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Ionic Liquids with Cu(Ⅰ) Salt and DMF for Separation of Propylene and Propane

ABSTRACT第6-7页
Chapter 1-Literature Review第11-25页
    1.1 Industrial Background第11-12页
    1.2 Separation Technology of Propylene and Propane第12-18页
        1.2.1 Cryogenic Distillation第12-13页
        1.2.2 Membrane Separation第13-15页
        1.2.3 Adsorption Separation第15-16页
        1.2.4 Absorption Separation第16-18页
    1.3 Ionic Liquids and Their Application in Separation Processes第18-23页
        1.3.1 Introduction to Ionic Liquids第18-20页
        1.3.2 Application of Ionic liquids in Gas Separation第20-21页
        1.3.3 Application of Ionic Liquids in Propylene and Propane Separation第21-23页
    1.4 Research Purpose, Significance and Main Contents第23-25页
Chapter 2-Ionic Liquids Synthesis and Experimental Apparatus Setup第25-36页
    2.1 Synthesis of Ionic Liquids第25-28页
        2.1.1 Experimental Chemicals第25页
        2.1.2 Experimental Instruments and Equipment第25-26页
        2.1.3 Synthesis of [Bmim]SCN-DMF-CuSCN第26-27页
            2.1.3.1 Synthesis of [Bmim]Cl第26-27页
            2.1.3.2 Synthesis of [Bmim]SCN第27页
            2.1.3.3 Synthesis of [Bmim]SCN-DMF-CuSCN第27页
        2.1.4 Synthesis of [Emim]SCN-DMF-CuSCN第27-28页
            2.1.4.1 Synthesis of [Emim]Br第27-28页
            2.1.4.2 Synthesis of [Emim]SCN第28页
            2.1.4.3 Synthesis of [Emim]SCN-DMF-CuSCN第28页
    2.2 Design and Construction of Propylene and Propane Absorption Separation Apparatus第28-30页
        2.2.1 Gravimetric Method第29页
        2.2.2 Chromatography第29页
        2.2.3 Density Method第29页
        2.2.4 Constant Volume Method第29-30页
    2.3 Propylene and Propane Absorption Apparatus第30-32页
    2.4 Experimental Principle第32-34页
    2.5 Experimental Procedure第34-35页
    2.6 Summary第35-36页
Chapter 3-Experimental Absorption of Ionic Liqu id for Propylene andPropane第36-54页
    3.1 Introduction第36页
    3.2 Absorption of Propylene and Propane by[Bmim]SCN-DMF-CuSCN第36-42页
        3.2.1 Effect of Cu~+ Concentration第37-38页
        3.2.2 Effect of Pressure第38-40页
        3.2.3 Effect of Temperature第40-41页
        3.2.4 Prediction of Separation Performance of[Bmim]SCN-DMF-CuSCN for Propylene andPropane第41-42页
    3.3 Absorption of Propylene and Propane by[Emim]SCN-DMF-CuSCN第42-49页
        3.3.1 Effect of Cu~+ Concentration第43-45页
        3.3.2 Effect of Pressure第45-46页
        3.3.3 Effect of Temperature第46-47页
        3.3.4 Prediction of Separation Performance of[Emim]SCN-DMF-CuSCN for Propylene andPropane第47-49页
    3.4 Analysis and Comparison of[Emim]SCN-DMF-CuSCN and[Bmim]SCN-DMF-CuSCNAbsorption Separation第49-50页
    3.5 Regeneration and Reuse of Ionic Liquids第50-52页
        3.5.1 Determination of the regeneration temperature of ionic liquids第50-52页
    3.6 Summary第52-54页
Chapter 4-Ionic Liquid Sepa ration Absorption of Propylene and PropaneGas Mixture第54-65页
    4.1 Introduction第54页
    4.2 Experimental Apparatus and Chemicals第54-55页
        4.2.1 Experimental Apparatus第54-55页
        4.2.2 Chemicals第55页
    4.3 Principle and Experimental Procedure第55-60页
        4.3.1 Principle第55-58页
        4.3.2 Propylene and Propane Standard Concentration Curve第58-59页
        4.3.3 Experimental Procedure第59-60页
    4.4 Comparison of Absorption and Selectivity of propylene and propane with Different IonicLiquids第60页
    4.5 Separation of Propylene and Propane Gas Mixture by[Bmim]SCN-DMF-CuSCN-2M第60-63页
    4.6 Summary第63-65页
Chapter 5-Conclusion第65-67页
References第67-71页
Acknowledgements第71-72页
Research and published papers第72-73页
Brief Introduction of Author and Supervisor第73-74页
硕士研究生学位论文答辩委员会决议书第74-75页

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