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Sensitivity of the LuminoTox tool to monitor contaminants of emerging concern in municipal secondary wastewater effluent

机译:LuminoTox工具用于监测市政二级废水中新出现的污染物的灵敏度

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Contaminants of emerging concern (CECs) are generally poorly removed during conventional wastewater treatment. There is a need for rapid, sensitive and inexpensive methods to monitor the quality of treated wastewater effluent. The purpose of this study was to assess the applicability of the LuminoTox as a tool to monitor municipal secondary effluent (SE) and to determine its sensitivity to the presence of CECs. The effect of exposure method on a 14 CECs mix was explored; 20 min in the dark or 30 min under light were both recommended as they were sensitive to the detection of CECs in wastewater while providing a short run time. Stabilized aqueous photosynthetic systems (SAPS) detected the 14 CECs mix in the wastewater matrices when they were present at a concentration in the 6 µg/L to 50 µg/L range. Interference on the biosensors were examined in a range of wastewater characteristics commonly observed in SE and, for most cases, biosensors were not inhibited which suggests that, in most cases, wastewater characteristics would not cause toxic interferences. SAPS detected CECs in SE with different modes of action with the degree of sensitivity of individual CECs developed from experimental and literature values as follows: inhibitors of the plastoquinone binding site within photosystem II > direct or indirect inhibitors of photosynthesis acting on binding sites other than that of the Q_b. SAPS were assessed for their ability to detect residual CECs in SE without sample preparation, however, the effluent examined exhibited minimal inhibition for SAPS II (7 ± 1%) and no inhibition for SAPS I. These results highlight the need for the development of a sample pre-concentration method to increase the biosensor sensitivity towards native CECs. This would allow the LuminoTox to be an effective tool for monitoring wastewater quality with the intent of residual CECs detection.
机译:在常规废水处理过程中,新出现的污染物(CEC)通常很难去除。需要一种快速,灵敏且廉价的方法来监测经处理的废水的质量。这项研究的目的是评估LuminoTox作为监测市政二级废水(SE)的工具的适用性,并确定其对存在CEC的敏感性。探索了暴露方法对14种CECs混合物的影响。推荐在黑暗中20分钟或在光线下30分钟,因为它们对废水中CEC的检测很敏感,而且运行时间短。当废水基质中的14种CEC浓度在6 µg / L至50 µg / L范围内时,稳定的水合光合作用系统(SAPS)可以检测到它们。在SE中通常观察到的一系列废水特征中检查了对生物传感器的干扰,并且在大多数情况下,未抑制生物传感器,这表明,在大多数情况下,废水特征不会引起毒性干扰。 SAPS在SE中检测到具有不同作用方式的CEC,其单个CEC的敏感性程度是根据实验值和文献值得出的,具体如下:光系统II中质体醌结合位点的抑制剂>在该结合位点以外的光合作用的直接或间接光合作用抑制剂Q_b。评估了SAPS在没有样品制备的情况下检测SE中残留CEC的能力,但是,所检测的流出物对SAPS II的抑制作用极小(7±1%),对SAPS I的抑制作用极小。这些结果凸显了开发一种SAPS II的必要性。样品预浓缩方法,以提高生物传感器对天然CEC的敏感性。这将使LuminoTox成为监测残留CEC的废水质量的有效工具。

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