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A comparison of fluorescein and deuterated water as tracers for determination of constructed wetland retention time

机译:比较荧光素和氘化水作为示踪剂测定人工湿地保留时间

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摘要

Retention time of treated water in a horizontal subsurface flow constructed wetland was determined in the non-vegetative period using fluorescein and deuterium oxide. Fluorescein served as one of the most frequent tracers detectable at extremely low concentrations by fluorimetry; however, deuterated water (concentrations of deuterium measured by IRMS and expressed as δ (‰) against VSMOW) was used to precisely simulate the treated water flow movement. Tracer retention time (TRT) of fluorescein was 194 h while deuterated water TRT was 192 h. TRT and nominal hydraulic retention time (nHRT, 190 h) were nearly exactly equal. The tracer behavior of deuterated water was almost ideal. On the other hand, the fluorescein movement through the system was slightly influenced by the interaction with the vegetation bed (sorption causing the tailing of tracer-response curves). Nevertheless, both tracers can be successfully used and provide similar results. Retention time is a very important characteristic of a constructed wetland. It is closely connected with the efficiency of the contaminant removal from treated water. It has to be determined correctly when wetland operation parameters are optimized. The choice of the suitable and reliable tracer is always necessary. Fluorescein takes preference with respect to its simple and inexpensive determination.
机译:在非营养期内,使用荧光素和氧化氘确定处理后水在水平地下流动人工湿地中的保留时间。荧光素是荧光法中极低浓度可检测到的最常见的示踪剂之一。但是,氘化水(通过IRMS测量的氘浓度,相对于VSMOW表示为δ(‰))被用来精确地模拟处理过的水的流动。荧光素的示踪剂保留时间(TRT)为194 h,而氘化水的TRT为192 h。 TRT和名义水力停留时间(nHRT,190小时)几乎完全相等。氘水的示踪剂行为几乎是理想的。另一方面,荧光素在整个系统中的移动受到与植物床层相互作用(吸附导致示踪剂响应曲线拖尾)的轻微影响。但是,两种示踪剂都可以成功使用并提供相似的结果。保留时间是人工湿地的一个非常重要的特征。它与从处理过的水中去除污染物的效率密切相关。优化湿地运行参数时必须正确确定。始终需要选择合适且可靠的示踪剂。荧光素在其简单和廉价的测定方面是优选的。

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