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Removal of contaminants of emerging concern by continuous flow solar photo-Fenton process at neutral pH in open reactors

机译:在敞开式反应器中,在中性pH下通过连续流动的太阳光-Fenton工艺去除新兴关注的污染物

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For the first time, the operational feasibility of the solar photo-Fenton process at neutral pH in continuous flow has been tested for three consecutive days. The aim of the treatment was to remove of contaminants of emerging concern (CECs) from wastewater treatment plant secondary effluents. To this end, a 5 cm-deep raceway pond reactor was run in continuous flow mode and the degradation of the CECs present in real secondary effluents was monitored at their natural concentrations. To keep dissolved iron at neutral pH, ethylenediamine-N,N'-disuccinic acid (EDDS) was used to form the complex Fe(IH):EDDS as an iron source for the photo-Fenton reactions. At pilot scale the effects of the Fe(IlI):EDDS molar ratio (1:1 and 1:2) and hydraulic residence time (HRT) (20 and 40 min) on CEC removal were studied. The best operating condition was 20 min of HRT, giving rise to a treatment capacity of 900 L m~(-2) d~(-1) with CEC removal percentages of around 60%. The reactant concentrations were 0.1 mM Fe(III):EDDS at a 1:1 M ratio and 0.88 mM H_2O_2. Under these operating conditions, the short-term stability of the process was also demonstrated, thus pointing out the potential of this solar technology as a tertiary treatment.
机译:首次连续三天测试了中性pH连续流动的太阳光芬顿法的操作可行性。该处理的目的是从废水处理厂的二次废水中去除新出现的污染物(CEC)。为此,在连续流动模式下运行了一个5厘米深的水道池塘反应器,并以其自然浓度监测了实际次级废水中存在的CEC的降解。为了将溶解的铁保持在中性pH,乙二胺-N,N'-二琥珀酸(EDDS)用于形成Fe(IH):EDDS络合物作为光芬顿反应的铁源。在中试规模上,研究了Fe(III):EDDS摩尔比(1:1和1:2)和水力停留时间(HRT)(20和40分钟)对CEC去除的影响。最佳操作条件为HRT 20分钟,产生900 L m〜(-2)d〜(-1)的处理能力,CEC去除率约为60%。反应物浓度为0.1 mM Fe(III):EDDS(1:1 M比)和0.88 mM H_2O_2。在这些操作条件下,还证明了该工艺的短期稳定性,从而指出了该太阳能技术作为第三级处理的潜力。

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