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利用 LaFeO 整合改性天然沸石通过非均相可见光光-Fenton 降解增强有机污染物的去除。

Enhanced removal of organic using LaFeO-integrated modified natural zeolites via heterogeneous visible light photo-Fenton degradation.

机构信息

Chemical and Metallurgical Engineering and Chemistry, School of Engineering and Information Technology, Murdoch University, Western Australia, Australia.

Chemical and Metallurgical Engineering and Chemistry, School of Engineering and Information Technology, Murdoch University, Western Australia, Australia.

出版信息

J Environ Manage. 2019 Mar 1;233:471-480. doi: 10.1016/j.jenvman.2018.12.051. Epub 2018 Dec 25.

Abstract

LaFeO (LFO)-doped acid-modified natural zeolites were prepared by an impregnation-calcination method for the first time. Their effectiveness as photo-Fenton catalysts was evaluated using decolorization of Rhodamine B (RhB) as an organic model. The sample 1HNZ-30LFO was synthesized by using the support of 1HNZ, which was produced via the acid (1 N HCl) treatment of natural zeolite (NZ) at 80 °C for 3 h. It was consisting of approximately 30 wt% LFO and exhibited a higher removal rate of RhB, especially photocatalytic performance, than the pure LFO and parent 1HNZ. This was attributed to the synergistic effect of good adsorption ability of modified zeolite host and a large number of active sites provided by LFO guest for photo-Fenton reaction. Various operational parameters including catalyst dosage, HO concentration, solution pH and dye concentration were examined in the photo-Fenton catalytic degradation of RhB. 98.3% of RhB was degraded under the conditions of 0.8 g L 1HNZ-30LFO, 10 mg L RhB, 10 mM HO and initial pH of 6. The catalytic activity of 1HNZ-30LFO was largely retained after 4 cycles of use and recycle; suggesting it could be a promising heterogeneous photocatalyst for dye degradation in wastewater via the photo-Fenton process.

摘要

首次采用浸渍-煅烧法制备 LaFeO(LFO)掺杂酸改性天然沸石,并用罗丹明 B(RhB)的脱色评价其作为类 Fenton 光催化剂的效果。样品 1HNZ-30LFO 是通过在 80°C 下用 1N HCl 处理天然沸石(NZ)3 小时制备的 1HNZ 载体合成的,其含有约 30wt%的 LFO,对 RhB 的去除率更高,特别是光催化性能,优于纯 LFO 和母体制备的 1HNZ。这归因于改性沸石主体的良好吸附能力和 LFO 客体提供的大量活性位点对类 Fenton 反应的协同作用。在 RhB 的类 Fenton 光催化降解中考察了各种操作参数,包括催化剂用量、HO 浓度、溶液 pH 值和染料浓度。在 0.8g/L 1HNZ-30LFO、10mg/L RhB、10mM HO 和初始 pH 值为 6 的条件下,RhB 的降解率达到 98.3%。1HNZ-30LFO 在经过 4 次使用和循环后,其催化活性保持不变,这表明它可能是一种很有前途的用于废水处理的非均相光催化剂,可通过类 Fenton 过程降解染料。

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