生物炭
原材料
材料科学
纳米材料
球磨机
环境友好型
可重用性
纳米技术
持续性
工艺工程
废物管理
环境科学
热解
计算机科学
工程类
化学
冶金
生物
有机化学
程序设计语言
生态学
软件
作者
Manish Kumar,Xinni Xiong,Zhonghao Wan,Yuqing Sun,Daniel C.W. Tsang,Juhi Gupta,Bin Gao,Xinde Cao,Jingchun Tang,Yong Sik Ok
标识
DOI:10.1016/j.biortech.2020.123613
摘要
Mechanochemical synthesis of nano-biochar by ball-milling technology is gaining attention for the sake of its low-cost and eco-friendly nature. Ball milling as a non-/less-solvent technology can propel environmental sustainability and waste valorization into engineered biochar for advanced applications. Scalable production of biochar nanomaterials with superior properties (e.g., 400-500 m2 g-1 surface area and 0.5-1000 nm pore sizes) enables diverse applications in the field of energy and environment. This review critically evaluates the synthesis, characterization, and application of ball-milled biochar nanomaterials based on the latest findings. Limitations such as feedstock selection, process optimization, product homogeneity and reusability, environmental risks, and sustainability assessment remain challenging for further studies. This work highlights the recent advances on mechanochemical biochar technology and offer insights into opportunities and future prospects related to sustainable and facile synthesis of biochar-based novel materials for achieving sustainable development goals.
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