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毕业论文网 > 任务书 > 机械机电类 > 过程装备与控制工程 > 正文

活性炭天然气吸附存储的理论模型研究任务书

 2020-05-05 08:05  

1. 毕业设计(论文)的内容和要求

1. 文献整理和总结,应主要包括:吸附天然气在研究背景和意义;吸附天然气的主要吸附剂,及各种吸附剂的特点;活性炭吸附甲烷的理论模型;影响活性炭吸附甲烷的关键因素 2. 活性炭吸附甲烷的模型研究:应主要包括Monte Carlo(蒙特卡罗)法的基本原理;巨狭缝正则系蒙特卡罗模拟活性炭吸附甲烷;分析活性炭狭缝孔吸附甲烷的最佳孔径 3. 分析甲烷在活性炭狭缝孔中的吸附等温线

2. 参考文献

[1] 苏伟, et al. "高比表面积活性炭吸附存储天然气性能研究." 化学工程 43.2(2015):20-24. [2] 赵杰瑛. "天然气脱碳系统中活性炭全生命周期管理." 化学工程与装备 11(2017):91-92. [3] 刘学武, et al. "椰壳活性炭低温变压吸附天然气中CO2/CH4实验." 吉首大学学报(自科版) 37.2(2016):43-46. [4] 苏伟. "甲烷、乙烷、丙烷和丁烷在中孔活性炭上的吸附平衡." 化学工业与工程 33.3(2016):50-54. [5] 徐康. 核桃壳基高比表面积活性炭制备及甲烷吸附性能研究. Diss. 2015. [6] Sahoo, Satyabrata , and M. Ramgopal . "Experimental studies on an indigenous coconut shell based activated carbon suitable for natural gas storage." Sādhanā 41.4(2016):459-468. [7] Putra Negara, Dewa Ngakan Ketut , et al. "Development and Application of Bamboo Activated Carbons and their Potency as Adsorbent Material for Adsorbed Natural Gas (ANG); An Overview." Key Engineering Materials 705(2016):5. [8] Yuliusman, et al. "Preparation of activated carbon from waste plastics polyethylene terephthalate as adsorbent in natural gas storage." Materials Science Engineering Conference Series Materials Science and Engineering Conference Series, 2017. [9] Wang, Guodong , et al. "An improved theoretical procedure for the pore-size analysis of activated carbon by gas adsorption." Chinese Journal of Chemical Engineering (2017):S1004954117306857. [10] Alhasan, S , D. S. K. Ting , and R. Carriveau . "review of adsorbed natural gas storage technologies." International Journal of Environmental Studies 73.3(2016):1-14. [11] Beckner, Matthew , and A. Dailly . "A pilot study of activated carbon and metal#8211;organic frameworks for methane storage." Applied Energy 162(2016):506-514. [12] Burchell, and D. T. . "Activated Carbon Fiber and Textiles || Activated carbon fibers for gas storage☆." Activated Carbon Fiber Textiles (2017):305-335. [13] Wu, D. , et al. "CH4 storage in nanoporous activated carbon by molecular simulation." Ciesc Journal (2016). [14] Policicchio, Alfonso , et al. "Activated carbon and metal organic framework as adsorbent for low-pressure methane storage applications: an overview." Journal of Porous Materials (2016). [15] Knight, Ernest , et al. "Analysis of Adsorbed Natural Gas Tank Technology." Aps March Meeting APS March Meeting Abstracts, 2016. [16] Romanos, Jimmy , et al. "Cycling and Regeneration of Adsorbed Natural Gas in Microporous Materials." Energy Fuels (2017):acs.energyfuels.7b03119. [17] Sawant, Sandesh Y. , et al. "Precursor suitability and pilot scale production of super activated carbon for greenhouse gas adsorption and fuel gas storage." Chemical Engineering Journal 315.Complete(2017):415-425. [18] Putra Negara, D N K , et al. "Chemical, strength and microstructure characterization of Balinese bamboos as activated carbon source for adsorbed natural gas application." IOP Conference Series: Materials Science and Engineering 201(2017):012033. [19] Zhu, Z. W. , and Q. R. Zheng . "Methane adsorption on the graphene sheets, activated carbon and carbon black." Applied Thermal Engineering 108(2016):605-613. [20] Palmer, Jeremy C. , et al. "Adsorptive behavior of CO2, CH4 and their mixtures in carbon nanospace: a molecular simulation study." Physical Chemistry Chemical Physics 13.9(2011):3985. [21] Zheng, Q. R. , et al. "Development of composite adsorbents and storage vessels for domestically used adsorbed natural gas." Applied Thermal Engineering 98(2016):778-785. [22] Byamba-Ochir, Narandalai , et al. "High density Mongolian anthracite based porous carbon monoliths for methane storage by adsorption." Applied Energy 