[1] |
Chen Qingjun (陈庆俊).Exploration of breakthroughs in Lurgi gasification wastewater treatment process[J].Chemical Industry (化学工业), 2012, 2 (1):9-13
|
[2] |
Chen Yun (陈云), Yu Zhenjiang (余振江), Gai Hengjun (盖恒军), Qian Yu (钱宇), et al.A novel chemical process for coal-gasification wastewater treatment[J].Chemical Industry and Engineering Progress (化工进展), 2009, 28 (12):2253-2256
|
[3] |
Guido Busca, Silvia Beratdinelli, Carlo Resini, Laura Arrighi.Technologies for the removal of phenol from fluid streams:a short review of recent developments[R].2008
|
[4] |
Qian Yu (钱宇), Yu Zhenjiang (余振江), Zhou Zhiyuan (周志远), et al. Process retrofit and industrial implementation of phenol and ammonia recovery from coal-gasification wastewater[J].CIESC Journal (化工学报), 2010, 61 (7):1821-1828
|
[5] |
Wang Lianshan (王连山), Zhang Quanling (张泉灵), Liang Chao (梁超).A 38-lumped kinetic model for reforming reaction and its application in continuous catalytic reforming[J].CIESC Journal (化工学报), 2012, 63 (4):1076-1082
|
[6] |
Hou Weifeng (侯卫峰), Su Hongye (苏宏业), Hu Yongyou (胡永有), Chu Jian (褚健).Lumped kinetics model and its on-line application to commercial catalytic naphtha reforming process[J].Journal of Chemical Industry and Engineering (China) (化工学报), 2006, 57 (7):1605-1611
|
[7] |
Li Bochun (李柏春).Simulation and optimization of sour water stripping tower[J].Chemical Engineering (化学工程), 2002, 30 (3):55-57, 77
|
[8] |
Wang Jiabing (王佳兵), Xu Yiming (徐义明).Simulation and optimization of acidic water stripping tower by Aspen Plus[J].Chemical Engineering Design (化工设计), 2012, 22 (1):11-13
|
[9] |
Gebreslassie B H.Life cycle optimization for sustainable design and operations of hydrocarbon biorefinery via fast pyrolysis, hydrotreating and hydrocracking[J].Computers & Chemical Engineering, 2013, 50:71-91
|
[10] |
Tokos H, Pintari Z N, Yang Y.Bi-objective optimization of a water network via benchmarking[J].Journal of Cleaner Production, 2013, 39:168-179
|
[11] |
Young D M, Cabezas H.Designing sustainable processes with simulation:the waste reduction (WAR) algorithm[J].Computers & Chemical Engineering, 1999, 23 (10):1477-1491
|
[12] |
Dinh L T, Guo Y, Mannan M S.Sustainability evaluation of biodiesel production using multicriteria decision-making[J].Environmental Progress & Sustainable Energy, 2009, 28 (1):38-46
|
[13] |
Lim Y.Design and economic analysis of the process for biodiesel fuel production from transesterificated rapeseed oil using supercritical methanol[J].Industrial & Engineering Chemistry Research, 2009, 48 (11):5370-5378
|
[14] |
Mariano-Romero C E, Alcocer-Yamanaka V H, Morales E F.Multi-objective optimization of water-using systems[J].European Journal of Operational Research, 2007, 181 (3):1691-1707
|
[15] |
Ramzan N, Witt W.Multi-objective optimization in distillation unit:a case study[J].The Canadian Journal of Chemical Engineering, 2006, 84 (5):604-613
|
[16] |
Warren D S, Seader J D, Lewin D R.Process Design Principles:Synthesis, Analysis, and Evaluation[M].New York:John Wiley & Sons Inc, 1999
|
[17] |
Montazer-Rahmati M M, Binaee R.Multi-objective optimization of an industrial hydrogen plant consisting of a CO2 absorber using DGA and a methanator[J].Computers & Chemical Engineering, 2010, 34 (11):1813-1821
|
[18] |
Wu W, Liou Y C, Zhou Y Y.Multiobjective optimization of a hydrogen production system with low CO2 emissions[J].Industrial & Engineering Chemistry Research, 2012, 51 (6):2644-2651
|