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用于CO分离的混合基质有机硅水滑石膜 第1部分:合成与分析描述

Mixed-Matrix Organo-Silica-Hydrotalcite Membrane for CO Separation Part 1: Synthesis and Analytical Description.

作者信息

Bünger Lucas, Garbev Krassimir, Ullrich Angela, Stemmermann Peter, Stapf Dieter

机构信息

Institute for Technical Chemistry, Karlsruhe Institute of Technology, 76344 Karlsruhe, Germany.

出版信息

Membranes (Basel). 2024 Aug 6;14(8):170. doi: 10.3390/membranes14080170.

Abstract

Hydrotalcite exhibits the capability to adsorb CO at elevated temperatures. High surface area and favorable coating properties are essential to harness its potential for practical applications. Stable alcohol-based dispersions are needed for thin film applications of mixed membranes containing hydrotalcite. Currently, producing such dispersions without the need for delamination and dispersing agents is a challenging task. This work introduces, for the first time, a manufacturing approach to overcoming the drawbacks mentioned above. It includes a synthesis of hydrotalcite nanoparticles, followed by agent-free delamination of their layers and final dispersion into alcohol without dispersing agents. Further, the hydrotalcite-derived sorption agent is dispersed in a matrix based on organo-silica gels derived from 1,2-bis(triethoxysilyl)ethane (BTESE). The analytical results indicate that the interconnection between hydrotalcite and BTESE-derived gel occurs via forming a strong hydrogen bonding system between the interlayer species (OH groups, CO) of hydrotalcite and oxygen and silanol active gel centers. These findings lay the foundation for applications involving incorporating hydrotalcite-like compounds into silica matrices, ultimately enabling the development of materials with exceptional mass transfer properties. In part 2 of this study, the gas separation performance of the organo-silica and the hydrotalcite-like materials and their combined form will be investigated.

摘要

水滑石在高温下具有吸附一氧化碳的能力。高比表面积和良好的涂层性能对于发挥其实际应用潜力至关重要。对于含镁铝水滑石的混合膜的薄膜应用而言,需要稳定的醇基分散体。目前,在无需分层和分散剂的情况下制备此类分散体是一项具有挑战性的任务。这项工作首次引入了一种制造方法来克服上述缺点。它包括合成水滑石纳米颗粒,随后对其层进行无试剂分层,并最终在无分散剂的情况下分散到醇中。此外,源自水滑石的吸附剂分散在基于由1,2-双(三乙氧基硅基)乙烷(BTESE)衍生的有机硅胶的基质中。分析结果表明,水滑石与BTESE衍生的凝胶之间的相互连接是通过在水滑石的层间物种(OH基团、CO)与氧和硅醇活性凝胶中心之间形成强氢键系统而发生的。这些发现为将类水滑石化合物纳入二氧化硅基质的应用奠定了基础,最终能够开发出具有卓越传质性能的材料。在本研究的第2部分中,将研究有机二氧化硅和类水滑石材料及其组合形式的气体分离性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6786/11356514/029aac971a81/membranes-14-00170-g001.jpg

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