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Matric Potential Measurements by Polymer Tensiometers in Cropped Lysimeters under Water-Stressed Conditions

机译:在水胁迫条件下,聚合物张力计的聚合物张力计的潜在测量

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摘要

In many regions of the world, plant growth and productivity are limited by water deficits. As a result of more frequent and intense droughts, the area of land characterized as very dry has more than doubled since the 1970s. Consequently, understandingroot water uptake under water-stressed conditions is gaining importance. The performance of a recently developed polymer tensiometer (POT) designed to measure matric potentials down to -1.6 MPa was evaluated and compared with volumetric moisture contentmeasurements in dry soil. Three irrigation intensities created severe, intermediate, and no water stress conditions in lysimeters with growing maize (Zea mays L.) plants. By monitoring matric potentials using POTs, levels of local water stress in our experiments were better defined. When the defined stress levels were reached, volumetric moisture measurements for this particular loam soil were below 0.1, thus less informative compared with matric potential measurements. The observed matric potential profiles indicate significant root water uptake between 0.3- and 0.5-m depth in the later growth stages under water-stressed conditions. The temporal pattern of matric potential profiles reflected changing root water uptake behavior under dry conditions. As the total soil water potential is a direct indication of the amount of energy required by plants to take up water, POTs may contribute to quantifying root water uptake in dry soils.
机译:在世界的许多地区,植物生长和生产力受水赤字的限制。由于更频繁和强烈的干旱,由于自20世纪70年代以来,土地的特征在于非常干燥的地区。因此,在耐水条件下的理解水吸收是越来越重要的。评价设计用于测量Matric电位的最近开发的聚合物张力计(罐)的性能,并与干燥土壤中的体积水分含量进行比较。三种灌溉强度产生严重,中间体,没有生长玉米(Zea mays L.)植物的溶血仪中的水胁迫条件。通过使用罐监测Matric电位,我们实验中的局部水胁迫水平更好地定义。当达到定义的应力水平时,该特定壤土土壤的体积水分测量值低于0.1,因此与Matric电位测量相比较少的信息。所观察到的Matric电位型材在水胁迫条件下在后期生长阶段的0.3-和0.5米深度之间表明显着的根水吸收。在干燥条件下,Matric潜在曲线的时间模式反映了改变根水吸收行为。随着土壤水势总量是植物占用水所需的能量的直接指示,罐可能有助于量化干燥土壤中的根水吸收。

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  • 来源
    《Vadose zone journal VZJ》 |2008年第3期|共7页
  • 作者单位

    Wageningen Univ. Dep. of Environmental Science Soil Physics Ecohydrology and Groundwater Management Group Droevendaalsesteeg 4 6708 PB Wageningen The Netherlands;

    Wageningen Univ. Dep. of Environmental Science Soil Physics Ecohydrology and Groundwater Management Group Droevendaalsesteeg 4 6708 PB Wageningen The Netherlands;

    ALTERRA Droevendaalsesteeg 4 6708 PB Wageningen The Netherlands;

    Wageningen Univ. Dep. of Environmental Science Soil Physics Ecohydrology and Groundwater Management Group Droevendaalsesteeg 4 6708 PB Wageningen The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学、地球科学;
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