评估南非三家污水处理厂排放的废水的遗传毒性潜力

Rahzia Hendricks, Hein H. Du Preez
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摘要

污水处理厂主要根据具体排放许可证的规定,对其生物需氧量和微生物成分进行质量监测。在夏季和冬季,污水进水和出水取自南非的三家污水处理厂。之前的毒性测试(如鱼腥弧菌生物发光试验和褐藻生长抑制试验)表明,污水具有急性毒性。为了进一步调查污水的质量,我们使用 SOS 染色体和 UMU 染色体测试来确定污水的遗传毒性潜力。SOS 染色体测试显示,两个季节的进水诱导因子值均高于 1.5,表明进水具有基因毒性(p < 0.05)。冬季和夏季排放的污水的诱导系数也大于 1.5(p < 0.05)。用 UMU 色度测试法检测进水和出水的诱导因子范围(分别为 1.98 ± 0.38 和 2.40 ± 0.51)。研究结果表明,该地区的点源可导致可能具有基因毒性的进水和出水。设计一项监测计划,包括检测监管决定因素和额外的专门检测,可以更全面地了解废水质量和污水处理厂的效率,以减少有害物质的排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing the genotoxic potential of wastewater effluents from three wastewater treatment plants in South Africa
Wastewater treatment plants are mainly monitored for quality in terms of their biological oxygen demand and microbiological constituents as stipulated in the specific discharge permit. Wastewater influents and effluents were taken from three WWTPs in South Africa over the summer and winter seasons. Previous toxicity tests such as the Vibrio fischeri bioluminescence assay and the Selenastrum capricornutum algal growth inhibition test have shown that the effluents displayed acute toxicity. To further investigate the quality of the effluent, the genotoxic potential was determined using the SOS Chromosome and UMU Chromosome test. The SOS Chromotest demonstrated induction factor values of above 1.5 for influents during both seasons indicating that the influents were genotoxic (p < 0.05). Effluents discharged during winter and summer also had induction factors greater than 1.5 (p < 0.05). A range of induction factors was detected with the UMU-Chromotest for influents and effluents (1.98 ± 0.38 and 2.40 ± 0.51, respectively). Findings show point sources in the area can lead to influents and effluents that are potentially genotoxic. Designing a monitoring programme that encompasses testing of both the regulatory determinants with additional specialized tests can provide a more holistic view of wastewater quality and the efficiency of WWTP to reduce the discharge of hazards.
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