钙钛矿型光催化材料的应用现状及进展
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1.河北科技大学;2.天俱时工程科技集团有限公司,石家庄 050011;3.石家庄东华金龙化工有限公司,石家庄 052165

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TB331

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石家庄市科学技术研究与发展计划项目(211240043A)


Present situation and progress of perovskite photocatalytic materials
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Affiliation:

1.Hebei University of Science and Technology;2.Tianjiushi Engineering Technology Group Co., LTD., Shijiazhuang 050011, China;3.Shijiazhuang Donghua Jinlong Chemical Co. LTD

Fund Project:

Shijiazhuang Science and Technology Research and Development Program, No.211240043A

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    摘要:

    光催化技术和光芬顿技术是解决环境污染和能源短缺问题的有效手段,而光催化剂是其研究核心。钙钛矿材料因其在光催化能量转换和环境净化方面的潜力而成为新型光催化材料的研究热点。本文综述了钙钛矿型光催化剂的特性、活性影响因素和新型钙钛矿光催化材料的发展现状,归纳了该材料在染料废水处理、氨氮废水处理、金属离子氧化还原、大气污染物净化和土壤有机物及重金属去除中的应用进展,并对其在实际应用中面临的挑战及未来发展方向进行了讨论。最后指出钙钛矿型光催化剂目前发展面临的关键问题在于节能绿色制备方法的开发、新型复合钙钛矿材料尤其是高比表面积钙钛矿基体材料的研发和针对钙钛矿材料特性的反应器的建造。

    Abstract:

    Photocatalytic technology and photo-Fenton technology are effective means to solve the problems of environmental pollution and energy shortage, and photocatalyst is the research core. Due to its potential in photocatalytic energy conversion and environmental purification, perovskites have become a research hotspot of new photocatalytic materials. In this paper, the characteristics of perovskites, the influencing factors of activity and the development status of them were reviewed. The application progress of perovskite-type photocatalysts in dye wastewater treatment, ammonia nitrogen wastewater treatment, metal ion redox, atmospheric pollutant purification and soil organic matter and heavy metal removal were summarized. The challenges and future development directions in practical application were discussed. Finally, it is pointed out that the key problems in the current development of perovskite photocatalysts are the development of energy-saving green preparation methods, the development of new composite perovskite-type photocatalysts, especially high specific surface area perovskite matrix materials, and the construction of reactors for the characteristics of perovskite-type photocatalysts.

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张琴琴,李再兴,陈晓飞,李超,张晨阳,田占伟.钙钛矿型光催化材料的应用现状及进展[J].精细化工,2022,39(11):

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  • 收稿日期:2022-04-23
  • 最后修改日期:2022-06-15
  • 录用日期:2022-06-24
  • 在线发布日期: 2022-09-30
  • 出版日期: 2022-09-30
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