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首页> 外文期刊>Isotopes in environmental and health studies >Comparison of pore water samplers and cryogenic distillation under laboratory and field conditions for soil water stable isotope analysis
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Comparison of pore water samplers and cryogenic distillation under laboratory and field conditions for soil water stable isotope analysis

机译:在实验室和野外条件下比较孔隙水采样器和低温蒸馏进行土壤水稳定同位素分析的比较

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摘要

We used pore water samplers (PWS) to sample for isotope analysis (1) only water, (2) soil under laboratory conditions, and (3) soil in the field comparing the results with cryogenic extraction (CE). In (1) and (2), no significant differences between source and water extracted with PWS were detected with a mean absolute difference (MAD) always lower than 2 parts per thousand for delta H-2 and 1 parts per thousand for delta O-18. In (2), CE water was more enriched than PWS-extracted water, with a MAD respect to source water of roughly 8 parts per thousand for delta H-2 and 4 parts per thousand for delta O-18. In (3), PWS water was enriched relative to CE water by 3 parts per thousand for delta H-2 and 0.9 parts per thousand for delta O-18. The latter result may be due to the distinct water portions sampled by the two methods. Large pores, easily sampled by PWS, likely retain recent, and enriched, summer precipitation while small pores, only sampled by CE, possibly retain isotopically depleted water from previous winter precipitation or irrigation inputs. Accuracy and precision were greater for PWS relative to CE. PWS is therefore suggested as viable tool to extract soil water for stable isotope analysis, particularly for soils used in this study (sandy and silty loams).
机译:我们使用孔隙水采样器(PWS)对同位素分析进行​​采样(1)仅水,(2)实验室条件下的土壤,以及(3)现场的土壤与低温萃取(CE)进行比较。在(1)和(2)中,未检测到PWS提取的水源与水之间的显着差异,对于H-2而言,平均绝对差(MAD)总是低于千分之2,对于O-δ而言,其绝对值总是低于千分之一18岁在(2)中,CE水比PWS提取的水更富集,对于源水而言,MAD对于H-2而言约为千分之八,对于O-18而言约为千分之四。在(3)中,相对于CE水,PWS水的δH-2含量为千分之三,而δO-18的含量为千分之0.9。后一种结果可能是由于两种方法采样的水份不同。通过PWS容易采样的大孔可能保留了近期丰富的夏季降水,而仅通过CE采样的小孔可能保留了先前冬季降水或灌溉输入中的同位素消耗水。相对于CE,PWS的准确性和精度更高。因此,建议使用PWS作为提取土壤水以进行稳定同位素分析的可行工具,尤其是用于本研究的土壤(沙质和粉质壤土)。

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