TY - JOUR
T1 - Modeling of Chemical Oxygen Demand and Total Suspended Solids Removal Using the Fenton Process
AU - Valdiviezo-Gonzales, Lorgio
AU - Justiniano, Valeria D.
AU - Berlanga, Kiara
AU - Molina, julio M.
AU - Cabello Torres, Rita J.
AU - Avila, Fernando García
N1 - Publisher Copyright:
© 2023 Italian Association of Chemical Engineering - AIDIC. All rights reserved.
PY - 2023
Y1 - 2023
N2 - Predictive mathematical models were developed for removing Chemical Oxygen Demand (COD) and Total Suspended Solids (TSS) and optimizing the main operating parameters of the Fenton process, applied to effluents from a fish canning industry. The maximum removals obtained for COD and TSS were 89.2 % and 76.1 %, respectively. The optimum doses for COD removal were: 200 mg/L FeSO4 7H2O and 1,000 mg/L H2O2 at pH 2.5. While for TSS removal the optimum parameters were 1 200 mg/L H2O2, 300 mg/L FeSO4 7H2O, and pH 3. The adjusted R2 values of the COD and TSS removal models were 70.64 % and 98.01 %, respectively, indicating that the models obtained are acceptable in the prediction of both parameters.
AB - Predictive mathematical models were developed for removing Chemical Oxygen Demand (COD) and Total Suspended Solids (TSS) and optimizing the main operating parameters of the Fenton process, applied to effluents from a fish canning industry. The maximum removals obtained for COD and TSS were 89.2 % and 76.1 %, respectively. The optimum doses for COD removal were: 200 mg/L FeSO4 7H2O and 1,000 mg/L H2O2 at pH 2.5. While for TSS removal the optimum parameters were 1 200 mg/L H2O2, 300 mg/L FeSO4 7H2O, and pH 3. The adjusted R2 values of the COD and TSS removal models were 70.64 % and 98.01 %, respectively, indicating that the models obtained are acceptable in the prediction of both parameters.
UR - https://www.scopus.com/pages/publications/85179482735
U2 - 10.3303/CET23102053
DO - 10.3303/CET23102053
M3 - Artículo
AN - SCOPUS:85179482735
SN - 2283-9216
VL - 102
SP - 313
EP - 318
JO - Chemical Engineering Transactions
JF - Chemical Engineering Transactions
ER -