Photocatalytic TiO2/rGO/CuO Composite for Wastewater Treatment of Cr(VI) Under Visible Light
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Published:2020-05
Issue:5
Volume:231
Page:
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ISSN:0049-6979
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Container-title:Water, Air, & Soil Pollution
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language:en
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Short-container-title:Water Air Soil Pollut
Author:
Wang Ning,Zhang Feiyan,Mei Qiufeng,Wu Ronglan,Wang Wei
Abstract
AbstractThe harm of chromium pollution to the environment has caused a widespread concern; hexavalent chromium is a toxic, cancerogenic, and genetically mutagenic contaminant to the human body; by contrast, trivalent chromium is almost non-toxic to the human body; therefore, it is a feasible method to reduce hexavalent chromium to trivalent chromium. Photocatalysis is a new environmentally friendly and harmless technology, which can transform pollutants into non-toxic or less toxic products. In this study, we synthesized TiO2/rGO/CuO ternary nanocomposites to treat hexavalent chromium pollution under visible light. Under optimal conditions, the photoreduction efficiency of 100 ppm hexavalent chromium solution could reach 100% in 80 min. The photoreduction rate of hexavalent chromium is 29.4 times than that of pure TiO2. The photocatalytic property of CuO in TG2C8 nanocomposites is attributed to accelerate the separation of electrons and holes and the efficient electron transfer through the rGO framework. We believe that TiO2/rGO/CuO composites have great potential in wastewater treatment.
Funder
National Natural Science Foundation of China National Natural Science Foundation of Xinjiang Uyghur Autonomous Region
Publisher
Springer Science and Business Media LLC
Subject
Pollution,Water Science and Technology,Ecological Modelling,Environmental Chemistry,Environmental Engineering
Reference55 articles.
1. Barkhade, T., & Banerjee, I. (2019). Optical properties of Fe doped TiO2 nanocomposites synthesized by sol-gel technique. Materials Today: Proceedings, 18, 1204–1209. 2. Barrera-Diaz, C. E., Lugo-Lugo, V., & Bilyeu, B. (2012). A review of chemical, electrochemical and biological methods for aqueous Cr(VI) reduction. Journal of Hazardous Materials, 223-224, 1–12. 3. Cao, J., Wang, Z., Yang, X., Tu, J., Wu, R., & Wang, W. (2018). Green synthesis of amphipathic graphene aerogel constructed by using the framework of polymer-surfactant complex for water remediation. Applied Surface Science, 444, 399–406. 4. Chauhan, M., Sharma, B., Kumar, R., Chaudhary, G. R., Hassan, A. A., & Kumar, S. (2019). Green synthesis of CuO nanomaterials and their proficient use for organic waste removal and antimicrobial application. Environmental Research, 168, 85–95. 5. Chen, C., Cai, W., Long, M., Zhou, B., Wu, Y., Wu, D., & Feng, Y. (2010). Synthesis of visible-light responsive graphene oxide/TiO2 composites with p/n heterojunction. ACS Nano, 4(11), 6425–6432.
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