Weidner Ewelina, Karbassiyazdi Elika, Altaee Ali, Jesionowski Teofil, Ciesielczyk Filip
Poznan University of Technology, Faculty of Chemical Technology, Institute of Chemical Technology and Engineering, Berdychowo 4, PL-60965 Poznan, Poland.
University of Technology Sydney, School of Civil and Environmental Engineering, Centre of Green Technology, 15 Broadway, Ultimo NSW Sydney, New South Wales 2007, Australia.
ACS Omega. 2022 Jul 27;7(31):27062-27078. doi: 10.1021/acsomega.2c02909. eCollection 2022 Aug 9.
This paper discusses the properties of metal oxide/biochar systems for use in wastewater treatment. Titanium, zinc, and iron compounds are most often combined with biochar; therefore, combinations of their oxides with biochar are the focus of this review. The first part of this paper presents the most important information about biochar, including its advantages, disadvantages, and possible modification, emphasizing the incorporation of inorganic oxides into its structure. In the next four sections, systems of biochar combined with TiO, ZnO, FeO, and other metal oxides are discussed in detail. In the next to last section probable degradation mechanisms are discussed. Literature studies revealed that the dispersion of a metal oxide in a carbonaceous matrix causes the creation or enhancement of surface properties and catalytic or, in some cases, magnetic activity. Addition of metallic species into biochars increases their weight, facilitating their separation by enabling the sedimentation process and thus facilitating the recovery of the materials from the water medium after the purification process. Therefore, materials based on the combination of inorganic oxide and biochar reveal a wide range of possibilities for environmental applications in aquatic media purification.
本文讨论了用于废水处理的金属氧化物/生物炭系统的特性。钛、锌和铁化合物最常与生物炭结合;因此,它们的氧化物与生物炭的组合是本综述的重点。本文的第一部分介绍了关于生物炭的最重要信息,包括其优点、缺点和可能的改性,重点强调了无机氧化物在其结构中的掺入。在接下来的四个部分中,详细讨论了生物炭与TiO、ZnO、FeO和其他金属氧化物的系统。在倒数第二部分中,讨论了可能的降解机制。文献研究表明,金属氧化物在碳质基质中的分散会导致表面性质的产生或增强以及催化活性,在某些情况下还会产生磁活性。将金属物种添加到生物炭中会增加其重量,通过实现沉淀过程促进其分离,从而便于在净化过程后从水介质中回收材料。因此,基于无机氧化物和生物炭组合的材料在水生介质净化的环境应用中显示出广泛的可能性。