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用于厌氧消化生物气生物精炼的混合基质膜研究进展。

Advances in mixed-matrix membranes for biorefining of biogas from anaerobic digestion.

作者信息

Guerrero Piña Jean Carlo, Alpízar Daniel, Murillo Paola, Carpio-Chaves Mónica, Pereira-Reyes Reynaldo, Vega-Baudrit José, Villarreal Claudia

机构信息

Escuela de Ciencia e Ingeniería de Materiales, Instituto Tecnológico de Costa Rica, Cartago, Costa Rica.

Laboratorio Nacional de Nanotecnología (LANOTEC), Centro Nacional de Alta Tecnología (CENAT), San José, Costa Rica.

出版信息

Front Chem. 2024 Jun 3;12:1393696. doi: 10.3389/fchem.2024.1393696. eCollection 2024.

Abstract

This article provides a comprehensive review of the state-of-the-art technology of polymeric mixed-matrix membranes for CO/CH separation that can be applied in medium, small, and domestic biogas systems operating at low pressures (0.2-6 kPa). Critical data from the latest publications of CO/CH separation membranes were analyzed, considering the ratio of CO/CH permeabilities, the CO selectivity, the operating pressures at which the membranes were tested, the chemistry of the polymers studied and their gas separation mechanisms. And the different nanomaterials as fillers. The intrinsic microporous polymers (PIMs) were identified as potential candidates for biomethane purification due to their high permeability and selectivity, which are compatible with operation pressures below 1 bar, and as low as 0.2 bar. This scenario contrasts with other polymers that require pressures above 1 bar for operation, with some reaching 20 bar. Furthermore, the combination of PIM with GO in MMMs was found to not influence the permeability significantly, but to contribute to the membrane stability over time, by preventing the structural collapse of the membrane caused by aging. The systematic analysis here presented is a valuable resource for defining the future technological development of CO/CH separation membranes for biogas biorefining.

摘要

本文全面综述了用于CO/CH分离的聚合物混合基质膜的先进技术,该技术可应用于在低压(0.2 - 6 kPa)下运行的中、小和家用沼气系统。分析了CO/CH分离膜最新出版物中的关键数据,考虑了CO/CH渗透率之比、CO选择性、测试膜时的操作压力、所研究聚合物的化学性质及其气体分离机制,以及作为填料的不同纳米材料。由于其高渗透率和选择性,固有微孔聚合物(PIMs)被确定为生物甲烷净化的潜在候选材料,它们与低于1 bar(低至0.2 bar)的操作压力兼容。这种情况与其他需要高于1 bar压力才能运行的聚合物形成对比,有些聚合物的操作压力高达20 bar。此外,在混合基质膜中发现PIM与氧化石墨烯(GO)的组合不会显著影响渗透率,但通过防止老化导致的膜结构坍塌,有助于膜的长期稳定性。本文所呈现的系统分析是确定用于沼气生物精炼的CO/CH分离膜未来技术发展的宝贵资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05c9/11180831/6e1dde84799d/fchem-12-1393696-g001.jpg

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