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Estimation of silica species' concentrations in lithium and magnesium chloride solutions from the peak intensities observed by FAB-MS

机译:通过FAB-MS观察到的峰强度估算锂和氯化镁溶液中二氧化硅的浓度

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The concentrations of dissolved silica species in electrolyte solutions were derived from the relative intensities of silica species, obtained from FAB-MS measurements (fast atom bombardment mass spectrometry), and the total concentration of dissolved silica. Generally, silica species in aqueous solutions form various complexes with cations such as sodium (Na+) or calcium (Ca2+), and it has been difficult to determine the concentration of each species. From the observed results from FAB-MS, the chemical species of silica dissolved in lithium chloride (LiCl) and magnesium chloride (MgCl2) solutions do not include complexes with these cations, and thus Li+ and Mg2+ do not replace protons of the silanol groups in silica. Therefore, in LiCl and MgCl2 solutions, all of the simple structures of silicate species can be identified. The concentration of each silica species was estimated on the basis of its mass spectra peak intensities and the total concentration of silica as determined by colorimetry. This study yields the concentration of each silica species within small errors, whereas conventional methods (such as Si-29-NMR) have not yielded the concentrations of individual silica species. From these results, dimers and cyclic tetramers are concluded to be the main species in silica solutions with concentrations of at most 0.1 to 0.2 mu mol.dm(-3). This tendency should also occur in NaCl and CaCl2 solutions, which are major electrolytes in natural waters.
机译:电解质溶液中溶解的二氧化硅物种的浓度是根据从FAB-MS测量(快速原子轰击质谱)获得的二氧化硅物种的相对强度以及溶解的二氧化硅的总浓度得出的。通常,水溶液中的二氧化硅物质与阳离子(例如钠(Na +)或钙(Ca2 +))形成各种络合物,因此很难确定每种物质的浓度。从FAB-MS观察到的结果来看,溶解在氯化锂(LiCl)和氯化镁(MgCl2)溶液中的二氧化硅的化学物质不包括与这些阳离子的络合物,因此Li +和Mg2 +不能取代硅醇基的质子。二氧化硅。因此,在LiCl和MgCl2溶液中,可以确定所有简单的硅酸盐物质结构。根据其质谱峰强度和比色法确定的二氧化硅总浓度,估算每种二氧化硅的浓度。这项研究得出了每个二氧化硅物种的浓度,误差很小,而常规方法(例如Si-29-NMR)却没有得出单个二氧化硅物种的浓度。根据这些结果,可以推断二聚体和环状四聚体是二氧化硅溶液中的主要物质,浓度最高为0.1至0.2μmol.dm(-3)。这种趋势也应该发生在NaCl和CaCl2溶液中,这是天然水中的主要电解质。

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