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异丙隆在易于回收的二氧化钛催化剂上的太阳能辅助光降解

Solar-assisted photodegradation of isoproturon over easily recoverable titania catalysts.

作者信息

Tolosana-Moranchel A, Carbajo J, Faraldos M, Bahamonde A

机构信息

Instituto de Catálisis y Petroleoquímica, ICP-CSIC, C/Marie Curie 2, 28049, Madrid, Spain.

出版信息

Environ Sci Pollut Res Int. 2017 Mar;24(8):7821-7828. doi: 10.1007/s11356-017-8475-x. Epub 2017 Jan 27.

Abstract

An easily recoverable homemade TiO catalyst (GICA-1) has been evaluated during the overall photodegradation process, understood as photocatalytic efficiency and catalyst recovery step, in the solar light-assisted photodegradation of isoproturon and its reuse in two consecutive cycles. The global feasibility has been compared to the commercial TiO P25. The homemade GICA-1 catalyst presented better sedimentation efficiency than TiO P25 at all studied pHs, which could be explained by its higher average hydrodynamic particle size (3 μm) and other physicochemical surface properties. The evaluation of the overall process (isoproturon photo-oxidation + catalyst recovery) revealed GICA-1 homemade titania catalyst strengths: total removal of isoproturon in less than 60 min, easy recovery by sedimentation, and reusability in two consecutive cycles, without any loss of photocatalytic efficiency. Therefore, considering the whole photocatalytic cycle (good performance in photodegradation plus catalyst recovery step), the homemade GICA-1 photocatalyst resulted in more affordability than commercial TiO P25. Graphical abstract.

摘要

一种易于回收的自制二氧化钛催化剂(GICA-1)在异噁草酮的太阳光辅助光降解及其连续两个循环的再利用的整个光降解过程(理解为光催化效率和催化剂回收步骤)中进行了评估。已将整体可行性与商用二氧化钛P25进行了比较。在所有研究的pH值下,自制的GICA-1催化剂比TiO P25表现出更好的沉降效率,这可以通过其更高的平均流体动力学粒径(3μm)和其他物理化学表面性质来解释。对整个过程(异噁草酮光氧化+催化剂回收)的评估揭示了GICA-1自制二氧化钛催化剂的优势:在不到60分钟内完全去除异噁草酮,通过沉降易于回收,并且可在两个连续循环中重复使用,而不会损失任何光催化效率。因此,考虑到整个光催化循环(光降解加催化剂回收步骤中的良好性能),自制的GICA-1光催化剂比商用TiO P25更具成本效益。图形摘要。

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