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Distinguishing stage 1 and 2 reverse osmosis permeates using fluorescence spectroscopy

机译:使用荧光光谱法区分第1阶段和第2阶段反渗透

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Fluorescence excitation-emission matrix (EEM) spectroscopy was used to distinguish between two stages of reverse osmosis (RO) permeates as the first step towards investigating the potential application of fluorescence as a monitoring tool for membrane performance. The signal response of several fluorescence peaks present in Stage 1 and Stage 2 RO permeates of an advanced water treatment plant were compared. The humic-like fluorescence region was found to have the largest percentage difference between stages and therefore was the most appropriate for enabling differentiation. Increases in humic-like fluorescence did not correlate with increases in conductivity or dissolved organic carbon measurements. This suggests that fluorescence is a more selective and sensitive method for monitoring the organic composition of RO permeates than established methods. Fluorescence is therefore a promising tool for improved water quality monitoring of RO permeates.
机译:荧光激发-发射矩阵(EEM)光谱用于区分反渗透(RO)渗透的两个阶段,这是研究荧光作为膜性能监测工具的潜在应用的第一步。比较了高级水处理厂的阶段1和阶段2 RO渗透物中存在的几个荧光峰的信号响应。发现在各阶段之间,类腐殖质的荧光区域具有最大的百分比差异,因此最适于实现分化。腐殖质样荧光的增加与电导率的增加或溶解的有机碳测量值不相关。这表明,荧光是比现有方法监测RO渗透物有机组成更具选择性和敏感性的方法。因此,荧光是改善反渗透渗透物水质监测的有前途的工具。

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