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June 6, 2026Mathematical and Computational ApplicationsOpen Access

Mathematical Analysis of Non-Steady-State Immobilized Glucose Dehydrogenase Glucose and Oxygen-Driven Reactions in Spherical Microreactors

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Authors

DSDaniel SamuelMMMallikarjuna MohanasundaraganesanSRSenthamarai Rathinam

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Overview

Randomized trial analyzes glucose and oxygen reactions in microreactors, suggesting new optimization tools for catalyst design.

Key Points

  • This analysis aims to derive mathematical models for glucose oxidation reactions in a non-steady-state regime within microreactors.
  • Developed a governing reaction-diffusion model for non-steady-state processes.
  • Utilized Laplace Homotopy Perturbation Method to derive semi-analytical expressions.
  • Validated results against MATLAB simulations.
  • Achieved maximum error in simulations less than 0.009%.
  • Demonstrated that the Thiele modulus significantly impacts internal concentration profiles.
  • Provided analytical tools for optimizing enzyme loading and reactor conditions.

Cite This Study

Samuel et al. (2026) studied this question.

synapsesocial.com/papers/6a23bb2071a5da9775e76bc4https://doi.org/10.3390/mca31030095
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