Elaborating the mechanism of lead adsorption by biochar: Considering the impacts of water-washing and freeze-drying in preparing biochar

生物炭 吸附 热解 化学 离子交换 降水 环境化学 木炭 离子 有机化学 物理 气象学
作者
Yihuan Liu,Yaoning Chen,Yuanping Li,Li Chen,Hongjuan Jiang,Longbo Jiang,Haoqin Yan,Mengyang Zhao,Suzhen Hou,Chen Zhao,Yanrong Chen
出处
期刊:Bioresource Technology [Elsevier BV]
卷期号:386: 129447-129447 被引量:28
标识
DOI:10.1016/j.biortech.2023.129447
摘要

This paper examined the impacts of different pretreatments on the characteristics of biochar and its adsorption behavior for Pb2+. Biochar with combined pretreatment of water-washing and freeze-drying (W-FD-PB) performed a maximum adsorption capacity for Pb2+ of 406.99 mg/g, higher than that of 266.02 mg/g on water-washing pretreated biochar (W-PB) and 188.21 mg/g on directly pyrolyzed biochar (PB). This is because the water-washing process partially removed the K and Na, resulting in the relatively enriched Ca and Mg on W-FD-PB. And the freeze-drying pretreatment broke the fiber structure of pomelo peel, favoring the development of a fluffy surface and large specific surface area during pyrolysis. Quantitative mechanism analysis implied that cation ion exchange and precipitation were the driving forces in Pb2+ adsorption on biochar, and both mechanisms were enhanced during Pb2+ adsorption on W-FD-PB. Furthermore, adding W-FD-PB to Pb-contaminated soil increased the soil pH and significantly reduced the availability of Pb.
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