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评估微孔尺寸和 N 掺杂在多孔碳捕获 CO2 中的作用。

Assessment of the role of micropore size and N-doping in CO2 capture by porous carbons.

机构信息

Instituto Nacional del Carbón (CSIC), Oviedo, Spain.

出版信息

ACS Appl Mater Interfaces. 2013 Jul 10;5(13):6360-8. doi: 10.1021/am401423b. Epub 2013 Jun 24.

Abstract

The role of micropore size and N-doping in CO2 capture by microporous carbons has been investigated by analyzing the CO2 adsorption properties of two types of activated carbons with analogous textural properties: (a) N-free carbon microspheres and (b) N-doped carbon microspheres. Both materials exhibit a porosity made up exclusively of micropores ranging in size between <0.6 nm in the case of the pristine materials and up to 1.6 nm for the highly activated carbons (47% burnoff). The N-doped carbons possess ~3 wt % of N heteroatoms that are incorporated into several types of functional groups (i.e., pyrrole/pyridone, pyridine, quaternary, and pyridine-N-oxide). Under conventional operation conditions (i.e., T ~ 0-25 °C and P(CO2) ~ 0-1 bar), CO2 adsorption proceeds via a volume-filling mechanism, the size limit for volume-filling being ~0.7-0.8 nm. Under these circumstances, the adsorption of CO2 by nonfunctionalized porous carbons is mainly determined by the volume of the micropores with a size below 0.8 nm. It was also observed that the CO2 capture capacities of undoped and N-doped carbons are analogous which shows that the nitrogen functionalities present in these N-doped samples do not influence CO2 adsorption. Taking into account the temperature invariance of the characteristic curve postulated by the Dubinin theory, we show that CO2 uptakes can be accurately predicted by using the adsorption data measured at just one temperature.

摘要

微孔大小和 N 掺杂在微孔碳对 CO2 捕获中的作用通过分析两种具有类似结构特性的活性炭的 CO2 吸附性能来研究:(a)无 N 碳微球和(b)N 掺杂碳微球。这两种材料都表现出完全由微孔组成的孔隙率,在原始材料的情况下,微孔大小在<0.6nm 之间,对于高度活化的碳(47%烧失量),微孔大小可达 1.6nm。N 掺杂碳含有约 3wt%的 N 杂原子,这些杂原子被掺入到几种官能团中(即吡咯/吡酮、吡啶、季铵和吡啶-N-氧化物)。在常规操作条件下(即 T0-25°C 和 P(CO2)0-1bar),CO2 吸附通过体积填充机制进行,体积填充的尺寸限制约为 0.7-0.8nm。在这些情况下,无官能化多孔碳对 CO2 的吸附主要由尺寸小于 0.8nm 的微孔体积决定。还观察到,未掺杂和 N 掺杂碳的 CO2 捕获容量类似,这表明这些 N 掺杂样品中存在的氮官能团不会影响 CO2 吸附。考虑到 Dubinin 理论假定的特征曲线的温度不变性,我们表明可以仅使用在一个温度下测量的吸附数据准确预测 CO2 吸收量。

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