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Hydrogen isotope composition of soil water above and below the hardpan in a rainfed lowland rice field

机译:雨养低地稻田硬pan上方和下方土壤水的氢同位素组成

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摘要

In rainfed lowland rice fields, developing hardpan soil layers must be important to pool rainfall, but during drought that also restricts water movement from below it. We investigated whether the hardpan can maintain a contrast of deuterium/hydrogen isotopic composition ([delta]D) in soil water under field condition. The experimental site was at Rajshahi in north-west Bangladesh. The hardpan soil layers had developed around 0.2 m soil-depth in the field. Soil water from either above or below the hardpan was collected non-destructively with porous cups installed into the field. Using an isotopic ratio mass spectrometer, [delta]D value of each water sample was determined. During the sampling period, the field surface varied from water-saturated to unsaturated status with rainfall event. While the [delta]D values fluctuated by the influence of rainfall, significant differences in the [delta]D values were always detected between above and below the hardpan, revealing heterogeneity in the [delta]D values persisted with the hardpan. The effect of hardpan on retention of the [delta]D signature was further confirmed in a laboratory experiment using intact soil columns collected from a paddy field at Nagoya University. The natural [delta]D signature in rainfed lowland rice field may be useful to identify certain genotypes that demonstrate in situ capability of water acquisition from below the hardpan through [delta]D analysis of the xylem sap.
机译:在雨育的低地稻田中,发育中的硬盘土壤层对于汇集降雨必不可少,但在干旱期间也限制了水从其下方的流动。我们调查了在田间条件下,硬盘能否在土壤水中维持氘/氢同位素组成(δD)的对比。实验地点在孟加拉国西北部的拉杰沙希。在田间,硬盘土壤层的土壤深度约为0.2 m。使用安装在田间的多孔杯,无损收集硬盘上方或下方的土壤水。使用同位素比率质谱仪,确定每个水样品的δD值。在采样期间,由于降雨事件,田间表面从水饱和状态变为非饱和状态。尽管δD值受降雨的影响而波动,但是总是在硬盘上方和下方之间检测到δD值的显着差异,这表明δD值的异质性随着硬盘而持续存在。在实验室实验中,使用从名古屋大学(Nagoya University)的稻田收集的完整土壤柱,进一步证实了硬盘对δD标记保留的影响。雨养低地稻田中的天然δD标记可用于鉴定某些基因型,这些基因型通过对木质部树液的δD分析来证明从硬锅下方就地获取水的能力。

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