2022
DOI: 10.1021/acs.iecr.1c04556
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A Green and Economical Method for Preparing Potassium Glutamate through Electrodialysis Metathesis

Abstract: Potassium glutamate has a very high value due to its excellent medical effects. An electrodialysis metathesis (EDM) method was developed to prepare high-value potassium glutamate from low-cost sodium glutamate. The effects of initial sodium glutamine and potassium sulfate concentrations and operating voltage on the performance of EDM were studied. The results show that the higher initial sodium glutamate concentration can increase the production capacity, but the energy consumption becomes higher, and the curr… Show more

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Cited by 10 publications
(4 citation statements)
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“…Indeed, the operating voltage plays a pivotal role in the electrodialysis metathesis process, as it directly impacts energy consumption and current efficiency within the membrane stack. , Consequently, choosing an appropriate operating voltage is of utmost significance to optimize the performance of electrodialysis metathesis. In this experiment, where the initial KI concentration was set at 0.2 mol/L and the initial Li 2 SO 4 concentration was set at 0.1 mol/L, the investigation was specifically focused on understanding the influence of the operating voltage on the preparation process.…”
Section: Resultsmentioning
confidence: 99%
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“…Indeed, the operating voltage plays a pivotal role in the electrodialysis metathesis process, as it directly impacts energy consumption and current efficiency within the membrane stack. , Consequently, choosing an appropriate operating voltage is of utmost significance to optimize the performance of electrodialysis metathesis. In this experiment, where the initial KI concentration was set at 0.2 mol/L and the initial Li 2 SO 4 concentration was set at 0.1 mol/L, the investigation was specifically focused on understanding the influence of the operating voltage on the preparation process.…”
Section: Resultsmentioning
confidence: 99%
“…Energy consumption (kWh/kg·LiI) was calculated according to eq : E = 0 t U I normald t C t V t M where C t is the molar concentration of LiI in product chamber 1 at time t , mol/L; V t is the volume of product chamber 1 at time t , L; M is the molar mass of LiI, g/mol; U and I are the membrane stack voltage and current, V and A , respectively.…”
Section: Methodsmentioning
confidence: 99%
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“…The ion exchange membrane is a type of membrane-like ion exchange resin [12,13], which can be categorized into a cation exchange membrane, anion exchange membrane, and special ion exchange membrane. Its main characteristic is the selective permeation of specific ions, and the underlying principle can be explained by theories such as Donnan equilibrium [14][15][16][17].…”
Section: Introductionmentioning
confidence: 99%