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在开放反应器中,中性 pH 值下连续流动太阳能光芬顿工艺去除新兴关注污染物。

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

机构信息

Solar Energy Research Centre (CIESOL), Joint Centre University of Almeria-CIEMAT, Carretera de Sacramento S/n, 04120, Almeria, Spain; Department of Chemical Engineering, University of Almería, Spain.

Solar Energy Research Centre (CIESOL), Joint Centre University of Almeria-CIEMAT, Carretera de Sacramento S/n, 04120, Almeria, Spain; Department of Chemistry and Physics, University of Almería, Spain.

出版信息

J Environ Manage. 2020 May 1;261:110265. doi: 10.1016/j.jenvman.2020.110265. Epub 2020 Mar 2.

Abstract

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(III):EDDS as an iron source for the photo-Fenton reactions. At pilot scale the effects of the Fe(III):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 d 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 HO. 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.

摘要

首次在中性 pH 条件下连续运行太阳能光芬顿工艺,连续三天测试其运行可行性。该处理的目的是去除污水处理厂二级出水的新兴污染物(CECs)。为此,在连续流动模式下运行一个 5cm 深的沟渠式池塘反应器,并在自然浓度下监测实际二级出水中 CECs 的降解情况。为了在中性 pH 下保持溶解铁,乙二胺二琥珀酸(EDDS)被用于形成 Fe(III):EDDS 络合物,作为光芬顿反应的铁源。在中试规模下,研究了 Fe(III):EDDS 摩尔比(1:1 和 1:2)和水力停留时间(HRT)(20 和 40min)对 CEC 去除的影响。最佳运行条件是 20min 的 HRT,处理能力为 900Lmd,CEC 去除率约为 60%。反应物浓度为 0.1mMFe(III):EDDS,摩尔比为 1:1,HO 浓度为 0.88mM。在这些操作条件下,还证明了该工艺的短期稳定性,从而指出了这项太阳能技术作为三级处理的潜力。

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