Wang Yong-Sheng, Zhang Xue-Jie, Ba Ya-Qi, Li Tian-Yi, Hao Guang-Ping, Lu An-Hui
State Key Laboratory of Fine Chemicals, Liaoning Key Laboratory for Catalytic Conversion of Carbon Resources, School of Chemical Engineering, Dalian University of Technology, Dalian 116024, China.
Research (Wash D C). 2022 Jun 21;2022:9780864. doi: 10.34133/2022/9780864. eCollection 2022.
Light hydrocarbons (LHs) separation is an important process in petrochemical industry. The current separation technology predominantly relies on cryogenic distillation, which results in considerable energy consumption. Adsorptive separation using porous solids has received widespread attention due to its lower energy footprint and higher efficiency. Thus, tremendous efforts have been devoted to the design and synthesis of high-performance porous solids. Among them, porous carbons display exceptional stability, tunable pore structure, and surface chemistry and thus represent a class of novel adsorbents upon achieving the matched pore structures for LHs separations. In this review, the modulation strategies toward advanced carbon-based adsorbents for LHs separation are firstly reviewed. Then, the relationships between separation performances and key structural parameters of carbon adsorbents are discussed by exemplifying specific separation cases. The research findings on the control of the pore structures as well as the quantification of the adsorption sites are highlighted. Finally, the challenges of carbonaceous adsorbents facing for LHs separation are given, which would motivate us to rationally design more efficient absorbents and separation processes in future.
轻质烃(LHs)分离是石化行业中的一个重要过程。目前的分离技术主要依赖于低温蒸馏,这导致了相当大的能源消耗。使用多孔固体的吸附分离因其较低的能源消耗和较高的效率而受到广泛关注。因此,人们在高性能多孔固体的设计和合成方面付出了巨大努力。其中,多孔碳具有出色的稳定性、可调节的孔结构和表面化学性质,因此在实现与LHs分离相匹配的孔结构时,代表了一类新型吸附剂。在这篇综述中,首先回顾了用于LHs分离的先进碳基吸附剂的调控策略。然后,通过举例具体的分离案例,讨论了碳吸附剂的分离性能与关键结构参数之间的关系。重点介绍了在孔结构控制以及吸附位点定量方面的研究成果。最后,给出了碳质吸附剂在LHs分离方面面临的挑战,这将促使我们在未来合理设计更高效的吸附剂和分离工艺。