[1] |
Cavani F, Trifirò F. Alternative processes for the production of styrene[J]. Appl. Catal. A: Gen., 1995, 133(2): 219-239
|
[2] |
Zhou Z M, Cheng Z M, Yang D, Zhou X, Yuan W K. Solubility of hydrogen in pyrolysis gasoline[J]. J. Chem. Eng. Data, 2006, 51(3): 972-976
|
[3] |
Zhou Z M, Zeng T Y, Cheng Z M, Yuan W K. Preparation of a catalyst for selective hydrogenation of pyrolysis gasoline[J]. Ind. Eng. Chem. Res., 2010, 49(21): 11112-11118
|
[4] |
Zhou Z M, Zeng T Y, Cheng Z M, Yuan W K. Kinetics of selective hydrogenation of pyrolysis gasoline over an egg-shell catalyst[J]. Chem. Eng. Sci., 2010, 65(5): 1832-1839
|
[5] |
Zhou Z M, Zeng T Y, Cheng Z M, Yuan W K. Diffusion-enhanced hierarchically macro-mesoporous catalyst for selective hydrogenation of pyrolysis gasoline[J]. AIChE J., 2011, 57(8): 2198-2206
|
[6] |
Lee F M, Gentry J C, Wytcherley R W. Recovery of styrene from pyrolysis gasoline by extraction distillation[P]: US, 5849982. 1998-12-15
|
[7] |
Wilhite B A, McCready M J, Varma A. Kinetics of phenylacetylene hydrogenation over Pt/γ-Al2O3 catalyst[J]. Ind. Eng. Chem. Res., 2002, 41(14): 3345-3350
|
[8] |
Yu Tingting(于婷婷), An Xiaodong(安晓冬), Wu Xingsong(吴兴松), Andrei C, Mircea C, Liu Z P, Ding Z Y. Pyrolysis gasoline upgrading by using GT-styrene recovery process[J]. Ethylene Industry(乙烯工业), 2011, 23(2): 26-29
|
[9] |
Arnold H, Döbert F, Gaube J. Selective hydrogenation of hydrocarbons//Ertl G, Knözinger H, Schüth F, Weitkamp J. Handbook of Heterogeneous Catalysis[M]. 2nd ed.Weinheim: Wiley-VCH, 2008: 3266-3284
|
[10] |
Li Shunfen(李顺芬), Zhao Yulong(赵玉龙). Research and progress on the hydrodynamics of trickle-bed reactors[J]. Chemical Engineering (China)(化学工程), 1995, 23(4): 12-20
|
[11] |
Mao Zaisha(毛在砂), Wang Yuefa(王跃发), Chen Jiayong(陈家镛). Flow distribution in trckle beds: state of art and perspective[J]. Chemical Industry and Engineering Progress(化工进展), 1998(3): 5-10
|
[12] |
Xiao Qiong(肖琼), Anter A M, Cheng Zhenmin(程振民), Yuan Weikang(袁渭康). A hydrodynamic model for predicting the characteristic properties under pulsing flow in a trickle bed reactor[J]. Journal of Chemical Engineering of Chinese Universities(高校化学工程学报), 2000, 14(6): 530-534
|
[13] |
Iliuta I, Larachi F, Grandjean B P A. Residence time, mass transfer and back-mixing of the liquid in trickle flow reactors containing porous particles[J]. Chem. Eng. Sci., 1999, 54(18): 4099-4109
|
[14] |
Wang Chengxue(王承学), Guo Ying(郭莹), Sun Ying(孙瑛). Measurement of gas-liquid phase mass transfer coefficients in trickle bed reactor[J]. Journal of Jilin Institute of Chemical Technology(吉林化工学院学报), 2004, 21(1): 20-22
|
[15] |
Lopes R J G, Quinta-Ferreira R M. Numerical studies of catalyst wetting and total organic carbon reaction on environmentally based trickle-bed reactors[J]. Ind. Eng. Chem. Res., 2010, 49(21): 10730-10743
|
[16] |
Rajashekharam M V, Jaganathan R, Chaudhari R V. A trickle-bed reactor model for hydrogenation of 2, 4-dinitrotoluene: experimental verification[J]. Chem. Eng. Sci., 1998, 53(4): 787-805
|
[17] |
Bhaskar M, Valavarasu G, Sairam B, Balaraman K S, Balu K. Three-phase reactor model to simulate the performance of pilot-plant and industrial trickle-bed reactors sustaining hydrotreating reactions[J]. Ind. Eng. Chem. Res., 2004, 43(21): 6654-6669
|
[18] |
