Zhang Peng, Duan Wenyan, Peng Hongbo, Pan Bo, Xing Baoshan
Yunnan Provincial Key Laboratory of Soil Carbon Sequestration and Pollution Control, Faculty of Environmental Science & Engineering, Kunming University of Science & Technology, Kunming 650500, China.
Faculty of Modern Agricultural Engineering, Kunming University of Science & Technology, Kunming 650500, China.
ACS Environ Au. 2021 Nov 30;2(2):115-127. doi: 10.1021/acsenvironau.1c00032. eCollection 2022 Mar 16.
Biochar has attracted increasing research attention. Various modification methods have been proposed to enhance a certain biochar function. However, these modifications may also result in an unstable structure, additional energy consumption, secondary pollution, and/or extra cost. Balanced consideration of different aspects will ensure the sustainable development of biochar technology. This review first summarizes the most commonly used methods for biochar modification. These methods are categorized according to the purposes of modification, such as surface area enlargement, persistent free radical manipulation, magnetism introduction, and redox potential enhancement. More importantly, a systematic analysis and discussion are provided regarding the balanced consideration of biochar designs, such as the balance between effectiveness and stability, functions and risks, as well as effectiveness and cost. Then, perspectives regarding biochar modification are presented. This review calls for attention that biochar modifications should not be evaluated for their functions only. A balanced design of biochars will ensure both the practicability and the effectiveness of this technology.
生物炭已引起越来越多的研究关注。人们提出了各种改性方法来增强生物炭的特定功能。然而,这些改性也可能导致结构不稳定、额外的能量消耗、二次污染和/或额外成本。综合考虑不同方面将确保生物炭技术的可持续发展。本综述首先总结了生物炭改性最常用的方法。这些方法根据改性目的进行分类,如扩大表面积、操纵持久性自由基、引入磁性和增强氧化还原电位。更重要的是,对生物炭设计的综合考虑进行了系统分析和讨论,如有效性与稳定性、功能与风险以及有效性与成本之间的平衡。然后,给出了生物炭改性的展望。本综述呼吁注意,生物炭改性不应仅根据其功能进行评估。生物炭的平衡设计将确保该技术的实用性和有效性。