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介孔/微孔控制的分级多孔碳源于活化生物炭,作为一种用于去除铜的高性能吸附剂。

Meso/micropore-controlled hierarchical porous carbon derived from activated biochar as a high-performance adsorbent for copper removal.

机构信息

Graduate Institute of Environmental Engineering, National Taiwan University, No. 1, Sec. 4. Roosevelt Rd., Taipei 10617, Taiwan; Faculty of Environmental Engineering, National University of Civil Engineering, 55 Giai Phong, Hai Ba Trung, Hanoi 100000, Vietnam.

Graduate Institute of Environmental Engineering, National Taiwan University, No. 1, Sec. 4. Roosevelt Rd., Taipei 10617, Taiwan.

出版信息

Sci Total Environ. 2019 Nov 20;692:844-853. doi: 10.1016/j.scitotenv.2019.07.125. Epub 2019 Jul 9.

Abstract

High-quality meso/micropore-controlled hierarchical porous carbon (HPC) was synthesized by a hard template method utilizing rice husk biochar and then used to adsorb copper ions from an aqueous solution. The preparation procedure included two main steps: base leaching and physicochemical activation. During the activation process, the porosity characteristics (i.e., specific surface area and meso/micropore ratio) were controlled by altering the KOH impregnation ratio, activation time, and temperature under the CO atmosphere. In addition, a copper adsorption study was performed using three HPC samples with different pore structures and characteristics. The results of this study indicate that the adsorption capacity of HPC material derived from rice husk biochar is strongly influenced by its meso/micropore ratio. As evidenced, HPC 3-0.5-800, which was impregnated by a KOH:biochar ratio of 3 and activated at 800°C for 0.5h under a CO atmosphere, has a very high specific surface area of 2330 mg with an 81% mesopore to total specific surface area. Importantly, it exhibited a superior adsorption capacity of 265mgg and rapid adsorption kinetics for copper ions. The improvement is ascribed to the high specific surface area and favorable hierarchical structure. The findings demonstrate the feasibility of controlling the hierarchical pore structure of rice husk biochar-derived carbons as high-performance adsorbents for copper ion removal from water.

摘要

采用硬模板法以稻壳生物炭为原料合成了高质量的中/微孔可控分级多孔碳(HPC),并将其用于从水溶液中吸附铜离子。该制备方法包括两个主要步骤:碱浸和物理化学活化。在活化过程中,通过改变 KOH 浸渍比、CO 气氛下的活化时间和温度来控制孔隙率特征(即比表面积和中/微孔比)。此外,还使用三种具有不同孔结构和特性的 HPC 样品进行了铜吸附研究。研究结果表明,稻壳生物炭衍生的 HPC 材料的吸附能力强烈受其中/微孔比的影响。结果表明,在 CO 气氛下,KOH:生物炭比为 3,活化温度为 800°C,活化时间为 0.5h 的 HPC 3-0.5-800 具有非常高的比表面积 2330mg,其中 81%为中孔,总比表面积。重要的是,它对铜离子表现出优异的吸附容量 265mgg 和快速的吸附动力学。这种改进归因于高比表面积和有利的分级结构。研究结果表明,控制稻壳生物炭衍生碳的分级孔结构作为从水中去除铜离子的高性能吸附剂是可行的。

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