TY - JOUR
T1 - Study on mathematical model of peroxide synthesis in intermittent circulating electrochemical reactor
AU - Xu, Fuyuan
AU - Wang, Feng
AU - Zhu, Shemin
AU - Chen, Yingwen
AU - Song, Tianshun
AU - Shen, Shubao
PY - 2009/6
Y1 - 2009/6
N2 - Peroxide synthesis in intermittent circulating electrochemical reactor (ICER) with a novel gas diffusion electrode was studied in this paper. Based on coulomb's law and material conservation law, a mathematical model of H2O2 concentrations related to current, electrolysis time, electrolyte residence time and electrolyte volume was developed, and the model parameters were estimated by fitting all experimental data. The model was proved to be quite reliable by significance test, residual distribution and experimental verification. The results predicted by our model were greatly consistent with the experimental results. Furthermore, influences of different factors on peroxide synthesis could be clearly observed by the model: The inlet and outlet H2O2 concentrations of ICER increased linearly with increasing current and electrolysis time. Higher current value would lead to some secondary reactions and reduce the current efficiencies, which caused a deviation H2O2 concentration from the line. With increasing electrolyte flow rate, the inlet and outlet H2O2 concentration increased and decreased, respectively.
AB - Peroxide synthesis in intermittent circulating electrochemical reactor (ICER) with a novel gas diffusion electrode was studied in this paper. Based on coulomb's law and material conservation law, a mathematical model of H2O2 concentrations related to current, electrolysis time, electrolyte residence time and electrolyte volume was developed, and the model parameters were estimated by fitting all experimental data. The model was proved to be quite reliable by significance test, residual distribution and experimental verification. The results predicted by our model were greatly consistent with the experimental results. Furthermore, influences of different factors on peroxide synthesis could be clearly observed by the model: The inlet and outlet H2O2 concentrations of ICER increased linearly with increasing current and electrolysis time. Higher current value would lead to some secondary reactions and reduce the current efficiencies, which caused a deviation H2O2 concentration from the line. With increasing electrolyte flow rate, the inlet and outlet H2O2 concentration increased and decreased, respectively.
KW - Gas diffusion electrode
KW - ICER
KW - Mathematical model
KW - Peroxide
UR - http://www.scopus.com/inward/record.url?scp=67650245290&partnerID=8YFLogxK
U2 - 10.3969./j.issn.1005-0930.2009.03.020
DO - 10.3969./j.issn.1005-0930.2009.03.020
M3 - 文章
AN - SCOPUS:67650245290
SN - 1005-0930
VL - 17
SP - 485
EP - 492
JO - Yingyong Jichu yu Gongcheng Kexue Xuebao/Journal of Basic Science and Engineering
JF - Yingyong Jichu yu Gongcheng Kexue Xuebao/Journal of Basic Science and Engineering
IS - 3
ER -