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首页> 外文期刊>RSC Advances >Broadening the pore size of coal-based activated carbon via a washing-free chem-physical activation method for high-capacity dye adsorption
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Broadening the pore size of coal-based activated carbon via a washing-free chem-physical activation method for high-capacity dye adsorption

机译:通过免洗化学-物理活化方法扩大煤基活性炭的孔径,以吸附大容量染料

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摘要

Aiming to overcome the limitations of the narrow pore size distributions of traditional activated carbon materials and to achieve wide adaptabilities towards large molecules adsorption, we herein demonstrate a new type of activated carbon with a broadened pore size distribution for high-rate and high-capacity aqueous dye molecule (Rhodamine B) adsorption. The preparation of CP-AC is achieved by a facile and one-step mineral-assisted chem-physical activation strategy from Chinese large-reserve Zhundong coal with ZnCl _(2) and CO _(2) as the activation agents. The method yields the activated carbon (CP-AC) that has a pore-size broadened hierarchical pore configuration with a high surface area and a large pore volume, favorably enabling a high-capacity Rhodamine B adsorption up to 881?mg g ~(?1) , which is among the highest levels of the reported activated carbons. A sonication-assisted adsorption test further demonstrates the high-rate adsorption capability of CP-AC with Rhodamine B adsorption capacity up to 842 mg g ~(?1) within 30 min (96% of the saturation capacity) while microporous activated carbon obtained by solely ZnCl _(2) activation could just achieve a capacity of 374 mg g ~(?1) within 30 min. In virtue of the low-cost resource materials and washing-free craft, this work offers a simple and green preparation strategy towards high-performance coal based activated carbons, holding great potentials for the industrial production and applications.
机译:为了克服传统活性炭材料狭窄的孔径分布的局限性并实现对大分子吸附的广泛适应性,我们在本文中演示了一种新型的活性炭,其具有宽的孔径分布,适用于高速率和高容量的水溶液。染料分子(若丹明B)的吸附。 CP-AC的制备是通过以ZnCl _(2)和CO _(2)为活化剂的,来自中国大型储量准东煤的一种简便,一步一步的矿物辅助化学-物理活化策略实现的。该方法产生的活性炭(CP-AC)具有孔径扩大,层次分明的孔结构,高表面积和大孔体积,有利地实现了高容量罗丹明B的吸附,吸附量高达881?mg g〜(? 1),这是报告的活性炭含量最高的一种。超声辅助吸附实验进一步证明了CP-AC在30分钟内(饱和容量的96%)对罗丹明B的吸附能力高达842 mg g〜(?1)(对饱和容量的96%)的高速率吸附能力。仅ZnCl_(2)活化仅能在30分钟内达到374 mg g〜(?1)。凭借低成本的资源材料和免洗工艺,这项工作为高性能的煤基活性炭提供了一种简单而绿色的制备策略,为工业生产和应用提供了巨大的潜力。

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