生物炭
人体净化
酸性矿井排水
牡蛎
球磨机
碱度
化学
石灰
废物管理
制浆造纸工业
环境化学
材料科学
冶金
热解
地质学
有机化学
工程类
海洋学
作者
Jingyi Gao,Mengdi Zhao,Zibo Xu,Kang Liu,Hua Zhong,Daniel C.W. Tsang
标识
DOI:10.1016/j.biortech.2023.129892
摘要
Ca-biochar is an efficient material for As(III)-containing acid mine drainage (AMD) decontamination, while it is challenging to fabricate Ca-biochar with oyster shell waste as the Ca source due to its complex structure. Herein, a mechanochemical method was proposed to activate oyster shell waste and wood waste for Ca-biochar design and production, and its efficacy and relevant mechanisms for AMD detoxification were evaluated. The smaller size Ca-biochar produced by the medium-speed ball milling showed a higher As(III) removal (74.0 %) compared to high-speed ball milling (60.9 %), attributed to the formation of finer Ca(OH)2 while avoiding particle aggregation, which could release more Ca (89.0 mg/g) and alkalinity for the co-precipitation of As. Meanwhile, wood-based biochar substrate served as a platform for co-precipitation, and its surface functionality supported the oxidative immobilization of As. This study presents a promising route for upcycling food and wood waste to produce Ca-biochar for AMD decontamination.
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