LAPSE:2023.3215
Published Article
LAPSE:2023.3215
Kinetics and Performance of Biological Activated Carbon Reactor for Advanced Treatment of Textile Dye Wastewater
Yen-Hui Lin, Bing-Han Ho
February 22, 2023
Abstract
The kinetics and performance of a biological activated carbon (BAC) reactor were evaluated to validate the proposed kinetic model. The Freundlich adsorption capacity (Ka) and adsorption intensity constants (n) obtained from the batch experiments were 1.023 ± 0.134 (mg/g) (L/mg)1/n and 2.036 ± 0.785, respectively. The effective diffusivity (Ds) of the substrate within the activated carbon was determined by comparing the adsorption model value with the experimental data to find the best fit value (4.3 × 10−4 cm2/d). The batch tests revealed that the yield coefficient (Y) was 0.18 mg VSS/mg COD. Monod and Haldane kinetics were applied to fit the experimental data and determine the biokinetic constants, such as the maximum specific utilization rate (k), half-saturation constant (K), inhibition constant (Ki), and biomass death rate coefficient (kd). The results revealed that the Haldane kinetics fit the experimental data better than the Monod kinetics. The values of k, KS, Ki, and kd were 3.52 mg COD/mg VSS-d, 71.7 mg COD/L, 81.63 mg COD/L, and 4.9 × 10−3 1/d, respectively. The BAC reactor had a high COD removal efficiency of 94.45% at a steady state. The average influent color was found to be 62 ± 22 ADMI color units, and the color removal efficiency was 73−100% (average 92.3 ± 10.2%). The removal efficiency for ammonium was 73.9 ± 24.4%, while the residual concentration of ammonium in the effluent was 1.91 ± 2.04 mg/L. The effluent quality from the BAC reactor could meet the discharge standard and satisfy the reuse requirements of textile dye wastewater.
Keywords
biological activated carbon reactor, COD, kinetic model, kinetics, textile dye wastewater
Suggested Citation
Lin YH, Ho BH. Kinetics and Performance of Biological Activated Carbon Reactor for Advanced Treatment of Textile Dye Wastewater. (2023). LAPSE:2023.3215
Author Affiliations
Lin YH: Department of Safety, Health and Environmental Engineering, Central Taiwan University of Science and Technology, 666 Buzih Road, Beitun District, Taichung 406053, Taiwan [ORCID]
Ho BH: Department of Safety, Health and Environmental Engineering, Central Taiwan University of Science and Technology, 666 Buzih Road, Beitun District, Taichung 406053, Taiwan
Journal Name
Processes
Volume
10
Issue
1
First Page
129
Year
2022
Publication Date
2022-01-09
ISSN
2227-9717
Version Comments
Original Submission
Other Meta
PII: pr10010129, Publication Type: Journal Article
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LAPSE:2023.3215
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https://doi.org/10.3390/pr10010129
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Feb 22, 2023
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