Huang T C, Chen D H
Department of Chemical Engineering, National Cheng Kung University, Tainan, Taiwan.
J Chem Technol Biotechnol. 1992;55(2):191-9. doi: 10.1002/jctb.280550214.
A five-compartment electrodialyzer with immobilized urease was developed for the removal of urea from aqueous solution. The immobilized urease, supported on polyurethane foam, was placed in the central (dilute) compartment, where urea was hydrolyzed and the products NH4+ and CO3(2-)/HCO3- were removed simultaneously by electrodialysis. The system was studied both under constant current and under constant voltage. The effects of urea concentration and applied current or voltage on the removal of urea and ammonium ions from the dilute solution were investigated. The variations of the pH of dilute solution, the current or voltage of system, and current efficiency were also examined during reaction-electrodialysis. The removal of urea by enzymic reaction was not affected significantly by the applied electric field. The current efficiencies for removing ammonium ions from dilute solution were mostly within 40-80%, and the removal percentage of ammonium ions was dependent on current density and current efficiency.
开发了一种带有固定化脲酶的五室电渗析器,用于从水溶液中去除尿素。负载在聚氨酯泡沫上的固定化脲酶放置在中央(稀溶液)室中,在该室中尿素被水解,水解产物NH4+和CO3(2-)/HCO3-通过电渗析同时被去除。该系统在恒流和恒压条件下均进行了研究。研究了尿素浓度以及施加的电流或电压对从稀溶液中去除尿素和铵离子的影响。在反应-电渗析过程中,还考察了稀溶液pH值、系统电流或电压以及电流效率的变化。施加的电场对通过酶促反应去除尿素的影响不显著。从稀溶液中去除铵离子的电流效率大多在40%-80%范围内,铵离子的去除率取决于电流密度和电流效率。