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Environmental and economic assessment of vegetable oil production using membrane separation and vapor recompression 被引量:3

Environmental and economic assessment of vegetable oil production using membrane separation and vapor recompression
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摘要 Solvent extraction of crude oil from oilseeds is widely applied for its high production capacity and low cost. In this process, solvent recovery and tail gas treatment are usually performed by adsorption, paraffin scrubbing, or even cryogenics (at low tail gas flow rates). Membrane separation, which has a lower energy consumption than these techniques, spans a broad range of admissible concentrations and flow rates, and is moreover easily combined with other techniques. Vapor recompression has potentials to reduce the heat loss in association with distillation and evaporation. In this study, we proved the possibility of combining membrane separation and vapor recompression to improve the conventional vegetable oil production, by both experiments and process simulation. Nearly 73% of energy can be saved in the process of vegetable oil extraction by the novel processing approach. By further environmental assessment, several impact categories show that the optimized process is environmentally sustainable. Solvent extraction of crude oil from oilseeds is widely applied for its high production capacity and low cost. In this process, solvent recovery and tail gas treatment are usually performed by adsorption, paraffin scrubbing, or even cryogenics (at low tail gas flow rates). Membrane separation, which has a lower energy consumption than these techniques, spans a broad range of admissible concentrations and flow rates, and is moreover easily combined with other techniques. Vapor recompression has potentials to reduce the heat loss in association with distillation and evaporation. In this study, we proved the possibility of combining membrane separation and vapor recompression to improve the conventional vegetable oil production, by both experiments and process simulation. Nearly 73% of energy can be saved in the process of vegetable oil extraction by the novel processing approach. By further environmental assessment, several impact categories show that the optimized process is environmentally sustainable.
出处 《Frontiers of Chemical Science and Engineering》 SCIE EI CAS CSCD 2017年第2期166-176,共11页 化学科学与工程前沿(英文版)
基金 This work was supported by the National Basic Research Program of China (973 program, Grant Nos. 2013CB733600 and 2012CB72520), the National Natural Science Foundation of China (Grant Nos. 21390202 and 21436002).
关键词 vegetable oil SOLVENT-EXTRACTION membrane separation vapor recompression environmental and economic assessment vegetable oil, solvent-extraction, membrane separation, vapor recompression, environmental and economic assessment
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  • 1瞿国华.炼厂用氢的低成本战略探讨[J].石油化工技术经济,2007,23(2):19-22. 被引量:27
  • 2陈尧焕,李鹏.中国石化加氢裂化装置运行分析[J].炼油技术与工程,2007,37(10):1-4. 被引量:14
  • 3Rubin E S, Mantripragada H, Marks A, Versteeg P, Kitchin J. The outlook for improved carbon capture technology. Progress in Energy and Combustion Science, 2012, 38(5): 630-671.
  • 4Herzog H 1. Peer reviewed: What future for carbon capture and sequestration? Environmental Science & Technology, 2001, 35(7): 148-153.
  • 5Davison J, Thambimuthu K. Technologies for capture of carbon dioxide. In: Proceedings of the Seventh Greenhouse Gas Technology Conference, Vancouver, Canada, International Energy Association (lEA), Greenhouse Gas R&D Progamme. 2004, 3-13.
  • 6Steeneveldt R, Berger B, Torp T. CO2 Capture and storage: Closing the knowing-doing gap. Chemical Engineering Research & Design, 2006,84(9): 739-763.
  • 7Duke M C, Ladewig B, Smart S, Rudolph V, Diniz da Costa J C. Assessment of postcombustion carbon capture technologies for power generation. Frontiers of Chemical Engineering in China, 2009, 4(2): 184-195.
  • 8Oexmann J, Kather A. Minimising the regeneration heat duty of post-combustion CO2 capture by wet chemical absorption: The misguided focus on low heat of absorption solvents. International Journal of Greenhouse Gas Control, 20 10, 4(1): 36-43.
  • 9Favre E. Membrane processes and postcombustion carbon dioxide capture: Challenges and prospects. Chemical Engineering Journal, 2011,171(3): 782-793.
  • 10Granite E J, Penn line H W. Photochemical removal of mercury from flue gas. Industrial & Engineering Chemistry Research, 2002, 41 (22): 5470-5476.

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