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氧化镁改性氮掺杂多孔碳复合材料作为高效的高压二氧化碳捕集和甲烷存储候选材料。

Magnesium oxide modified nitrogen-doped porous carbon composite as an efficient candidate for high pressure carbon dioxide capture and methane storage.

机构信息

Alternative Energy and Nanotechnology Laboratory (AENL), Nano Functional Materials Technology Center (NFMTC), Department of Physics, Indian Institute of Technology Madras, Chennai 600036, India.

Department of Electrical Engineering, Indian Institute of Technology Madras, Chennai 600036, India.

出版信息

J Colloid Interface Sci. 2019 Mar 15;539:245-256. doi: 10.1016/j.jcis.2018.12.063. Epub 2018 Dec 17.

Abstract

In this particular work, a simple, cost-effective and single step process to synthesize magnesium oxide modified nitrogen doped porous carbon (MgO/NMC) by thermal decomposition technique has been elaborated and its high-pressure performance as CO and CH gas adsorbent is demonstrated. The uniformly distributed porous network in the samples was identified from the morphological studies by FESEM and TEM. Elemental analysis and XPS studies were carried out to understand the Mg and N contents. It has been observed that MgO/NMC shows appreciably high CO (30 mmol g at 20 bar and 25 °C) as well as CH (12 mmol g at 30 bar and 25 °C) adsorption capacity. The surface modification of the samples (caused by the presence of MgO nanoparticles) along with high surface area and good porosity containing interconnected macro-/ meso-/ micropores synergistically improves the adsorption capacity. In addition, high nitrogen content in the nanocomposite enhances the number of basic adsorption sites thereby increasing the gas adsorption capacity. The effect of concentration of MgO on gas adsorption capacities has also been investigated from the adsorption isotherms. The moderate heat of adsorption, as well as good recyclability and selectivity at high pressure, shows that MgO modified nitrogen doped porous carbon composite can be a promising candidate for both CO capture and CH storage.

摘要

在这项特殊的工作中,详细阐述了一种通过热分解技术合成氧化镁修饰氮掺杂多孔碳(MgO/NMC)的简单、经济且单步的方法,并证明了其作为 CO 和 CH 气体吸附剂的高压性能。通过 FESEM 和 TEM 的形态研究,可以识别出样品中均匀分布的多孔网络。进行了元素分析和 XPS 研究以了解 Mg 和 N 的含量。观察到 MgO/NMC 表现出相当高的 CO(在 20 巴和 25°C 下为 30 mmol g)和 CH(在 30 巴和 25°C 下为 12 mmol g)吸附容量。样品的表面改性(由 MgO 纳米粒子的存在引起)以及具有互连通的大/中/微孔的高表面积和良好的多孔性协同提高了吸附容量。此外,纳米复合材料中高含量的氮增加了碱性吸附位的数量,从而提高了气体吸附容量。还从吸附等温线研究了 MgO 浓度对气体吸附容量的影响。适中的吸附热以及在高压下的良好可回收性和选择性表明,氧化镁修饰的氮掺杂多孔碳复合材料可能是 CO 捕集和 CH 储存的有前途的候选材料。

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