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首页> 外文期刊>Environmental Science and Pollution Research >Application of solar photo-Fenton at circumneutral pH to nanofiltration concentrates for removal of pharmaceuticals in MWTP effluents
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Application of solar photo-Fenton at circumneutral pH to nanofiltration concentrates for removal of pharmaceuticals in MWTP effluents

机译:在环境pH下将太阳光芬顿应用于纳滤浓缩液中,以去除MWTP废水中的药物

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摘要

In view of the inefficient elimination of micro-pollutants by today's conventional biological treatments and new legislation requiring elimination of at least 80 % of their concentration, the application of an advanced tertiary treatment must be studied. A good option would be advanced oxidation processes (AOPs), which have very often been combined with physicochemical pre-treatSments to increase efficiency or reduce operating costs. This study focused on the combination of membrane nanofiltration and solar photo-Fenton for the main purpose of removing five pharmaceuticals (sulfamethoxazole, ibuprofen, ofloxacin, carbamazepine and flumequine) from real MWTP effluents under realistic conditions (mu g L-1). This research also included tests performed with modified photo-Fenton using a low iron concentration at circumneutral pH and a low hydrogen peroxide dose, in an attempt to reduce major treatment costs. Over 80 % of dissolved organic carbon, chemical oxygen demand and turbidity were also retained during nanofiltration, making pharmaceutical removal less efficient in terms of concentrate treatment time than direct treatment, i.e. the concentrate illumination time was around 150 min while direct treatment was around 40 min. Nevertheless, it should be highlighted that, although no savings in installation costs was observed for the combined system (nanofiltration/solar photo-Fenton), the reaction rate improved and so, there was a savings in reagent costs (mainly hydrogen peroxide and sulfuric acid).
机译:鉴于当今的常规生物处理方法无法有效消除微量污染物,以及新的法规要求消除其至少80%的浓度,因此必须研究应用先进的三次处理方法。一个不错的选择是先进的氧化工艺(AOP),该工艺通常与理化预处理结合使用,以提高效率或降低运营成本。这项研究集中于膜纳米过滤和太阳光芬顿的结合,其主要目的是在实际条件下(μg L-1)从实际的MWTP废水中去除五种药物(磺胺甲恶唑,布洛芬,氧氟沙星,卡马西平和氟美喹嗪)。这项研究还包括使用改良的光芬顿(Fenton)进行的测试,其中使用了在周围环境pH值下的低铁浓度和低过氧化氢剂量,目的是降低主要治疗成本。在纳滤过程中还保留了80%以上的溶解有机碳,化学需氧量和浊度,这使得浓缩液处理时间比直接处理效率低,即浓缩液照射时间约为150分钟,直接处理时间约为40分钟,因此去除药物的效率较低。尽管如此,应该强调的是,尽管没有发现组合系统的安装成本节省(纳滤/太阳能光芬顿),但反应速率有所提高,因此节省了试剂成本(主要是过氧化氢和硫酸) )。

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