Pervaporative extraction of volatile organic compounds from aqueous systems with use of a tubular transverse flow module.: Part I. Composite membrane study
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- Type
- article
- Published
- 1998-05-27
- Cited by
- 24
- References
- 54
- OpenAlex
- https://openalex.org/W1967551721
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94707345
Keywords
Silicone rubber, Pervaporation, Materials science, Composite material, Toluene
References
- Pervaporative extraction of volatile organic compounds from aqueous systems with use of a tubular transverse flow module.: Part II. Experimental results
- The separation potential of pervaporation : Part 2. Process design and economics
- Dependence of diffusive permeation rates on upstream and downstream pressures : III. Membrane selectivity and implications for separation processes
- Removal of trace organics from water by pervaporation: a technical and economic analysis
- Dependence of diffusive permeation rates on upstream and downstream pressures
- Effect of boundary layer mass transfer resistance in the pervaporation of dilute organics
- A new transport model for pervaporation
- Resistance model approach to asymmetric polyetherimide membranes for pervaporation of isopropanol/water mixtures
- The solution-diffusion model: a review
- The sorption and diffusion of water in silicone rubbers. Part II. Filled rubbers
- Modeling of multicomponent pervaporation for removal of volatile organic compounds from water
- General treatment of liquid-phase boundary layer resistance in the pervaporation of dilute aqueous organics through tubular membranes
- A study on the pervaporation of ethanol/water mixtures on the basis of pore flow model
- Pervaporation: importance of concentration polarization in the extraction of trace organics from water☆
- The separation potential of pervaporation
- Estimation of parameters in a sorption-diffusion model of pervaporation
- LIQUID DIFFUSION OF NON-ELECTROLYTES
- Diffusion of aromatic and cycloparaffin hydrocarbons in water from 2 to 60.deg.
- Composite Hollow Fiber Membranes for Gas Separation: The Resistance Model Approach
- On the prediction of separation factor and permeability in the separation of binary mixtures by pervaporation
Cited by
- Pervaporative extraction of volatile organic compounds from aqueous systems with use of a tubular transverse flow module.: Part II. Experimental results
- Binary, coupled mass transfer with variable diffusivity through cylindrical dense membrane
- Effects of PES support layer structure on pervaporation performances of PDMS/PES hollow fiber composite membranes
- Effects of concentration, temperature, and coupling on pervaporation of dilute flavor organics
- Treatment of highly-concentrated phenol wastewater with an extractive membrane reactor using silicone rubber
- Effects of polydimethylsiloxane (PDMS) molecular weight on performance of PDMS/ceramic composite mem
- Separation of endocrine disruptors from aqueous solutions by pervaporation
- Modeling of volatile organic compounds removal from water by pervaporation process
- Separation of acetone, butanol and ethanol (ABE) from dilute aqueous solutions by silicalite-1/PDMS hybrid pervaporation membranes
- The influence of support layer on mass transport of homologous series of alcohols and esters through composite pervaporation membranes
- Mass transport of aliphatic alcohols and esters through hydrophobic pervaporation membranes
- The influence of support layer structure on mass transfer in pervaporation of composite PDMS–PSF membranes
- Pervaporative performance of a PDMS/blended PES composite membrane for removal of toluene from water
- Modeling of multicomponent mass transfer across polymer films using a thermodynamically consistent formulation of the Maxwell–Stefan equations in terms of volume fractions
- Pilot scale application of the Membrane Aromatic Recovery System (MARS) for recovery of phenol from resin production condensates
- Convective and diffusive mass transport through anisotropic, capillary membrane
- Numerical model of non-isothermal pervaporation in a rectangular channel
- Recent advances in VOCs removal from water by pervaporation.
- Influence of support layer and PDMS coating conditions on composite membrane performance for ethanol/water separation by pervaporation
- Pervaporation Membrane Separation: Fundamentals and Applications
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