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Experimental investigations of water fluxes within the soil-vegetation-atmosphere system: Stable isotope mass-balance approach to partition evaporation and transpiration

机译:土壤-植被-大气系统内水通量的实验研究:稳定的同位素质量平衡法,用于分区蒸发和蒸腾作用

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Irrigated agriculture is the largest user of freshwater worldwide and the scale of irrigated agriculture can be so large that it can have dramatic effects on the water cycle and even alter regional climates. Therefore, it is vital to improve the water use efficiency of irrigated lands in order to address the sustainable use of water resources, the growing need for agricultural products, and the health of ecosystems. Environmental isotopes have unique attributes that make them particularly suitable for tracing hydrological pathways and quantifying hydrological fluxes within the soil-vegetation-atmosphere system. The stable isotopic composition of soil water is mainly controlled by precipitation or irrigation inputs and evaporative losses. Because transpiration does not fractionate soil water isotopes, it is possible to estimate the relative proportions of evaporation and transpiration using isotopic mass balance calculations. In this study experimental investigations, combining classical hydrometric measurements, tracer hydrological methods and a soil water model were applied to laboratory lysimeters to study the transpiration processes of Teff (Eragrostis tea (Zucc.) Trotter). Teff is an annual bunch cereal and an important aliment in Ethiopia and Eritrea and it is also gaining popularity in other countries. To determine the soil water contents, sensors using a capacitance/frequency domain technology were installed at different depths and soil water samples for the isotope analysis were taken using pore water samplers. Water contents in different depths and water fluxes, such as percolation and evaporation were modeled using the HYDRUS-1D software package. By using an isotope mass balance model the total evaporation and the fractions between soil evaporation and transpiration could be determined. The water losses which were estimated using the isotope mass-balance approach are in good agreement with the measured values using classical hydrometric measurements. The proportion of water lost by transpiration (T/ET) during the study period was about 0.7 for the Teff covered laboratory set-up.
机译:灌溉农业是全球最大的淡水使用者,灌溉农业的规模可能很大,以至于对水循环产生巨大影响,甚至改变了区域气候。因此,至关重要的是提高灌溉土地的水分利用效率,以解决水资源的可持续利用,对农产品日益增长的需求以及生态系统健康的问题。环境同位素具有独特的属性,使其特别适合于追踪水文路径并量化土壤-植被-大气系统中的水文通量。土壤水的稳定同位素组成主要受降水或灌溉输入以及蒸发损失的控制。由于蒸腾作用不会使土壤水同位素分馏,因此可以使用同位素质量平衡计算来估算蒸发和蒸腾作用的相对比例。在这项研究中,实验研究结合经典的水文测量,示踪水文方法和土壤水模型应用于实验室测渗仪,以研究特夫(Eragrostis茶(Zucc。)猪蹄)的蒸腾过程。 Teff是埃塞俄比亚和厄立特里亚的一年生谷物谷物和重要食品,在其他国家也很受欢迎。为了确定土壤含水量,在不同深度安装了使用电容/频域技术的传感器,并使用孔隙水采样器采集了用于同位素分析的土壤水样品。使用HYDRUS-1D软件包对不同深度的水含量和水通量(例如渗滤和蒸发)进行建模。通过使用同位素质量平衡模型,可以确定总蒸发量以及土壤蒸发和蒸腾作用之间的比例。使用同位素质量平衡法估算的水损失与使用经典水文测量法得到的测量值非常吻合。在Teff覆盖的实验室环境中,研究期间蒸腾损失的水分(T / ET)比例约为0.7。

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