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首页> 外文期刊>The Science of the Total Environment >Intensification of heterogeneous TiO_2 photocatalysis using the NETmix mili-photoreactor under microscale illumination for oxytetracycline oxidation
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Intensification of heterogeneous TiO_2 photocatalysis using the NETmix mili-photoreactor under microscale illumination for oxytetracycline oxidation

机译:NETmix微型光反应器在微尺度照明下增强土霉素对TiO_2的光催化氧化土霉素

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This study focuses on the intensification of heterogeneous TiO2 photocatalysis for the removal of a contaminant of emerging concern (CEC), oxytetracycline (OTC), as a polishing step of urban wastewaters, using an innovative NETmix mili-photoreactor under UVA-LEDs illumination. The effect of catalyst coated surface per reactor volume and the illumination mechanism, back-side (BSI) or front-side (FSI) irradiation, on arc oxidation were evaluated. For that, a thin film of photocatalyst was uniformly deposited on the front borosilicate slab (BS) (BSI mechanism; 333 m(catalyst)(2)m(reactor)(-3)) or on the network of channels and chambers imprinted in the back stainless-steel slab (SSS) (FSI mechanism; 989 m(catalyst)(2)m(reactor)(-3)) using a spray system. OTC removal was also assessed as a function of TiO2 film thickness immobilized on both slabs. The photocatalyst reactivity in combination with photoreactor was significantly enhanced (3.4 times) from 0.64 to 2.19 mmol(OTC) m(illuminated reactor volume)(-3) s(-1), when considering the BSI and FSI mechanisms, respectively. In addition, the influence of UVA-LEDs intensity on OTC oxidation rate was investigated. UVA-LEDs plates were placed on the top of the NETmix borosilicate window. Moreover, the effect of water matrix was assessed using a secondary effluent from an urban wastewater treatment plant fortified with OTC. OTC oxidation rate was only inhibited in about 1.3 times in the presence of the real matrix, showing the ability of the NETrnix to overcome matrix effects due to its unique characteristics. Catalyst film stability over four consecutive reaction cycles was evaluated using synthetic and real matrices fortified with OTC. (C) 2019 Published by Elsevier B.V.
机译:这项研究的重点是使用创新的NETmix mili光反应器在UVA-LEDs照明下,强化多相TiO2光催化作用以去除新兴关注的污染物(CEC)土霉素(OTC),作为城市废水的抛光步骤。评估了每反应器体积的催化剂涂覆表面和照明机理(背面(BSI)或正面(FSI)辐射)对电弧氧化的影响。为此,在前硼硅酸盐平板(BS)(BSI机制; 333 m(催化剂)(2)m(反应器)(-3))或印在其中的通道和腔室网络上均匀沉积了光催化剂薄膜背面不锈钢板(SSS)(FSI机制; 989 m(催化剂)(2)m(反应器)(-3)),采用喷涂系统。还评估了OTC的去除与固定在两个平板上的TiO2膜厚度的关系。当分别考虑BSI和FSI机理时,将光催化剂与光反应器的反应性从0.64显着提高(3.4倍)至2.19 mmol(OTC)m(光照反应器体积)(-3)s(-1)。此外,还研究了UVA-LED强度对OTC氧化速率的影响。将UVA-LED板放置在NETmix硼硅酸盐窗口的顶部。此外,使用强化了OTC的城市污水处理厂的二次废水评估了水基质的作用。在存在真实基质的情况下,OTC氧化速率仅被抑制了约1.3倍,这表明NETrnix具有克服基质效应的能力(由于其独特的特性)。使用OTC强化的合成和真实基质评估了四个连续反应周期中的催化剂膜稳定性。 (C)2019由Elsevier B.V.发布

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