190(2017):257-265. [23] Zhu, Z. , Y. Feng , and Q. Zheng . "Methane adsorption on graphene sheets and activated carbon." Ciesc Journal (2015). [24] Herath, H. M. B. M. , and A. A. P. D. Alwis . "Bio-methane adsorption by activated carbon: Understanding the potential via characterization of Sri Lankan activated carbon." Moratuwa Engineering Research Conference IEEE, 2015. [25] Farooq, Muhammad , et al. "Bio-methane from an-aerobic digestion using activated carbon adsorption." Anaerobe 46(2017):33-40. [26] Sriling, P. , A. Wongkoblap , and C. Tangsathitkulchai . "Computer simulation study for methane and hydrogen adsorption on activated carbon based catalyst." Adsorption-journal of the International Adsorption Society 22.4-6(2016):707-715. [27] Mohammad, S. A. , et al. "High-Pressure Adsorption of Pure Gases on Coals and Activated Carbon: Measurements and Modeling." Energy Fuels 26.1(2016):536-548. [28] El-Sharkawy, Ibrahim I. , et al. "Investigation of Natural Gas Storage through Activated Carbon." Journal of Chemical Engineering Data (2015):acs.jced.5b00430. [29] Wang, Shanshan , et al. "Molecular Simulation Study of the Adsorption and Diffusion of a Mixture of CO2/CH4 in Activated Carbon: Effect of Textural Properties and Surface Chemistry." Journal of Chemical Engineering Data 61.12(2016). [30] Biase, Emanuela Di , and L. Sarkisov . "Systematic development of predictive molecular models of high surface area activated carbons for adsorption applications." Carbon 64.9(2013):262-280. [31] Shen, Jingmei , et al. "Effects of textural and surface characteristics of metal-organic frameworks on the methane adsorption for natural gas vehicular application." Microporous and Mesoporous Materials 212(2015):80-90. [32] Policicchio, Alfonso , et al. "Higher methane storage at low pressure and room temperature in new easily scalable large-scale production activated carbon for static and vehicular applications." Fuel 104.2(2013):813-821. [33] Luo, Jingjie , et al. "Influence of structural parameters on methane adsorption over activated carbon: Evaluation by using D#8211;A model." Fuel 123(2014):241-247. [34] Hao, Shixiong , et al. "Effect of the surface oxygen groups on methane adsorption on coals." Applied Surface Science 264.264(2013):433-442. [35] Policicchio, Alfonso , et al. "Higher methane storage at low pressure and room temperature in new easily scalable large-scale production activated carbon for static and vehicular applications." Fuel 104.2(2013):813-821. [36] Feng, Yanyan , et al. "Surface Modification of Bituminous Coal and Its Effects on Methane Adsorption." Chinese Journal of Chemistry 31.8(2013):1102-1108. [37] Li, Yanqiang , et al. "Ultrahigh Gas Storage both at Low and High Pressures in KOH-Activated Carbonized Porous Aromatic Frameworks." Scientific Reports 3.33(2013):2420. [38] Xia, Kaisheng , et al. "Hierarchical porous graphene-based carbons prepared by carbon dioxide activation and their gas adsorption properties." International Journal of Hydrogen Energy 39.21(2014):11047-11054. [39] Sevilla, Marta , et al. "Highly Porous Renewable Carbons for Enhanced Storage of Energy-Related Gases (H2 and CO2) at High Pressures." ACS Sustainable Chemistry Engineering 4.9(2016):4710-4716. [40] Vivovilches, Jose F , et al. "Tailoring the surface chemistry and porosity of activated carbons: Evidence of reorganization and mobility of oxygenated surface groups." Carbon 68.3(2014):520-530. [41] Rahman, Kazi Afzalur , et al. "On thermodynamics of methane carbonaceous materials adsorption." International Journal of Heat Mass Transfer 55.4(2012):565-573. [42] Fotoohi, Fatemeh, et al. "Predicting pure and binary gas adsorption on activated carbon with two-dimensional cubic equations of