Catalytic urea electrooxidation on nickel‐metal hydroxide foams for use in a simplified dialysis device

Author:

Pyka Anthony1ORCID,Bergsman David S.1ORCID,Stuve Eric M.1ORCID

Affiliation:

1. Department of Chemical Engineering University of Washington Seattle Washington USA

Abstract

AbstractElectrocatalytic urea removal is a promising technology for artificial kidney dialysis and wastewater treatment. Urea electrooxidation was studied on nickel electrocatalysts modified with Cr, Mo, Mn, and Fe. Mass transfer limits were observed for urea oxidation at physiological concentrations (10 mmol L). Urea oxidation kinetics were explored at higher concentrations (200 mmol L), showing improved performance, but with lower currents per active site. A simplified dialysis model was developed to examine the relationship of mass transfer coefficients and extent of reaction on flowrate, composition, and pH of the reacting stream. For a nickel hydroxide catalyst operating at 1.45 V, 37 , and pH 7.1, the model shows a minimum geometric electrode area of 1314 cm2 is needed to remove 3.75 g urea h with a flow rate of 200 mL min for continuous operation.

Funder

National Science Foundation of Sri Lanka

Division of Chemical, Bioengineering, Environmental, and Transport Systems

Publisher

Wiley

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