Nothing Special   »   [go: up one dir, main page]

Huang et al., 1986 - Google Patents

Recovery of sulfuric acid with multicompartment electrodialysis

Huang et al., 1986

Document ID
2511120374969659234
Author
Huang T
Juang R
Publication year
Publication venue
Industrial & Engineering Chemistry Process Design and Development

External Links

Snippet

The theoretical expression for the mass transfer of a 1-2 electrolyte in an electrodialysis cell was derived from the Nernst-Planck equation as (/u)= 5.547 (ReScde/i.) 1/3, with the assumption that the rate-determining step is the ionic diffusion in the concentration boundary …
Continue reading at pubs.acs.org (other versions)

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D61/00Processes of separation using semi-permeable membranes, e.g. dialysis, osmosis, ultrafiltration; Apparatus, accessories or auxiliary operations specially adapted therefor
    • B01D61/42Electrodialysis; Electro-osmosis Electro-ultrafiltration
    • B01D61/44Ion-selective electrodialysis
    • B01D61/46Apparatus therefor
    • B01D61/50Stacks of the plate-and-frame type

Similar Documents

Publication Publication Date Title
Onuki et al. Electro-electrodialysis of hydriodic acid in the presence of iodine at elevated temperature
Cassady et al. Specific ion effects on the permselectivity of sulfonated poly (ether sulfone) cation exchange membranes
Elattar et al. Comparison of transport properties of monovalent anions through anion-exchange membranes
Lee et al. Determination of the limiting current density in electrodialysis desalination as an empirical function of linear velocity
Saracco Transport properties of monovalent-ion-permselective membranes
EP3626341B1 (en) Anion exchange membranes and process for making
JP3095441B2 (en) Electrolytic cell and method of operating the same
Huang et al. Recovery of sulfuric acid with multicompartment electrodialysis
EP4029594A1 (en) Electrochemical device with efficient ion exchange membranes
US20170240439A1 (en) Ion Exchange Membranes And Methods Of Making The Same
Frenzel et al. Chromic acid recovery by electro-electrodialysis: I. Evaluation of anion-exchange membrane
US3402115A (en) Preparation of quaternary ammonium hydroxides by electrodialysis
Graillon et al. Development of electrodialysis with bipolar membrane for the treatment of concentrated nitrate effluents
Ravikumar et al. Development of an electrodialysis–distillation integrated process for separation of hazardous sodium azide to recover valuable DMSO solvent from pharmaceutical effluent
Majewska-Nowak Treatment of organic dye solutions by electrodialysis
Alhéritière et al. Metathesis of magnesium and sodium salt systems by electrodialysis
US3752749A (en) Electrodialytic removal of acid from aqueous effluent
Ersoz et al. Cobalt (II) and nickel (II) transfer through charged polysulfonated cation exchange membranes
Meng et al. A new method to determine the optimal operating current (Ilim') in the electrodialysis process
Gubari et al. Characteristics of the MK-40 and MA-40 Membranes for Industrial Wastewater Treatment–A Review
Farrell et al. Exploring the potential of electrodialysis
Boniardi et al. Lactic acid production by electrodialysis Part II: Modelling
Min et al. Influence of linear flow velocity and ion concentration on limiting current density during electrodialysis
Laktionov et al. Method of electrodialysis stack testing with the feed solution concentration regulation
GB2403166A (en) Electrodeionisation process