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贝壳废弃物在 TiO2/贝壳复合材料中的作用:太阳光下亚甲基蓝染料的光催化降解。

The role of seashell wastes in TiO/Seashell composites: Photocatalytic degradation of methylene blue dye under sunlight.

机构信息

School of Environmental Science and Engineering, Tianjin University, Tianjin, 300072, PR China.

School of Environmental Science and Engineering, Tianjin University, Tianjin, 300072, PR China.

出版信息

Environ Res. 2020 Sep;188:109831. doi: 10.1016/j.envres.2020.109831. Epub 2020 Jun 30.

Abstract

This paper proposes a sustainable and facile approach for the synthesis of photocatalysts in which shell waste is used as support material. The synthesized photocatalysts exhibited a significant performance in the mineralization of organic substances under solar irradiation or artificial lighting. Calcined abalone shell with a TiO loading of 23.4% led to a significant improvement in optical absorption: the degradation efficiencies of methylene blue (MB) after 140 min under UV light, vis light, UV-vis light, and natural sunlight were 93%, 96%, 100%, and 100%, respectively. Notably, the byproducts obtained after the degradation by commercial P25 TiO disappeared with the utilization of shell waste as support material. The Na, Sr, S present in the calcined abalone shell were doped into the substitutional sites of TiO and were indispensable to achieve the desired band-gap narrowing and photocatalytic performance; moreover, the Ti and Zn oxides in the calcined abalone shell acted as semiconductors and improved the charge separation efficiency of TiO. Above all, this paper describes a green synthesis based on the use of waste seashell. This material acts as an excellent photocatalyst support for environmental pollution treatments, leading to the 'control of waste by waste' and opening up new possibilities for shell waste reutilization and sustainable chemistry.

摘要

本文提出了一种可持续且简便的方法来合成光催化剂,其中贝壳废料被用作支撑材料。所合成的光催化剂在太阳辐射或人工照明下对有机物的矿化表现出显著的性能。煅烧鲍鱼壳负载 23.4%的 TiO 后,显著提高了光吸收性能:在 UV 光、可见光、UV-可见光照和自然光下,亚甲基蓝(MB)的降解效率在 140 分钟后分别达到 93%、96%、100%和 100%。值得注意的是,商用 P25 TiO 降解后得到的副产物随着贝壳废料作为支撑材料的利用而消失。煅烧鲍鱼壳中的 Na、Sr、S 掺杂到 TiO 的替代位,对实现所需的带隙缩小和光催化性能是必不可少的;此外,煅烧鲍鱼壳中的 Ti 和 Zn 氧化物作为半导体,提高了 TiO 的电荷分离效率。总之,本文描述了一种基于利用废贝壳的绿色合成方法。这种材料作为一种优秀的光催化剂支撑材料,可用于环境污染处理,实现“以废治废”,为贝壳废料的再利用和可持续化学开辟了新的可能性。

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