用于废水处理的生物炭基材料的合成方法、特性和改性:综述

Bryan Díaz, Alicia Sommer-Márquez, Paola E. Ordoñez, Ernesto Bastardo-González, Marvin Ricaurte, C. Navas-Cárdenas
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引用次数: 0

摘要

水和土壤污染对全球的影响已成为影响世界和所有生物的严重问题。因此,人们开发了不同规模的多种处理方法来改善水质。其中,生物炭因其高效、低成本而成为环境修复的合适替代品,其生产原料来自残余生物质。生物炭是一种碳质材料,具有有趣的物理化学特性(如高比表面积、多孔性和表面功能基团),可以使用农业废弃物(香蕉树枝、可可壳、甘蔗渣等)作为原料,通过不同的合成方法制备。这篇最新综述基于对用于环境修复的生物炭的总体描述。还分析了生物炭的生产、合成和多种用途。此外,还介绍了一些用于改善生物炭特性的替代品,从而提高生物炭在多种应用中的效率,如去除重金属、石油、染料和其他有毒污染物。对物理和化学改性、前驱体、掺杂剂和促进剂(如铁和氮)进行了讨论。最后,还介绍了生物炭的主要用途以及改善水质和土壤质量的相应机制(通过吸附、异相光催化和高级氧化过程),包括实验室和大中型规模的生物炭。考虑到生物炭的所有优点、合成方法和应用,生物炭是一种前景广阔的替代品,极有可能通过改善水质和土壤质量、减少温室气体排放来缓解环境问题,并通过剩余生物质促进循环经济,产生多种用途的增值产品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis Methods, Properties, and Modifications of Biochar-Based Materials for Wastewater Treatment: A Review
The global impact of water and soil contamination has become a serious issue that affects the world and all living beings. In this sense, multiple treatment alternatives have been developed at different scales to improve quality. Among them, biochar has become a suitable alternative for environmental remediation due to its high efficiency and low cost, and the raw material used for its production comes from residual biomass. A biochar is a carbonaceous material with interesting physicochemical properties (e.g., high surface area, porosity, and functional surface groups), which can be prepared by different synthesis methods using agricultural wastes (branches of banana rachis, cocoa shells, cane bagasse, among others) as feedstock. This state-of-the-art review is based on a general description of biochar for environmental remediation. Biochar’s production, synthesis, and multiple uses have also been analyzed. In addition, this work shows some alternatives used to improve the biochar properties and thus its efficiency for several applications, like removing heavy metals, oil, dyes, and other toxic pollutants. Physical and chemical modifications, precursors, dopants, and promoting agents (e.g., Fe and N species) have been discussed. Finally, the primary uses of biochar and the corresponding mechanism to improve water and soil quality (via adsorption, heterogeneous photocatalysis, and advanced oxidation processes) have been described, both at laboratory and medium and large scales. Considering all the advantages, synthesis methods, and applications, biochar is a promising alternative with a high potential to mitigate environmental problems by improving water and soil quality, reducing greenhouse gas emissions, and promoting the circular economy through residual biomass, generating value-added products for several uses.
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