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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Understanding the enhanced aqueous solubility of styrene by terrestrial dissolved organic matter using stable isotope mass balance and FTIR
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Understanding the enhanced aqueous solubility of styrene by terrestrial dissolved organic matter using stable isotope mass balance and FTIR

机译:使用稳定的同位素质量平衡和FTIR了解陆地溶解的有机物提高的苯乙烯水溶性

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We present a new stable isotope mass balance method for measuring the enhanced aqueous solubility of specific organic compounds in the presence of natural dissolved organic matter (DOM). It involves interfacing a standard dissolved organic carbon (DOC) analyzer with a stable isotope ratio monitoring system, is applicable to a wide range of model organic compounds and can be tuned to provide maximum precision for a given range of compound solubility and initial natural DOC concentration. Using C-13-labeled styrene as a model compound, we applied the method to investigate the reactivity of Dismal Swamp DOM as a function of season, nominal molecular size and chemical composition as determined using Fourier Transform Infrared Spectroscopy (FTIR). The solubility enhancement of styrene ranged from 23% to 118% relative to deionized water, while DOC-normalized enhancements varied from about 0.04 to 0.35 mu M styrene/mu M DOC as a function of season and nominal molecular weight. Statistical analysis of FTIR spectra reveals a strong positive correlation between the styrene concentration and the carboxyl content of the natural DOM. Reactivity differences between high molecular weight (HMW), low molecular weight (LMW) and total DOM samples are consistent with potential variations in their higher order structures. Published by Elsevier Ltd.
机译:我们提出了一种新的稳定同位素质量平衡方法,用于在自然溶解的有机物(DOM)存在的情况下测量特定有机化合物增强的水溶性。它涉及将标准溶解有机碳(DOC)分析仪与稳定的同位素比监测系统进行接口连接,适用于各种模型有机化合物,并且可以进行调整以针对给定范围的化合物溶解度和初始自然DOC浓度提供最大的精度。使用C-13标记的苯乙烯作为模型化合物,我们应用该方法研究了使用Fourier变换红外光谱法(FTIR)确定的“暗淡沼泽DOM”的反应性与季节,标称分子大小和化学组成的关系。相对于去离子水,苯乙烯的溶解度提高幅度为23%至118%,而DOC归一化的提高幅度随季节和标称分子量而变化,范围从约0.04至0.35μM苯乙烯/μMDOC。 FTIR光谱的统计分析表明,苯乙烯浓度与天然DOM的羧基含量之间具有很强的正相关性。高分子量(HMW),低分子量(LMW)和总DOM样品之间的反应性差异与其高阶结构中的潜在变化一致。由Elsevier Ltd.发布

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