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基于生命周期分析的可持续性评估的非金属掺杂石墨相氮化碳基光催化剂用于有机污染物修复的批判性综述。

A critical review on non-metal doped g-CN based photocatalyst for organic pollutant remediation with sustainability assessment by life cycle analysis.

作者信息

Sahoo Subhalaxmi, Mahamallik Prateeksha, Das Rahul, Panigrahi Sagarika

机构信息

Water and Wastewater Research Laboratory, Department of Civil Engineering, National Institute of Technology (NIT), Rourkela, 769008, Odisha, India.

Water and Wastewater Research Laboratory, Department of Civil Engineering, National Institute of Technology (NIT), Rourkela, 769008, Odisha, India.

出版信息

Environ Res. 2024 Oct 1;258:119390. doi: 10.1016/j.envres.2024.119390. Epub 2024 Jun 13.

Abstract

Photocatalysis is recognized to be one of the most promising ways to address energy and environmental issues by utilizing visible light. Graphitic carbon nitride (g-CN), with a moderate band gap (∼2.7 eV) has been the flashpoint in environmental photocatalysis as it can work better under visible light, can be synthesized by a facile synthesis process using low-cost materials, thermally and chemically stable. Still the photocatalytic performance of g-CN is not satisfactory because of certain limitations such as insufficient visible light absorption capacity, low electron-hole separation efficiency, high recombination rate, poor surface area. Introduction of doping, band structure engineering, defecting and designing of heterojunction, composites etc. were investigated to amplify its applications. Among all these modifications, elemental doping is a suitable and successful alternative for the enhancement of the photocatalytic activity by changing the optical and electronic properties. This review emphasizes on advancement and trends of elemental doping and its application on photocatalytic organic pollutant remediation in aqueous medium. The fundamental photocatalytic activity of heterogeneous photocatalysis and specifically g-CN-based photocatalysis have been discussed. The benfits of non-metal doping, enhanced photocatalytic performance by doping element, mechanism invloved in doping, advantages of co-doping has been explained. Mono, bi, and tri non-metal doped g-CN and their application for the removal of organic pollutants from water medium by visible light photocatalysis has been summerized. Life cycle assessment (LCA) of photocatalytic system has been highlighted. Future research should focus on the large-scale application of the photocatalysis process considering the economic aspects. A rigorous life cycle assessment for deploying the non-metal doped g-CN-based photocatalysis technology for successful commercial application is recommended.

摘要

光催化被认为是利用可见光解决能源和环境问题最具前景的方法之一。石墨相氮化碳(g-CN)具有适中的带隙(约2.7 eV),因其在可见光下能更好地发挥作用、可通过使用低成本材料的简便合成过程制备、具有热稳定性和化学稳定性,已成为环境光催化领域的焦点。然而,由于某些局限性,如可见光吸收能力不足、电子-空穴分离效率低、复合率高、比表面积小,g-CN的光催化性能仍不尽人意。人们研究了掺杂、能带结构工程、缺陷引入以及异质结、复合材料的设计等方法来扩大其应用。在所有这些改性方法中,元素掺杂是一种合适且成功的选择,通过改变光学和电子性质来提高光催化活性。本文综述着重介绍了元素掺杂的进展和趋势及其在水介质中光催化有机污染物修复方面的应用。讨论了多相光催化尤其是基于g-CN的光催化的基本光催化活性。解释了非金属掺杂的益处、掺杂元素增强光催化性能的原理、掺杂涉及的机理以及共掺杂的优势。总结了单、双、三非金属掺杂的g-CN及其通过可见光光催化从水介质中去除有机污染物的应用。强调了光催化系统的生命周期评估(LCA)。考虑到经济因素,未来的研究应聚焦于光催化过程的大规模应用。建议对部署基于非金属掺杂g-CN的光催化技术进行严格的生命周期评估,以实现成功的商业应用。

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