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通过高场2H NMR定量测定冻土中的未冻水

Quantifying unfrozen water in frozen soil by high-field 2H NMR.

作者信息

Sparrman Tobias, Oquist Mats, Klemedtsson Leif, Schleucher Jürgen, Nilsson Mats

机构信息

Department of Medical Biochemistry and Biophysics, Umeå University, SE-901 87 Umeå, Sweden.

出版信息

Environ Sci Technol. 2004 Oct 15;38(20):5420-5. doi: 10.1021/es0493695.

Abstract

To understand wintertime controls of biogeochemical processes in high latitude soils it is essential to distinguish between direct temperature effects and the effects of changes in water availability mediated by freezing. Efforts to separate these controls are hampered by a lack of adequate methods to determine the proportion of unfrozen water. In this study we present a high-field 2H2O NMR method for quantifying unfrozen water content in frozen soil. The experimental material consisted of the humic layer of a boreal spruce forest soil mixed with varying proportions of quartz sand and humidified with deuterium-enriched water. The relative standard deviation of unfrozen water content (measured as NMR signal integral) was less than 2% for repeated measurements on a given sample and 3.5% among all samples, based on a total of 16 measurements. As compared to 1H NMR, this 2H NMR method was found to be superior for several reasons: it is less sensitive to field inhomogeneity and paramagnetic impurities, it gives a bigger line shape difference between the ice and liquid signal, it shows a sharper response to water fusion, and it excludes the possibility of hydrogen in the organic material interfering with the measurement.

摘要

为了解高纬度土壤中生物地球化学过程的冬季控制机制,区分温度的直接影响和冻结介导的水分有效性变化的影响至关重要。由于缺乏确定未冻水比例的适当方法,分离这些控制因素的努力受到了阻碍。在本研究中,我们提出了一种高场2H2O NMR方法来量化冻土中的未冻水含量。实验材料由北方云杉林土壤的腐殖质层与不同比例的石英砂混合而成,并用富含氘的水进行加湿。基于总共16次测量,对给定样品的重复测量中未冻水含量(以NMR信号积分测量)的相对标准偏差小于2%,所有样品之间为3.5%。与1H NMR相比,这种2H NMR方法具有几个优点:它对场不均匀性和顺磁性杂质不太敏感,它在冰和液体信号之间给出更大的线形差异,它对水的融化表现出更敏锐的响应,并且它排除了有机材料中的氢干扰测量的可能性。

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