state (2-D EOSs) and artificial neural network (ANN) method." Physics Chemistry of Liquids 54.3(2016):281-302. [43] Soule, Aaron D. , et al. "Adsorption Modeling with the ESD Equation of State." Langmuir 17.10(2001):2950-2957. [44] Prajapati, Yogendra N , et al. "Aqueous phase adsorption of different sized molecules on activated carbon fibers: Effect of textural properties." Chemosphere 155(2016):62-69. [45] Pan, Hongyan , et al. "Preparation and Characterization of Activated Carbons from Bamboo Sawdust and Its Application for CH4 Selectivity Adsorption from a CH4/N2 System." Energy Fuels 30.12(2016). [46] Yavary, Milad , H. A. Ebrahim , and C. Falamaki . "Competitive Adsorption Equilibrium Isotherms of CO, CO 2, CH 4, and H 2 on Activated Carbon and Zeolite 5A for Hydrogen Purification." Journal of Chemical Engineering Data 61.10(2016). [47] Pan, Hongyan , et al. "Effect of Surface Chemistry and Textural Properties of Activated Carbons for CH , 4 , Selective Adsorption through Low-Concentration Coal Bed Methane." Journal of Chemical Engineering Data (2016):acs.jced.6b00066. [48] Noelia #225;lvarez‐Guti#233;rrez, et al. "Cherry‐stones‐based activated carbons as potential adsorbents for CO 2 /CH 4 separation: effect of the activation parameters." Greenhouse Gases Science Technology 5.6(2016):812-825. [49] Pino, David , and D. Bessieres . "CH4/CO2 Mixture Adsorption on a Characterized Activated Carbon." Journal of Chemical Engineering Data 62.4(2017). [50] Prauchner, Marcos J. , K. Sapag , and Rodr#237;guez-Reinoso, Francisco. "Tailoring biomass-based activated carbon for CH4 storage by combining chemical activation with H3PO4 or ZnCl2 and physical activation with CO2." Carbon (2016):S0008622316307473. [51] Araminiya, Arash , T. E. Rufford , and Z. Zhu . "Activated carbon monoliths with hierarchical pore structure from tar pitch and coal powder for the adsorption of CO2, CH4 and N2." Carbon 103(2016):115-124. [52] Che Othman, Faten Ermala , et al. "Polyacrylonitrile/magnesium oxide-based activated carbon nanofibers with well-developed microporous structure and their adsorption performance for methane." Journal of Industrial and Engineering Chemistry 51(2017):281-287. [53] Shuai, Gao, et al. "The preparation of activated carbon discs from tar pitch and coal powder for adsorption of CO 2, CH 4, and N 2." Microporous Mesoporous Materials 238(2017):19-26. [54] Xiao, G , et al. "Adsorption equilibria and kinetics of CH4 and N2 on commercial zeolites and carbons." Adsorption-journal of the International Adsorption Society 23.1(2017):1-17. [55] Mehrvarz, Elaheh , A. A. Ghoreyshi , and M. Jahanshahi . "Adsorptive separation of CO 2, and CH 4, by the broom sorghum based activated carbon functionalized by diethanolamine." Korean Journal of Chemical Engineering 34.2(2016):1-12. [56] Zhang, Yechun , et al. "Non-isothermal numerical simulations of dual reflux pressure swing adsorption cycles for separating N2 CH4." Chemical Engineering Journal 292(2016):366-381. [57] Kennedy, Dean A. , et al. "Pure and Binary Adsorption Equilibria of Methane and Nitrogen on Activated Carbons, Desiccants, and Zeolites at Different Pressures." Journal of Chemical Engineering Data (2016):acs.jced.6b00245. [58] Li, D. , et al. "Influence of doping nitrogen, sulfur, and phosphorus on activated carbons for gas adsorption of H2, CH4 and CO2." Rsc Advances 6.55(2016):50138-50143. [59] Wang, Guo Dong, J. C. Jiang, and K. Sun. "Application of Modified Density Functional Theory in Pore Size Distribution Model of Activated Carbon." Chemistry Industry of Forest Products (2016).

3. 毕业设计(论文)进程安排

2019年1月1号前:完成毕业论文提纲 2019年1月5号:下达外文翻译任务 2019年1月18号前:完成外文翻译、文献综述和开题报告

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