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从典型的富硅生物质到多孔碳-沸石复合材料:一种可持续的方法,用于高效吸附 CO.

From typical silicon-rich biomass to porous carbon-zeolite composite: A sustainable approach for efficient adsorption of CO.

机构信息

College of Architecture and Environment, Sichuan University, Chengdu 610065, China.

College of Architecture and Environment, Sichuan University, Chengdu 610065, China; National Engineering Research Center for Flue Gas Desulfurization, Chengdu 610065, China.

出版信息

Sci Total Environ. 2021 May 10;768:144529. doi: 10.1016/j.scitotenv.2020.144529. Epub 2021 Jan 7.

Abstract

Focusing on the high-valued utilization of the widespread silicon-rich waste biomass, a sustainable route by simultaneous utilization of carbon and silicon from silicon-rich rice husk was proposed in this work. Specifically, porous carbon-zeolite composite with hierarchical porous structure of micro/meso pores (carbon) and ultra-microporous pores (Na-X zeolite) was in situ prepared by a facile one-pot method. The obtained porous carbon-zeolite composite (PC-Z) had a higher yield of 67.66% compared to the porous carbon without silicon (PC) of 43.33%. Moreover, due to the high ultra-micropore volume of the PC-Z sample (up to 0.181 cm/g), it exhibited high dynamic CO adsorption capacity of 1.81 mmol/g and CO/N selectivity of 9.80 (1 bar), which were higher than 1.67 mmol/g and 7.01 (1 bar) for PC, respectively. PC-Z also showed good regeneration efficiency above 99% after ten cycles. Furthermore, the economic and energy consumption assessment of this utilization route was conducted. Overall, a facile one-pot route was developed to prepare highly efficient composite absorbents from silicon-rich biomass, which can be widely used in different environmental applications.

摘要

本工作聚焦于高附加值利用广泛存在的富硅生物质,提出了一条可持续的路线,从富硅稻壳中同时利用碳和硅。具体而言,通过简便的一锅法原位制备了具有微孔/介孔(碳)和超微孔(Na-X 沸石)分级多孔结构的多孔碳-沸石复合材料(PC-Z)。与无硅的多孔碳(PC)的产率 43.33%相比,获得的多孔碳-沸石复合材料(PC-Z)的产率更高,为 67.66%。此外,由于 PC-Z 样品具有较高的超微孔体积(高达 0.181cm³/g),其在 1bar 下具有较高的动态 CO 吸附容量(1.81mmol/g)和 CO/N 选择性(9.80),而 PC 的相应值分别为 1.67mmol/g 和 7.01(1bar)。PC-Z 在十次循环后也表现出高于 99%的良好再生效率。此外,还对这条利用路线的经济和能源消耗进行了评估。总的来说,开发了一种简便的一锅法,从富硅生物质中制备高效复合吸收剂,可广泛应用于不同的环境应用中。

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