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Kinetic model aided reactor design for p

Yimin Wu, Keith E Taylor

2026enreactor designkinetic modelingenzyme catalysisphenol removalwastewater treatmentpolyethylene glycol

Abstract

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This study investigates the application of a kinetic model for the reactor design specifically aimed at the peroxidase-catalyzed removal of phenol in the presence of polyethylene glycol. The main objective is to enhance the efficiency and effectiveness of the removal process through systematic modeling of the kinetic behavior. A combination of experimental work and computational modeling was employed, allowing for a detailed analysis of reaction kinetics and reactor performance. The methodology consisted of varying concentrations of phenol and polyethylene glycol while assessing the peroxidase activity under controlled conditions. The results demonstrate significant reductions in phenol concentration, confirming the feasibility of using polyethylene glycol as a beneficial co-substrate in the reaction system. Optimal conditions were established based on the kinetic parameters derived from the model, leading to improved reaction rates and conversion efficiencies. Overall, the findings illustrate the potential of integrating kinetic modeling in reactor design and operation, particularly for environmental applications aimed at the bioremediation of phenolic compounds. The insights gained contribute to the broader field of enzymatic treatment methods for wastewater management.

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Cite This Work

@article{aecc1c63-ada8-41a8-b29b-fd98531783a3,
  title={Kinetic model aided reactor design for p},
  author={Yimin Wu and Keith E Taylor},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Kinetic model aided reactor design for p
AU  - Yimin Wu
AU  - Keith E Taylor
PY  - 2026
LA  - en
ER  -

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