活性炭
电容去离子
生物炭
吸附
比表面积
微型多孔材料
化学工程
碳化
材料科学
电化学
多孔性
电极
化学
复合材料
热解
有机化学
工程类
物理化学
催化作用
作者
Wencui Chai,Fangxian Wang,Zhongmei Miao,Nannan Che
标识
DOI:10.1016/j.dwt.2024.100617
摘要
Porous carbon electrode materials were prepared by carbonization and alkali activation from three natural porous biomasses, lotus petiole (LP), sunflower plate (SP), and lotus seedpod (LS). The pore structure, surface characteristics, and electrochemical properties of the three activated biochars were investigated and related to their CDI performance. The results indicated that the three activated biochars were hydrophilic and negatively charged, with a high specific surface area and an abundance of micropores. Due to the best surface wettability, highest specific capacitance, and shortest charge-discharge time, lotus petiole-based activated biochar (LPCK) had the highest electrosorption capacity of 8.67 mg·g−1 and faster desalination rate of 0.24 mg·g−1·min−1. Cyclic voltammetry and adsorption kinetics results indicate that the double-layer electrostatic adsorption mechanism dominated the CDI processes of the three activated biochars. The use of three biomass wastes provides low-cost, eco-friendly, and sustainable materials for the development of CDI electrodes.
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