Brienza M, Mahdi Ahmed M, Escande A, Plantard G, Scrano L, Chiron S, Bufo S A, Goetz V
Department of Sciences, University of Basilicata, Viale dell'Ateneo Lucano, Potenza, Italy; PROMES-CNRS, UPR 8521, Perpignan, France.
HydroSciences Montpellier, UMR 5569, University of Montpellier, France.
Chemosphere. 2016 Apr;148:473-80. doi: 10.1016/j.chemosphere.2016.01.070. Epub 2016 Feb 4.
Wastewater tertiary treatment by advanced oxidation processes is thought to produce a treated effluent with lower toxicity than the initial influent. Here we performed tertiary treatment of a secondary effluent collected from a Waste Water Treatment Plant via homogeneous (solar/HSO5(-)/Fe(2+)) and heterogeneous (solar/TiO2) solar advanced oxidation aiming at the assessment of their effectiveness in terms of contaminants' and toxicity abatement in a plain solar reactor. A total of 53 organic contaminants were qualitatively identified by liquid chromatography coupled to high-resolution mass spectrometry after solid phase extraction. Solar advanced oxidation totally or partially removed the major part of contaminants detected within 4.5 h. Standard toxicity tests were performed using Vibrio fischeri, Daphnia magna, Pseudokirchneriella subcapitata and Brachionus calyciflorus organisms to evaluate acute and chronic toxicity in the secondary or tertiary effluents, and the EC50% was calculated. Estrogenic and genotoxic tests were carried out in an attempt to obtain an even sharper evaluation of potential hazardous effects due to micropollutants or their degradation by-products in wastewater. Genotoxic effects were not detected in effluent before or after treatment. However, we observed relevant estrogenic activity due to the high sensitivity of the HELN ERα cell line.
采用高级氧化工艺对废水进行三级处理,被认为能够产生毒性低于初始进水的处理后出水。在此,我们通过均相(太阳能/HSO₅⁻/Fe²⁺)和非均相(太阳能/TiO₂)太阳能高级氧化工艺,对从污水处理厂收集的二级出水进行三级处理,旨在评估它们在普通太阳能反应器中去除污染物和降低毒性方面的有效性。在固相萃取后,通过液相色谱与高分辨率质谱联用对总共53种有机污染物进行了定性鉴定。太阳能高级氧化在4.5小时内完全或部分去除了检测到的大部分污染物。使用费氏弧菌、大型溞、斜生栅藻和萼花臂尾轮虫等生物进行标准毒性测试,以评估二级或三级出水中的急性和慢性毒性,并计算出半数有效浓度(EC₅₀%)。进行了雌激素活性和遗传毒性测试,以更精确地评估废水中微污染物或其降解副产物可能产生的有害影响。处理前后的出水中均未检测到遗传毒性效应。然而,由于HELN ERα细胞系的高敏感性,我们观察到了相关的雌激素活性。