4/6/2024 0 Comments Separation studioMoreover, practical industrial challenges and opportunities from the aspect of engineering are also discussed, to facilitate the industrial implementation of APMs for non-CO 2 GHG separation. Besides, the state-of-the-art separation performance and challenges of various APM materials towards each type of non-CO 2 GHG are analyzed, offering insightful guidance for future research. The material design and fabrication strategies, along with the molecular-level separation mechanisms are discussed. This review summarizes the progress of APM adsorbents and membranes for non-CO 2 GHG separation. have been developed to boost the adsorptive and membrane separation, due to their tunable pore structure and surface functionality. Advanced porous materials (APMs) including metal–organic frameworks (MOFs), covalent organic frameworks (COFs), hydrogen-bonded organic frameworks (HOFs), porous organic polymers (POPs), etc. Download the file 2.install trial and make account.3.after login to 14days or 0 days trial click quit or cl. In order to reduce the emission of non-CO 2 GHGs, advanced separation technologies with high efficiency and low energy consumption such as adsorptive separation or membrane separation are highly desirable. This Video is for Education Purpose only'step: 1. should not be overlooked, due to their high global warming potential and environmental hazards. However, the contribution of other non-CO 2 GHGs including methane (CH 4), nitrous oxide (N 2O), fluorocarbons, perfluorinated gases, etc. ![]() Global warming has become a growing concern over decades, prompting numerous research endeavours to reduce the carbon dioxide (CO 2) emission, the major greenhouse gas (GHG).
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