固载型氨基离子液体的制备及CO2吸附性能的研究任务书
2020-06-08 21:15:22
1. 毕业设计(论文)的内容和要求
查阅相关文献与专业书籍了解目前氨基酸离子液体及其固载材料研究现状,了解氨基酸离子液体修饰mof材料课题的相关背景,了解已有成果以及存在的问题,并完成开题报告的相关工作。
在完成实验,撰写论文的过程中,培养学生自主学习和独立思考的能力,了解如何使用相关实验设备和分析仪器,学会正确的实验操作技能,并养成良好的科研习惯。
学会查阅中外文献;要求掌握毕业论文的写作方法,格式规范和写作思路,独立完成毕业论文。
2. 参考文献
1] JW Ma,Z Zhou,F Zhang,CG Fang,YT Wu. Ditetraalkylammonium Amino Acid Ionic Liquids as CO2 Absorbents of High Capacity [J]. Environmental Science Technology, 2011, 45(24):10627-33 [2] Nawshad Muhammad,ZB Man,MA Bustam,MIA Mutalib,CD Wilfred.Synthesis and Thermophysical Properties of Low Viscosity Amino Acid-Based Ionic Liquids [J].Journal of Chemical Engineering Data,2011, 56(7):3157-3162 [3] KS Rao,T Singh,TJ Trivedi,A Kumar.Aggregation Behavior of Amino Acid Ionic Liquid Surfactants in Aqueous Media [J]. Journal of Physical Chemistry B,2011,115(47):13847-53 [4] DGA Smith,K Patkowski. Benchmarking the CO2 Adsorption Energy on Carbon Nanotubes[J]. Journal of Physical Chemistry C, 2015,119(9) [5] C Herrera,R Alcalde,M Atilhan,S Aparicio. Theoretical Study on Amino Acid-Based Ionic Pairs and Their Interaction with Carbon Nanostructures[J]. Journal of Physical Chemistry C, 2014,118(18):9741-9757 [6] PV Kortunov,LS Baugh,M Siskin. Pathways of the Chemical Reaction of Carbon Dioxide with Ionic Liquids and Amines in Ionic Liquid Solution[J]. Energy Fuels, 2015, 29(9):150716170807003 [7] G Garcia,M Atilhan,S Aparicio. Theoretical Study of Renewable Ionic Liquids in the Pure State and with Graphene and Carbon Nanotubes[J]. Journal of Physical Chemistry B, 2015, 119(37):12224-37 [8] W Chen,Y Zhang,L Zhu,J Lan,R Xie. A Concept of Supported Amino Acid Ionic Liquids and Their Application in Metal Scavenging and Heterogeneous Catalysis[J]. Journal of the American Chemical Society, 2007, 129(45):13879 [9] W Huang,X Zhou,Q Xia,J Peng,H Wang. Preparation and Adsorption Performance of GrO@Cu-BTC for Separation of CO2/CH4[J]. Industrial Engineering Chemistry Research, 2014, 53(27):11176-11184 [10] Q Liu,J Shi,S Zheng,M Tao,Y He. Kinetics Studies of CO2 Adsorption/Desorption on Amine-Functionalized Multiwalled Carbon Nanotubes[J]. Industrial Engineering Chemistry Research, 2014, 53(29):11677-11683 [11] F Su,C Lu,SC Kuo,W Zeng. Adsorption of CO2 on Amine-Functionalized Y-Type Zeolites[J]. Energy Fuels, 2010, 24(2):1441-1448 [12] Z Zhang,Z Li,J Li. Computational Study of Adsorption and Separation of CO2, CH4, and N2 by an rht-Type Metal#8211;Organic Framework[J]. Langmuir the Acs Journal of Surfaces Colloids,2012, 28(33):12122-33 [13] R Nayuk,D Zacher,R Schweins,C Wiktor,RA Fischer.Modulated Formation of MOF-5 Nanoparticles#8212;A SANS Analysis[J]. Journal of Physical Chemistry C, 2012, 116(116):6127 [14] 吴阳,张甜甜,宋溪明等. 氨基酸离子液体研究进展 [J]. 渤海大学学报自然科学版, 2008, 29(1):1-7 [15] 吴长增,李公春等. 氨基酸离子液体的制备及其应用[J].化学试剂, 2012, 34(10):933-936 [16] 张慧,孙秀云,袁萍萍,王连军,等. 氨基酸离子液体[ bmim]Gly 的合成探索及表征 [J]. 南京信息工程大学学报,2014(1):63-68 [17]史会兵,彭黔荣,杨敏,潘建文,汪德祥,等. 氨基酸离子液体应用研究进展 [J]. 化工新型材料.2013, 41(7) [18]王祥生,石美霞. 氨基酸离子液体的合成及其应用性能评价 [J]. 污染防治技术,2012(5):11-15 [19] 王渊涛,方诚刚,张锋,吴有庭,耿皎. 氨基酸离子液体-MDEA混合水溶液的CO_2吸收性能 [J]. 化工学报, 2009, 60(11):2781-2786 [20] 蒋军成,张文婷,鲍静,叶龙涛.离子液体对CO_2吸收性能的研究进展 [J]. 安全与环境学报, 2015(2):281-287 [21] 宋琦. 氨基酸离子液体及应用 [J]. 大学化学, 2006, 21(3):33-33 [22] 王薪薪,唐少峰,吕兴梅,周清,李谦.氨基酸季铵离子液体水溶液的密度和黏度 [J]. 中国科学:化学, 2014(6):1050-1057 [23] 张睿,周贝,段晓佳,胡子君,李俊宁. 活性炭表面化学性质对二氧化碳吸附平衡的影响 [J]. 煤炭转化, 2011, 34(4):57-61 [24] 张军,楚超霞,周虎,ZhangJun,ChuChaoxia. 一种新型金属有机骨架化合物[Co_3(Hbdc)_2(bdc)_2]#8226;4DMF#8226;2H_2O的合成、表征与晶体结构 [J]. 江苏科技大学学报(自然科学版), 2014(4):342-345 [25] R Nayuk,D Zacher,R Schweins,C Wiktor,RA Fischer.Modulated Formation of MOF-5 Nanoparticles#8212;A SANS Analysis[J]. Journal of Physical Chemistry C, 2012, 116(116):6127 [26] 杨捷, 沈磊. 新型金属-有机骨架配位聚合物(MOF)的研究进展 [J]. 化学工程师, 2009, 12: 54-63.
3. 毕业设计(论文)进程安排
2017. 1 . 23 ~ 2017 . 3. 10 查阅文献,确定实验方法和实验条件,完成外文文献翻译和开题报告; 2017 .3 . 11 ~ 2017 . 4 .15 利利用课题组已有基础,制备氨基酸离子液体和MOF材料,并将氨基酸离子液体固载到MOF材料上; 2017 . 4 . 16 ~ 2017. 5 . 20 对制备的氨基酸离子液体修饰的MOF材料催化剂进行表征, 2017 . 5.21 ~ 2017 . 6 . 3 对所得的测试结果进行分析,完成毕业设计的相关内容。