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具有超大气孔体积的开放和分层碳框架,用于高效捕获二氧化碳。

Open and Hierarchical Carbon Framework with Ultralarge Pore Volume for Efficient Capture of Carbon Dioxide.

机构信息

Key Laboratory of Poyang Lake Environment and Resource Utilization of Ministry of Education, School of Resources Environmental and Chemical Engineering , Nanchang University , Nanchang , Jiangxi 330031 , China.

National Engineering Research Center of Chemical Fertilizer Catalyst (NERC-CFC), School of Chemical Engineering , Fuzhou University , Fuzhou , Fujian 350016 , China.

出版信息

ACS Appl Mater Interfaces. 2018 Oct 31;10(43):36961-36968. doi: 10.1021/acsami.8b12182. Epub 2018 Oct 11.

Abstract

Amine-impregnated adsorbents are promising candidates for the selective capture of CO from flue gas. The key is to develop suitable supports possessing large pore sizes and very large pore volumes, and the material has to be facilely synthesized from readily available reagents. In this work, hierarchical carbon nanosheet (CNS) featuring large pore width (30-100 nm) and extraordinarily huge pore volume (8.41 cm/g) was prepared through controlled carbonization of glucose and dicyandiamide. The CNS was physically impregnated with pentaethylenehexamine (PEHA) to act as adsorbents for selective capture of CO. Owing to the unique porosity of CNS, the amount of amine loading in CNS can be ultrahigh (6 g PEHA/g CNS) in comparison with those of known amine-impregnated adsorbents, and the CO capacity in a flow of 15 v/v % of CO balanced in N was up to 5.0 mmol/g at 75 °C. The synthesized PEHA-CNS composite materials perform well in capturing CO under humid condition and display good stability in a test of 10 adsorption-desorption cycles. It is believed that the CNS synthesized in this work has great potential to act as a support material for CO adsorption.

摘要

胺浸渍吸附剂是从烟道气中选择性捕获 CO 的有前途的候选者。关键是要开发具有大孔径和非常大孔体积的合适载体,并且该材料必须易于从易得的试剂合成。在这项工作中,通过控制葡萄糖和双氰胺的碳化制备了具有大孔径(30-100nm)和特大孔体积(8.41cm/g)的分级碳纳米片(CNS)。CNS 通过物理浸渍戊二烯六胺(PEHA)作为吸附剂,用于选择性捕获 CO。由于 CNS 的独特孔隙率,与已知的胺浸渍吸附剂相比,CNS 中的胺负载量可以超高(6gPEHA/gCNS),在 75°C 时,在 15v/v%CO 平衡在 N 中的流量下,CO 容量高达 5.0mmol/g。在潮湿条件下,合成的 PEHA-CNS 复合材料在捕获 CO 方面表现良好,在 10 次吸附-解吸循环测试中表现出良好的稳定性。相信这项工作中合成的 CNS 具有作为 CO 吸附的支撑材料的巨大潜力。

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