Recovery of sulfur aroma compounds using membrane-based solvent extraction

被引:50
|
作者
Pierre, FX [1 ]
Souchon, I [1 ]
Marin, M [1 ]
机构
[1] INRA INA PG, UMR Genie & Microbiol Procedes Alimentaires, F-78850 Thiverval Grignon, France
关键词
membrane contactors; liquid-liquid extraction; sulfur aroma compounds; modeling; pervaporation;
D O I
10.1016/S0376-7388(01)00352-0
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
This work focuses on a non-destructive process for recovering valuable aromatic fractions from the food industry's odorous wastewaters. Non-dispersive solvent extraction of three sulfur aroma compounds, dimethyldisulfide, dimethyltrisulfide and S-methyl thiobutanoate, was carried out from very diluted aqueous solutions representing real effluent. The mass transfer from water to n-hexane was studied using a cross-flow designed hollow fiber membrane contactor. A preliminary study showed high affinity of solutes for n-hexane, with constant partition coefficients at infinite dilution between water and hexane in a 90-560 range. The influence of tube and shell side hydrodynamics on mass transfer was studied, with the aqueous phase on the tube side, and the organic phase on the shell side. The diffusion of solutes from the bulk aqueous phase to the aqueous-organic interface controlled the separation and contributed, under the conditions tested, to more than 97% of the overall mass transfer resistance. A resistance-in-series model overestimated overall mass transfer coefficients. The main explanation is the inaccuracy of the Leveque correlation used at low Reynolds numbers. The choice of a correlation for predicting mass transfers in the solvent phase did not affect the estimation, since the corresponding mass transfer resistance was negligible. Mass transfer fluxes obtained experimentally by membrane-based solvent extraction were greater for the three aroma compounds than those obtained by pervaporation. (C) 2001 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:239 / 253
页数:15
相关论文
共 50 条
  • [21] FRACTIONATION OF CITRUS OILS USING A MEMBRANE-BASED EXTRACTION PROCESS
    BROSE, DJ
    CHIDLAW, MB
    FRIESEN, DT
    LACHAPELLE, ED
    VANEIKEREN, P
    BIOTECHNOLOGY PROGRESS, 1995, 11 (02) : 214 - 220
  • [22] A Membrane-Based Process for the Recovery of Glycyrrhizin and Phenolic Compounds from Licorice Wastewaters
    Conidi, Carmela
    Fuca, Lidia
    Drioli, Enrico
    Cassano, Alfredo
    MOLECULES, 2019, 24 (12):
  • [23] Removal and recovery of deep eutectic solvent with membrane-based methodology: A promising strategy to enhance extraction and purification of Dendrobium officinale flavonoids
    Sui, Minghui
    Feng, Simin
    Yu, Jiahao
    Chen, Bilian
    Li, Zhenhao
    Shao, Ping
    INDUSTRIAL CROPS AND PRODUCTS, 2023, 206
  • [24] Facilitated solvent screening for membrane-based extraction of chiral amines via a priori simulations
    Van Eygen, Gilles
    Marien, Daan
    Vananroye, Anja
    Clasen, Christian
    Van der Bruggen, Bart
    Buekenhoudt, Anita
    Coutinho, Joao A. P.
    Luis, Patricia
    JOURNAL OF MOLECULAR LIQUIDS, 2023, 375
  • [25] Selective Recovery of Zinc over Iron from Spent Pickling Wastes by Different Membrane-based Solvent Extraction Process Configurations
    Laso, J.
    Garcia, V.
    Bringas, E.
    Urtiaga, A. M.
    Ortiz, I.
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2015, 54 (12) : 3218 - 3224
  • [26] Intensification of 2-phenylethanol production using an aerated system assisted by a membrane-based solvent extraction technique
    Cordero-Soto, I. N.
    Castillo-Araiza, C. O.
    Rutiaga-Quinones, O. M.
    Moussa, M.
    Beal, C.
    Gallegos-Infante, A.
    Soto-Cruz, N. O.
    Ochoa-Martinez, L. A.
    Huerta-Ochoa, S.
    REVISTA MEXICANA DE INGENIERIA QUIMICA, 2021, 20 (02): : 739 - 750
  • [27] Membrane-based extraction joined with membrane-based stripping in a circulating arrangement II.: Extraction of organic acids
    Vajda, M
    Sabolová, E
    Schlosser, S
    Mikulová, E
    CHEMICAL PAPERS, 2003, 57 (01) : 3 - 10
  • [28] Extraction of Thiophenic Sulfur Compounds from Model Fuel Using a Water-Based Solvent
    Saha, Biswajit
    Sengupta, Sonali
    ENERGY & FUELS, 2017, 31 (01) : 996 - 1004
  • [29] Liquid-liquid extraction and air stripping in membrane contactor:: application to aroma compounds recovery
    Souchon, I
    Athès, V
    Pierre, FX
    Marin, M
    DESALINATION, 2004, 163 (1-3) : 39 - 46
  • [30] Membrane-based ozonation of organic compounds
    Shanbhag, PV
    Guha, AK
    Sirkar, KK
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1998, 37 (11) : 4388 - 4398