Li S Q, Liu J T, Zhu Z Y, Zhu J H, Kuai J. Method for selective hydrogenation of phenylacetylene using composite bed in the presence of styrene[P]: WO, 2010/069145 A1. 2010-06-24
|
[19] |
Toukoniitty E, Wärnå J, Murzin D Yu, Salmi T. Modelling of transient kinetics in catalytic three-phase reactors: enantioselective hydrogenation[J]. Chem. Eng. Sci., 2010, 65(3): 1076-1087
|
[20] |
Petzold L R. A description of DASSL: a differential/algebraic system solver[R]. Report SAND82-8637, Sandia National Laboratories, Albuquerque, NM, 1982
|
[21] |
Brenan K E, Campbell S L, Petzold L R. Numerical Solution of Initial-Value Problems in Differential-Algebraic Equations[M]. New York: North-Holland, 1989
|
[22] |
Froment G F, Bischoff K B, De Wilde J. Chemical Reactor Analysis and Design[M]. 3rd ed. New York: John Wiley & Sons, 2010
|
[23] |
Li Shunfen(李顺芬), Zhao Yulong(赵玉龙). A study on the hydrodynamics of a trickle-bed of small packings[J]. Chemical Reaction Engineering and Technology(化学反应工程与工艺), 1994, 10(2): 169-178
|
[24] |
Gunjal P R, Kashid M N, Ranade V V, Chaudhuri R V. Hydrodynamics of trickle bed reactors: experiments and CFD modeling[J]. Ind. Eng. Chem. Res., 2005, 44(16): 6278-6294
|
[25] |
Mederos F S, Ancheyta J, Chen J W. Review on criteria to ensure ideal behaviors in trickle-bed reactors[J]. Appl. Catal. A: Gen., 2009, 355(1/2): 1-19
|
[26] |
Mary G, Chaouki J, Luck F. Trickle-bed laboratory reactors for kinetic studies[J]. Int. J. Chem. React. Eng., 2009, DOI: 10.2202/ 1542-6580. 1730
|
[27] |
Charpentier J C, Favier M. Some liquid holdup experimental data in trickle-bed reactors for foaming and nonfoaming hydrocarbons[J]. AIChE J., 1975, 21(6): 1213-1218
|
[28] |
Xiao Qiong(肖琼), Anter A M, Cheng Zhenmin(程振民), Yuan Weikang(袁渭康). Experimental investigation of dynamic liquid holdup under pulse flow in trickle-bed reactor[J]. Journal of Chemical Industry and Engineering(China)(化工学报), 2001, 52(4): 327-332
|
[29] |
Aydin B, Larachi F. Trickle bed hydrodynamics and flow regime transition at elevated temperature for a Newtonian and a non-Newtonian liquid[J]. Chem. Eng. Sci., 2005, 60(23): 6687-6701
|
[30] |
Liang Zhirong(梁之荣), Ge Shiying(葛世英), Min Enze (闵恩泽), Li Pansheng(李盘生). Liquid holdup and axial dispersion in trickle bed reactor[J]. Journal of Chemical Industry and Engineering(China)(化工学报), 1989(3):348-353
|
[31] |
Qi Guozhen(齐国祯), Xie Zaiku(谢在库), Zhong Siqing(钟思青), Zhang Chengfang(张成芳), Chen Qingling(陈庆龄). Pressure drop and liquid holdup in trickle bed[J]. Journal of East China University of Science and Technology: Natural Science Edition(华东理工大学学报:自然科学版), 2006, 32(1): 20-23
|
[32] |
Huo Hongmin(霍宏敏), Zhu Yufei(朱豫飞), Wang Gengxin(王更新). Study on liquid distribution in trickle bed reactor[J]. Petroleum Refinery Engineering(炼油设计), 2001, 31(10): 29-32
|
[33] |
Yaws C L. Chemical Properties Handbook[M]. New York: McGraw-Hill, 1999
|
[34] |
Aydin B, Cassanello M C, Larachi F. Influence of temperature on fast-mode cyclic operation hydrodynamics in trickle-bed reactors[J]. Chem. Eng. Sci., 2008, 63(1): 141-152
|
[35] |
Anter A M, Xiao Qiong(肖琼), Cheng Zhenmin(程振民), Yuan Weikang(袁渭康). Liquid holdup measurements in downward flow and upward flow fixed-bed reactors[J]. Journal of Chemical Industry and Engineering(China)(化工学报), 2000, 51(4): 535-539
|
[36] |
Mears D E. The role of axial dispersion in trickle-flow laboratory reactors[J]. Chem. Eng. Sci., 1971, 26(9): 1361-1366
|