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Application of surrogates indicators and high-resolution massspectrometry to evaluate the efficacy of UV processes for attenuation ofemerging contaminants in water

机译:替代物指标和高分辨率质量的应用分光光度法评估紫外线过程对光衰减的功效水中新出现的污染物

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摘要

In response to water scarcity, strategies relying on multiple processes to turn wastewater effluent into potable water are being increasingly considered by many cities. In such context, the occurrence of contaminants as well as their fate during treatment processes is a major concern. Three analytical approaches where used to characterize the efficacy of UV and UV/H2O2 processes on a secondary wastewater effluent. The first analytical approach assessed bulk organic parameters or surrogates before and after treatment, while the second analytical approach measured the removal of specific indicator compounds. Sixteen trace organic contaminants were selected due to their relative high concentration and detection frequency over eight monitoring campaigns. While their removal rate ranges from approximately 10 to >90%, some of these compounds can be used to gauge process efficacy (or failure). The third analytical approach assessed the fate of unknown contaminants through high-resolution time-of-flight (TOF) mass spectrometry with advanced data processing and demonstrated the occurrence of several thousand organic compounds in the water. A heat map clearly evidenced compounds as recalcitrant or transformed by the UV processes applied. In addition, thosechemicals with similar fate were able to be grouped together into clusters toidentify new indicator compounds. In this manuscript, each approach is evaluatedwith advantages and disadvantages compared.
机译:为了应对缺水问题,许多城市越来越多地考虑依靠多种过程将废水转化为饮用水的策略。在这种情况下,在处理过程中污染物的产生及其命运是一个主要问题。三种分析方法可用于表征UV和UV / H2O2工艺对二次废水的功效。第一种分析方法评估处理前后的总体有机参数或替代物,而第二种分析方法测量特定指示剂化合物的去除。由于它们在八次监测活动中相对较高的浓度和检测频率,因此选择了十六种痕量有机污染物。尽管它们的去除率范围从大约10%到> 90%,但是其中一些化合物可用于评估工艺效率(或失败)。第三种分析方法通过具有先进数据处理功能的高分辨率飞行时间(TOF)质谱仪评估了未知污染物的命运,并证明了水中存在数千种有机化合物。热图清楚地证明了化合物是顽固性的,或者通过所应用的紫外线处理而转变了。另外,那些命运相似的化学物质能够被归类为确定新的指示剂化合物。在本手稿中,对每种方法进行了评估与优点和缺点相比。

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