Junita Tri Komala, Syakir Norman, Faizal Ferry
Department of Physics, Faculty of Mathematics and Natural Sciences, Padjadjaran University, Sumedang 45363, Indonesia.
Department of Biotechnology, Faculty of Graduate School, Padjadjaran University, Bandung 40132, Indonesia.
ACS Omega. 2024 Apr 30;9(19):20658-20669. doi: 10.1021/acsomega.3c08722. eCollection 2024 May 14.
The current energy system is based largely on fossil fuels that emit carbon dioxide (CO) and contribute to global climate change. Global energy demand is expected to increase, with growth approximately doubled by the year 2050 and tripled by the end of the century. Therefore, research and development on emissions management and carbon cycle solutions that meet energy sustainability is critical to reduce the effects of global warming. The key point of this literature review is the selection of suitable materials for carbon capture. The selection is based on the consideration that the CO reduction properties are influenced by the type of material/composite that is being used, the preparation, and the possible characterization method. This Review covers graphene-based materials and their composites as appropriate materials for reducing CO and their performance assessment through experiments and theoretical analysis. It is very important to improve the efficiency performance of materials and its scalability. Recently, graphene has become a widely used material for environmental applications, one of which shows good performance in reducing CO concentration. To separate CO, graphene has been developed and is now being showcased and reviewed in this study. Given the measuring technique used, this Review is intended to be a valuable resource for individuals researching CO separation employing graphene material in combination with other materials.
当前的能源系统主要基于会排放二氧化碳(CO)并导致全球气候变化的化石燃料。预计全球能源需求将会增加,到2050年增长幅度约为两倍,到本世纪末增长幅度将达到三倍。因此,针对符合能源可持续性的排放管理和碳循环解决方案开展研发工作对于减轻全球变暖的影响至关重要。这篇文献综述的重点是选择适合碳捕获的材料。这种选择基于这样的考虑,即CO减排特性受到所使用材料/复合材料的类型、制备方法以及可能的表征方法的影响。本综述涵盖基于石墨烯的材料及其复合材料,将其作为减少CO的合适材料,并通过实验和理论分析对其性能进行评估。提高材料的效率性能及其可扩展性非常重要。近来,石墨烯已成为一种广泛用于环境应用的材料,其中之一在降低CO浓度方面表现出良好性能。为了分离CO,已对石墨烯进行了开发,并且现在将在本研究中对其进行展示和综述。鉴于所使用的测量技术,本综述旨在为那些研究采用石墨烯材料与其他材料相结合来分离CO的人员提供有价值的参考资源。