Abstract
The removal of hexavalent chromium has attracted much attention as it is a hazardous contaminant. Electrochemical reduction technology was applied to remove chromium (VI) from wastewater. The mechanisms and parameters that affect the reduction process were investigated. The results showed that the reduction efficiency was significantly affected by the concentration of H 2 SO 4 , current density, and reaction temperature. The reduction efficiency was up to 86.45% at an H 2 SO 4 concentration of 100 g/L, reaction temperature of 70 °C, current density at 50 A/m2, reaction time at 180 min, and stirring rate of 500 rpm. The reduction process of chromium (VI) followed a pseudo-first-order equation, and the reduction rate constant could be expressed as Kobs = k [H 2 SO 4 ] 1 [j] 4 exp -4170/RT .
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Peng, H., Leng, Y., & Guo, J. (2019). Electrochemical removal of chromium (VI) from wastewater. Applied Sciences (Switzerland), 9(6). https://doi.org/10.3390/app9061156
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