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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Demineralization of marine and freshwater sediments for CP/MAS ~(13)C NMR analysis
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Demineralization of marine and freshwater sediments for CP/MAS ~(13)C NMR analysis

机译:用于CP / MAS〜(13)C NMR分析的海洋和淡水沉积物的脱盐

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A method was developed to demineralize sediment trap material and marine sediments containing labile organic matter (OM), in preparation for cross polarization and magic angle spinning (CP/MAS) solid-state 13C NMR analysis. Carbonate and silicate minerals were dissolved with HCI and a mixture of dilute HCI/HF, respectively. Demineraliza- tion kinetics were assessed for a range of freshwater and marine sediments, as well as pure mineral and organic samples. For samples with a very low organic carbon (OC) concentration ( < I wt.%) and samples containing a large fraction of acid-soluble OC, the organic molecules solubilized during the dissolution of the mineral fraction were recovered by freeze-drying the supernatants following (i) removal of dissolved calcium and residual HF by CaF2 precipitation, (ii) removal of the dissolved paramagnetic metals by sulfide precipitation, and (iii) desalting using ion retardation chroma- tography. When applied to a wide range of freshwater and marine particles, demineralization resulted in OC enrichment factors that varied between 2.2 and 20.8, with losses representing less than 20.5% of the initial OC content. X-ray diffraction and fluorescence analysis of the natural and demineralized samples showed that minerals and paramagnetic metals were effectively removed. While m91ecular fractionation might be substantial when the mineral constituents were dissolved with HCI and HF, the small changes ( < 11% ) in the (C/N)a and (H/C)a ratios when the acid-soluble organic matter was recovered suggest that the molecular composition of the organic fraction was not appreciably altered. In combination with CP/MAS 13C NMR spectroscopy, this demineralization method allows comprehensive elucidation of the chemical structure of total OC, especially in samples with very low OC concentrations and/or with a significant fraction of chemically labile organic compounds.
机译:为了准备交叉极化和魔角旋转(CP / MAS)固态13C NMR分析,开发了一种方法来对含不稳定有机物(OM)的沉积物捕集材料和海洋沉积物进行脱矿质处理。将碳酸盐和硅酸盐矿物分别用HCl和稀HCl / HF的混合物溶解。评估了一系列淡水和海洋沉积物以及纯矿物和有机样品的脱矿动力学。对于具有非常低的有机碳(OC)浓度(

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