氧化钛担载氨基离子液体吸收二氧化碳性能初探任务书

 2021-09-30 23:01:44

1. 毕业设计(论文)的内容和要求

1.本论文主要通过查阅文献资料了解国内外物理负载的方法制备离子液体等吸收剂固定化颗粒,将其用于二氧化碳分离的研究进展情况和最新的研究成果。

2. 在研究生指导后,能够独立将离子液体等吸收剂负载到多孔无机颗粒,并反馈有效信息。

3. 能针对实验中的现象提出问题,与指导的研究生相互讨论,同时能够做到查阅相关文献来解决问题。

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2. 参考文献

[1]孙莹莹 and 李响, 全球变暖引发的思考. 中国环境管理丛书, 2010. 2: p. 4-6[2]赵志军, 董海峰, and 张香平, 离子液体捕集二氧化碳的研究进展(英文). Chinese Journal of Chemical Engineering, 2012(01): p. 120-129.[3]Blanchard, L.A., Z. Gu, and J.F. Brennecke, High-pressure phase behavior of ionic liquid/CO2 systems.The Journal of Physical Chemistry B, 2001. 105(12): p. 2437-2444.[4]Blanchard, L.A., et al., Green processing using ionic liquids and CO2. nature, 1999. 399(6731): p. 28-29.[5]Li, X., et al., Solubility of CO2in a Choline Chloride Urea Eutectic Mixture. Journal of Chemical from molten salts to neoteric solvents. Green Chemistry, 2002. 4(2): p. 73-80.[8] Bates, E.D., et al., CO2 Capture by a Task-Specific Ionic Liquid. J Am Chem Soc, 2002. 124(6): p. 926-927.[9]Gurkan, B.E., et al., Equimolar CO2 absorption by anion-functionalized ionic liquids. J Am Chem Soc, 2010. 132(7): p. 2116-2117.[10]Zhang, Y., et al., Dual Amino‐Functionalised Phosphonium Ionic Liquids for CO2 Capture. Chemistry-a European Journal, 2009. 15(12): p. 3003-3011.[11]Gu, Y. and G. Li, Ionic Liquids‐Based Catalysis with Solids: State of the Art. Advanced Synthesis Catalysis, 2009. 351(6): p. 817-847.[12]Soutullo, M.D., et al., Reversible CO2 capture by unexpected plastic-, resin-, and gel-like ionic soft materials discovered during the Combi-Click generation of a TSIL library. Chemistry of Materials, 2007. 19(15): p. 3581-3583.[13]Zhang, J., et al., Supported absorption of CO2 by tetrabutylphosphonium amino acid ionic liquids. CHEM-EUR J, 2006. 12(15): p. 4021-4026.[14]Zhang, Z., et al., Preparation and SO2 sorption/desorption behavior of an ionic liquid supported on porous silica particles. IND ENG CHEM RES, 2009. 48(4): p. 2142-2148.[15]赵旭, et al., 离子液体在气体分离中的应用. 化学进展, 2011(11): p. 2258-2268.

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