key Lab Loess &

    Quaternary Geol Xian 710061 Shaanxi Peoples R China;

    Chinese Acad Sci Inst Earth Environm State Key Lab Loess &

    Quaternary Geol Xian 710061 Shaanxi Peoples R China;

    Dongying Hydrol Bur Dongying 257091 Shandong Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤学;
  • 关键词

    Farmland creation; Gully land consolidation; Land degradation; Land management; Soil quality;

    机译:农田创作;沟壑落地;土地退化;土地管理;土壤质量;
  • 入库时间 2022-08-20 03:09:46

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