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Investigation of diclofenac degradation in a continuous photo-catalytic membrane reactor. Influence of operating parameters

机译:在连续光催化膜反应器中双氯芬酸降解的研究。操作参数的影响

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A laboratory pilot photocatalytic membrane reactor (PMR), employing a hybrid TiO2/UV-A catalysis-ultrafiltration process, is evaluated for degradation of diclofenac (DCF), a typical micro-pollutant frequently encountered in source waters. The combination of membrane ultrafiltration with photocatalysis allows TiO2 separation and reuse whereas the automatic periodic membrane backwashing, combined with moderate permeate flux, effectively control membrane fouling, thus permitting stable continuous operation with no wastewater stream. The operation under steady state conditions permitted the assessment of the PMR system performance (for DCF degradation), in terms of water pH and catalyst dosage, in relatively long-term tests. The results demonstrate excellent system performance. Experiments with groundwater, at UV-A radiant power per unit volume 6.57 W/L, show an optimum DCF removal at pH ~ 6 and TiO2 loading near 0.5 g/L with maxima of DCF molecular degradation and mineralization ~99.5% and ~69%, respectively. Significant differences of photo-catalytic oxidation performance are identified with different water matrices (i.e. ultrapure water, tap water, groundwater), confirming the important role of feed-water characteristics (i.e. presence of organic and inorganic scavengers) on process effectiveness. The new results highlight, among other factors, the need for good knowledge of feed water properties, to successfully design a PMR treatment process for effectively removing organic micro-pollutant.
机译:对采用混合TiO2 / UV-A催化-超滤工艺的实验室中试光催化膜反应器(PMR)进行了双氯芬酸(DCF)(一种常见于源水中的典型微污染物)的降解评估。膜超滤与光催化的结合允许TiO2的分离和再利用,而自动定期膜反冲洗与适度的渗透通量相结合,则有效地控制了膜的结垢,因此可以在没有废水流的情况下稳定地连续运行。稳态条件下的操作允许在相对长期的测试中,根据水的pH值和催化剂用量评估PMR系统性能(用于DCF降解)。结果证明了出色的系统性能。在每单位体积6.57 W / L的UV-A辐射功率下进行的地下水实验显示,在pH〜6和TiO2负载量接近0.5 g / L时,DCF的最佳去除效果为DCF分子降解和矿化的最大值为〜99.5%和〜69% , 分别。在不同的水基质(即超纯水,自来水,地下水)中发现了光催化氧化性能的显着差异,从而证实了进水特性(即有机和无机清除剂的存在)对工艺效率的重要作用。除其他因素外,新结果强调了对进水特性的充分了解的必要性,以成功设计一种有效去除有机微污染物的PMR处理工艺。

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