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毕业论文网 > 任务书 > 化学化工与生命科学类 > 化学工程与工艺 > 正文

2-甲基呋喃加氢制备2-甲基四氢呋喃任务书

 2020-06-26 19:54:45  

1. 毕业设计(论文)的内容和要求

2-甲基四氢呋喃是一种重要的有机中间体,广泛用于农业、涂料、工业以及电子清洁剂等。

本论文主要研究了催化剂的制备和选择,以及工艺优化:采用浸渍法、共沉淀法、溶胶凝胶法等,制备了不同的催化剂,在反应器中考察催化剂对2-甲基呋喃加氢制备2-甲基四氢呋喃的影响。

并采用多种表征手段讨论不同不同催化剂的物象结构、smsi以及氧化还原性等。

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2. 参考文献

[1] XIU S, SHAHBAZI A. Bio-oil production and upgrading research: A review[J]. Renew Sust Energy Rev, 2012, 16(7): 4406-4414. [2] ZHENG H, ZHU Y, TENG B, BA Z, ZHANG C, XIANG H, LI Y. Towards understanding the reaction pathway in vapour phase hydrogenation of furfural to 2-methylfuran[J]. J Mol Catal A-Chem, 2006, 246#160;(1): 18-23. [3] RAGAN J A, ENDE D J, BRENEK S J, EISENBEIS S A, SINGER R A, TICKNER D L, TEIXEIRA J J, VANDERPLAS B C and WESTONET N. Safe execution of a large-scale ozonolysis:preparation of the bisulfite adduct of 2-hydroxyindan-2-carboxaldehyde and its utility in a reductive amination[J]. Org Process Res Dev, 2003, 7(2): 155-160. [4] YANG J, ZHENG H,ZHU Y, ZHAO G,ZHANG C, TENG B,XIANG H, LI Y. Effects of calcination temperature on performance of Cu-Zn-Al catalyst for synthesizing c-butyrolactone and 2-methylfuran through the coupling of dehydrogenation and hydrogenation[J]. Catal Commun,2004, 5#160;(9): 505-510. [5] YAN K, WU G, LAFLEUR T, JARVIS C. Production, properties and catalytic hydrogenation of furfural to fuel additives and value-added chemicals[J]. Renew Sust Energy Rev, 2014, 38(5): 663-676. [6] NAKAGAWA Y, TAMURA M and TOMISHIGE K. Catalytic reduction of biomass-derived furanic compounds with hydrogen[J]. Acs Catal, 2013, 3#160;(12): 2655#8211;2668. [7] 郭清泉, 陈焕钦. 乙酰丙酸及其衍生物的研究进展[J]. 精细石油化工, 2003, 20(3): 45-48. [8] DENNEY D B, DENNEY D Z and GIGANTINO J J. Cyclodehydration of 1,4-butanediols by pentaethoxyphosphorane[J]. J Org Chem, 1984, 49(15): 2831#8211;2832. [9] BISWAS P, LIN J H, KANG J and GULIANTS V V. Vapor phase hydrogenation of 2-methylfuran over noble and base metal catalysts[J]. Appl Catal A-Gen, 2014, 475(5): 379#8211;385. [10] SITTHISA S, SOOKNOI T, Ma Y, BALBUENA P B, RESASCO D E. Kinetics and mechanism of hydrogenation of furfural on Cu/SiO2 catalysts[J]. J Catal, 2011, 277#160;(1): 1-13. [11] DONG F, ZHU Y, DING G, CUI J, LI X, LI Y. One-step conversion of furfural into 2-methyltetrahydrofuran under mild conditions[J]. Chemsuschem, 2015, 8#160;(9): 1534-1537. [12] 王保伟, 尚玉光, 丁国忠, 王海洋, 王二东, 李振花, 马新宾, 秦绍东, 孙琦. 铈铝复合载体对钼基催化剂耐硫甲烷化催化性能的研究[J]. 燃料学报, 2012, 40(11): 1390-1396. [13] 孙蛟, 任国卿, 黄玉辉, 陈晓蓉, 梅华. 焙烧温度对CuMgAl催化剂催化糠醛气相加氢制糠醇性能的影响[J]. 燃料学报, 2017, 45(1): 43-47. [14] SEPEHRI S, REZAEI M. Preparation of highly active nickel catalysts supported on mesoporous nanocrystalline γ-Al2O3 for methane autothermal reforming[J]. Chem Eng Technol, 2015, 38#160;(9): 1637-1645. [15] BSHISH A, YAAKOB Z, EBSHISH A, ALHASAN F H. Hydrogen production via ethanol steam reforming over Ni/Al2O3 catalysts: Effect of Ni loading[J]. J Energ Resour-Asme, 2014, 136(1): 1-13. [16] ZHAO A, YING W, ZHANG H, MA H, FANG D. Ni-Al2O3 catalysts prepared by solution combustion method for syngas methanation[J]. Catal Commun, 2012, 17(5): 34-38. [17] BASF European Company. One step preparation of 2-mthyltetrahydrofuran from furfural in structured-bed with two catalysts:CN, 101558052A[P]. 2009-11-25. [18] 莫勇, 王贵武, 陈茜文. 超细Cu /Ni催化糠醛加氢合成2-甲基四氢呋喃[J]. 精细化工, 2013, 30(7): 821-824.

3. 毕业设计(论文)进程安排

3月中旬前,查看相关文献,熟悉实验仪器和相关操作 3月底前,完成制备催化剂,并对催化剂进行选择 4月中旬前,完成催化剂的制备过程优化 4月底前,将催化剂进行相应表征,从结构上分析不同催化剂催化性能差异的原因 5月中旬前,完成反应工艺优化 5月底前,完成毕业论文的撰写

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