首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Growth of C3N4 nanosheets on carbon-fiber cloth as flexible and macroscale filter-membrane-shaped photocatalyst for degrading the flowing wastewater
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Growth of C3N4 nanosheets on carbon-fiber cloth as flexible and macroscale filter-membrane-shaped photocatalyst for degrading the flowing wastewater

机译:C3N4纳米片在碳纤维布上的生长为柔性和宏观滤膜 - 膜状光催化剂,用于降解流动的废水

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For degrading the flowing wastewater, the ideal photocatalysts should be nanostructured filter membrane with large area, excellent flexibility and high visible-light-driven photocatalytic activity. Herein, we report the design and preparation of C3N4 nanosheets on carbon-fiber (CF) cloth as filter membrane-shaped photocatalyst. The growth of C3N4 nanosheets has been realized by using a dip-coating and thermal condensation method with carbon-fiber cloth as the substrate. The resulting cloth (area: 4 x 4 cm(2)) is composed of carbon fiber (diameter: 15 mu m) bunches which are decorated with C3N4 nanosheets with the thickness of 30 nm. CF/C3N4 cloth exhibits excellent flexibility and strong visible light absorption at similar to 450 nm. When CF/C3N4 cloth (area: 4 x 4 cm(2)) is floated on the polluted water, it can degrade 98% Rhodamine B (RhB) in 60 min and 99.3% colorless parachlorophenol (4-CP) after 120 min of visible-light irradiation. Interestingly, when CF/C3N4 cloth (area: 4 x 4 cm(2)) as the filter-membrane is used to construct a new photocatalytic setup for degrading the flowing wastewater (rate: 1.5 L h(-1)) under visible-light irradiation, the degradation efficiency of RhB goes up from 18% to 92% with the increase of filtering/degrading grade from 1 to 7. Direct contact between CF/C3N4 cloth and pollutants is found to be unnecessary for the efficient degradation. Furthermore, free radical capture experiments confirm that both center dot O-2(-) and h(+) play a major role in the system under visible light irradiation; and CF/C3N4 cloth exhibit excellent stability. Therefore, CF/C3N4 cloth has great potential to be used as an efficient, stable, macroscale filter-membrane-shaped photocatalyst for degrading the flowing wastewater. (C) 2017 Elsevier B.V. All rights reserved.
机译:为了降解流动的废水,理想的光催化剂应为具有大面积,优异的柔韧性和高可见光催化的光催化活性的纳米结构过滤膜。在此,我们在碳纤维(CF)布上作为滤膜形光催化剂报告了C3N4纳米片的设计和制备。已经通过使用具有碳纤维布作为基材的浸涂和热缩合方法来实现C3N4纳米片的生长。得到的布(面积:4×4cm(2))由碳纤维(直径:15μm)组成,其厚度为厚度为30nm的C3N4纳米晶片。 CF / C3N4布料表现出优异的灵活性和强烈的可见光吸收,类似于450nm。当CF / C3N4布(面积:4×4cm(2))漂浮在污染的水上时,它可以在120分钟后在60分钟内降解98%的罗丹明B(RHB)和99.3%无无色的降氯酰苯酚(4-CP)可见光辐照。有趣的是,当CF / C3N4布(面积:4×4cm(2))时,用于构建新的光催化设置以降解流动废水(速率:1.5L H(-1))下可见 - 光照射,RHB的降解效率从18%到92%的滤波/降解从1〜7增加。发现CF / C3N4布和污染物之间的直接接触是不必要的有效降解。此外,自由基捕获实验证实,中心点O-2( - )和H(+)在可见光照射下发挥着大大作用;和CF / C3N4布表现出优异的稳定性。因此,CF / C3N4布具有很大的潜力,可用作高效,稳定的宏观滤膜 - 用于降解流动废水的高效滤膜形光催化剂。 (c)2017 Elsevier B.v.保留所有权利。

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