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Two strategies of solar photo-Fenton at neutral pH for the simultaneous disinfection and removal of contaminants of emerging concern. Comparative assessment in raceway pond reactors

机译:中性pH下太阳能光芬的两种策略同时消毒和去除新兴令的污染物。 滚道池塘反应堆的比较评估

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摘要

For the first time, two strategies of solar photo-Fenton at neutral pH (with FeSO4 and Fe3+-EDDS) are technoeconomically assessed. With the target of simultaneous wastewater disinfection and removal of contaminants of emerging concern (CECs), a cost estimation ranging from 0.13 to 0.49 Euro/m(3) as a function of the treatment goal is presented. To this end, the effects of liquid depth (5, 10 and 15 cm) and the iron species were studied at lab scale. Afterwards, the feasibility of both operating strategies was evaluated and validated outdoors at pilot plant scale in low-cost raceway pond reactors. For the joint-removal of bacteria and CECs, the use of FeSO4 as iron source was cheaper than Fe3+-EDDS. However, it is important to highlight that although bacterial inactivation reached > 3 log, only around 35 % of CEC degradation was achieved with FeSO4, while more than 80 % CEC load was removed with Fe3+-EDDS.
机译:首次对中性pH条件下太阳能光芬顿的两种策略(FeSO4和Fe3+-EDDS)进行了技术经济评估。以同时进行废水消毒和去除新问题污染物(CECs)为目标,根据处理目标,成本估算范围为0.13至0.49欧元/立方米(3)。为此,在实验室规模上研究了液体深度(5、10和15厘米)和铁物种的影响。之后,两种运行策略的可行性都在低成本回旋池反应器中进行了室外中试规模的评估和验证。对于联合去除细菌和CECs,使用FeSO4作为铁源比使用Fe3+-EDDS便宜。然而,重要的是要强调,尽管细菌失活达到>3 log,但只有约35%的CEC降解是通过FeSO4实现的,而超过80%的CEC负载是通过Fe3+-EDD去除的。

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