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首页> 外文期刊>Journal of Cleaner Production >MIL-lOl(Fe) nanodot-induced improvement of adsorption and photocatalytic activity of carbon fiber/TiO_2-based weavable photocatalyst for removing pharmaceutical pollutants
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MIL-lOl(Fe) nanodot-induced improvement of adsorption and photocatalytic activity of carbon fiber/TiO_2-based weavable photocatalyst for removing pharmaceutical pollutants

机译:MIL-LOL(FE)纳米多特诱导的碳纤维/ TiO_2的可染色光催化剂的吸附和光催化剂的改善,用于去除药物污染物

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The decoration of TiO2-based junctions on carbon fibers (CFs) has been well-developed as weavable photocatalysts for degrading hazardous pharmaceutical pollutants, but their practical application is still constrained by unsatisfactory adsorption and photodegradation performances, resulting from low surface area/porosity and photoactivity. Herein, we propose the growth of MIL-101(Fe) nanodots with small size of 5-10 nm as a porous co-photocatalyst to decorate TiO2 nanorods on CFs. CFs/TiO2/MIL-101(Fe) bundles display a wide absorption with an edge (similar to 600 nm). Subsequently, CFs/TiO2/MIL-101(Fe) bundles are weaved into a macroscopical cloth (0.2 g, 4 x 4 cm(2)). CFs/TiO2/MIL-101(Fe) cloth can efficiently adsorb 46.9% 17 beta-estradiol (E2) and 40.2% tetracycline hydrochloride (TC) after 60 min in the dark, with obvious improvement (5.4-8.4 times) compared with that by CFs/TiO2 cloth (8.7% E2 and 4.8% TC). Importantly, under visible light irradiation, CFs/TiO2/MIL-101(Fe) cloth can remove 87.4% E2 and 94.2% TC in 60 min, which is 6-13.1 times compared with that by CFs/TiO2 cloth (14.6% E2 and 7.2% TC), resulting from the high adsorption and three-component synergistic photocatalytic activity. Therefore, the construction of semiconductor-MOF nanojunctions on CFs provides a general strategy to develop novel weavable photocatalysts for eliminating pharmaceutical pollutants. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在碳纤维(CFS)上的TiO2的结料的装饰得到了充分发育的,作为可染色的光催化剂,可降解危险药物污染物,但它们的实际应用仍然受到不令人满意的吸附和光降解性能的限制,由低表面积/孔隙率和孔隙率和光度造成。 。在此,我们提出了小尺寸为5-10nm的MIL-101(Fe)纳米蛋白的生长,作为多孔共光催化剂,以装饰CFS上的TiO2纳米棒。 CFS / TiO2 / MIL-101(FE)捆绑包显示宽吸收边缘(类似于600nm)。随后,将CFS / TiO 2 / MIL-101(Fe)束在宏观布(0.2g,4×4cm(2))中。 CFS / TiO2 / MIL-101(Fe)布料可以在黑暗中有效地吸附46.9%17β-雌二醇(E2)和40.2%四环素盐酸盐(TC),与此相比明显改善(5.4-8.4次)通过CFS / TiO2布(8.7%E2和4.8%Tc)。重要的是,在可见光照射下,CFS / TiO2 / MIL-101(Fe)布料可以在60分钟内除去87.4%E2和94.2%Tc,而CFS / TiO2布(14.6%E2和14.6%E2和14.6%E2)比较6-13.1倍。 7.2%TC),由高吸附和三组分协同光催化活性产生。因此,CFS上半导体MOF纳米局的构建提供了一种用于开发用于消除药物污染物的新型可编化光催化剂的一般策略。 (c)2021 elestvier有限公司保留所有权利。

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