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首页> 外文期刊>Hydrological Processes >Water recovery rate and isotopic signature of cryogenic vacuum extracted spiked soil water following oven-drying at different temperatures
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Water recovery rate and isotopic signature of cryogenic vacuum extracted spiked soil water following oven-drying at different temperatures

机译:在不同温度下烘箱干燥后,低温真空的水回收率和同位素特征提取尖刺土水

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摘要

Extracting water from soils is often a critical step for obtaining soil water isotope information. Cryogenic vacuum extraction (CVE), the most widely used laboratory-based removal technique, produces biased isotope composition and the mechanisms causing the biases remain uncertain. Here, we conducted spiking tests on soil samples oven-dried at 105 and 205 degrees C, respectively. The recovery rate and isotopic composition of the extracted water were analysed. Our results show that conventional oven-drying (105 degrees C) was not sufficient to liberate tightly bound water from soils but oven-drying at temperatures above 205 degrees C was. Part of the tightly bound water in soil was extracted by CVE, because the extraction capacity of CVE (heating at 95 degrees C) was equivalent to oven-drying at temperature between 105 and 205 degrees C. Moreover, the two pretreatments yielded markedly differences in water recovery rates. And with increasing ratios of clay contents to water contents, the recovery rates of the pretreated soil at 105 degrees C trended upward above 100%, but that of 205 degrees C trended downward below 100%. Further, the H-2 and O-18 signatures of the extracted water from the soil pretreated at 205 degrees C were both depleted relative to reference water, but the pretreatment at 105 degrees C showed enriched O-18 and depleted H-2. This suggests that oxygen isotope exchange may have occurred between tightly bound water and soil minerals, resulting in enriched O-18 in water for the 105 degrees C pretreatments. For the 205 degrees C pretreatment, pre-existing soil water was completely removed and relative to spiking water, isotopic signatures of the extracted water followed equilibrium fractionation law due to incomplete extraction. Therefore, our results suggested that the biased isotopic signatures of water extracted by CVE may be partially due to incomplete extraction and mixture of added water with the residual tightly bound water that pre-exists before spiking.
机译:从土壤中提取水通常是获得土壤水同位素信息的关键步骤。低温真空提取(CVE),最广泛使用的基于实验室的去除技术,产生偏置同位素组成和导致偏差的机制仍然不确定。在这里,我们在105和205℃下烘箱干燥的土壤样品进行了尖峰试验。分析了提取的水的回收率和同位素组成。我们的结果表明,常规烘箱干燥(105℃)不足以从土壤中释放紧密的水,但在205℃的温度下干燥烘箱干燥。通过CVE提取土壤中的一部分紧密的水,因为CVE的提取能力(95℃加热)相当于105至205℃的温度下的烘箱干燥。此外,两种预处理产生显着差异显着差异水恢复率。随着粘土含量的比率增加到水含量,预处理土壤的回收率在105摄氏度下趋于向上100%,但205摄氏度下降到下降至100%以下。此外,从205℃下预处理的土壤中提取的水的H-2和O-18签名相对于参照水耗尽,但是在105℃下的预处理显示富集的O-18并耗尽H-2。这表明氧同性能交换可能发生在紧密的水和土壤矿物之间,导致105摄氏度的水中富含O-18。对于205摄氏度的预处理,预先存在的土壤水被完全除去并相对于尖刺水,由于萃取不完全,提取的水的同位素差异遵循平衡分馏法。因此,我们的结果表明,CVE提取的水的偏置同位素签名可能部分是由于在尖刺前预先存在的残留的紧密粘合水的不完全萃取和混合物。

著录项

  • 来源
    《Hydrological Processes》 |2021年第6期|e14248.1-e14248.10|共10页
  • 作者单位

    Northwest A&F Univ Minist Educ Key Lab Agr Soil & Water Engn Arid & Semiarid Are Yangling 712100 Shaanxi Peoples R China;

    Northwest A&F Univ Minist Educ Key Lab Agr Soil & Water Engn Arid & Semiarid Are Yangling 712100 Shaanxi Peoples R China|Univ Saskatchewan Dept Soil Sci Saskatoon SK Canada|Ludong Univ Coll Resources & Environm Engn Yantai Peoples R China;

    Northwest A&F Univ Minist Educ Key Lab Agr Soil & Water Engn Arid & Semiarid Are Yangling 712100 Shaanxi Peoples R China|Changan Univ Sch Water & Environm Xian Peoples R China;

    Northwest A&F Univ Minist Educ Key Lab Agr Soil & Water Engn Arid & Semiarid Are Yangling 712100 Shaanxi Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cryogenic vacuum extraction; incomplete extraction; isotopic exchange; pre-oven dry temperature; recovery rate; spiking test;

    机译:低温真空提取;萃取不完全;同位素交换;预烘箱干燥温度;回收率;尖刺试验;

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