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A novel ATR-FTIR technique for identifying colloid composition in natural waters

机译:一种新型ATR-FTIR技术,用于鉴定天然水域胶体组合物

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摘要

Although understanding colloid composition has been frequently cited as essential to predicting contaminant transport in natural waters, most current methods to collect and identify colloid composition chemically alter the colloids prior to analysis and fail to identify colloid mineralogy and organic components. This paper presents a new, low-cost method employing attenuated total reflection Fourier transform infrared spectroscopy (ATR-FTIR) to identify colloids including organic material in concentrated suspensions. The concentration method employing tangential ultrafiltration at a steady temperature prevents redistribution of dissolved phase and suspended sediments into the colloidal fraction through post-sampling reactions. ATR-FTIR allows for direct analysis of concentrated suspensions rather than requiring drying that may alter composition in the colloidal phase, for example, by precipitating carbonates in samples from karst waters. The ability of this technique to monitor variation in colloidal composition is demonstrated through the examination of colloids under two different flow conditions in a karst aquifer and the West Branch of the Susquehanna River in Central Pennsylvania. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:虽然了解胶体组合物经常被引用,但对于预测天然水域中的污染物,最电流的方法是收集和鉴定胶体组合物在分析之前化学改变胶体,并且未能鉴定胶体矿物学和有机组分。本文介绍了采用衰减的全反射傅里叶变换红外光谱(ATR-FTIR)的新的低成本方法,以鉴定浓缩悬浮液中的有机材料的胶体。在稳定温度下采用切向超滤的浓缩方法可防止通过样品后反应再分布溶解相和悬浮沉积物进入胶体级分。 ATR-FTIR允许直接分析浓缩悬浮液,而不是需要在胶体相中改变组合物的干燥,例如,通过从喀斯特水域的样品中沉淀碳酸盐。通过在喀斯特含水层和宾夕法尼亚州萨克纳河萨克斯纳河的西部分支下的两种不同流动条件下的胶体检查胶体,证明了该技术监测胶体组合物变异的能力。版权所有(c)2014 John Wiley&Sons,Ltd。

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