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不同碳源对碳/g-CN 光催化复合材料形貌的影响及不同复合材料在弱紫外水下环境中的净化能力。

Influences of different carbon substrates on the morphologies of carbon/g-CN photocatalytic composites and the purification capacities of different composites in the weak UV underwater environment.

机构信息

Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, Ministry of Education, College of Environment, Hohai University, Nanjing, 210098, China.

College of Mechanics and Materials, Hohai University, Nanjing, 210098, China.

出版信息

Chemosphere. 2022 Dec;308(Pt 1):136257. doi: 10.1016/j.chemosphere.2022.136257. Epub 2022 Aug 31.

Abstract

In order to explore the influence of various carbon introduction on the morphology and photodegradation performance of C/g-CN composites, three kinds of different carbon materials: carbon nanotubes (CNT), graphene (GN) and carbon fibers (CF) were introduced to modify g-CN, and the morphologies, light absorption capacities and the underwater purifications of the composite photocatalysts were investigated. Results showed that the composites synthesized with different carbon substrates shows great differences in growth morphology. In addition, the introduction of various carbon sources also has a great impact on the physical and chemical properties of the composites. Compared with GN/g-CN and CF/g-CN, CNT/g-CN shows strong light absorption ability, especially in long-wavelength region (570-660 nm). To further study the difference of degradation ability of the composites in the underwater environment, the purification performance of modified g-CN at different water depths were carried out. The results show that under 40 cm of water, where the light intensity and ultra violet spectral are seriously attenuated, the purification efficiency of CNT/g-CN at 40 cm is 3.35 times than that of g-CN. This work provides insight in the design of highly efficient metal-free photocatalysts for the environmental remediation.

摘要

为了探索不同碳引入对 C/g-CN 复合材料形貌和光降解性能的影响,本文将三种不同的碳材料:碳纳米管 (CNT)、石墨烯 (GN) 和碳纤维 (CF) 引入到 g-CN 中进行改性,并研究了复合光催化剂的形貌、光吸收能力和水下净化性能。结果表明,用不同碳基底合成的复合材料在生长形貌上表现出很大的差异。此外,各种碳源的引入对复合材料的物理化学性质也有很大的影响。与 GN/g-CN 和 CF/g-CN 相比,CNT/g-CN 表现出较强的光吸收能力,特别是在长波长区域 (570-660nm)。为了进一步研究复合材料在水下环境中降解能力的差异,对改性 g-CN 在不同水深下的净化性能进行了研究。结果表明,在 40cm 的水深下,光强和紫外线光谱严重衰减,CNT/g-CN 在 40cm 处的净化效率是 g-CN 的 3.35 倍。这项工作为设计高效的无金属光催化剂用于环境修复提供了新的思路。

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