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Mathematical Modeling of Moisture Diffusivity and Mass Transfer During Drying of Coffea arabica L. var. Catimor

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  • Frank Fernandez-Rosillo

    (Grupo de Modelamiento y Simulación de Procesos en la Industria Alimentaria (MOSIPRIA), Instituto de Investigación de Ciencia de Datos (INSCID), Universidad Nacional de Jaén, Cajamarca 06801, Peru)

  • Fredy Velayarce-Vallejos

    (Facultad de Ingeniería Zootecnista, Biotecnología, Agronegocios y Ciencia de Datos, Universidad Nacional Toribio Rodríguez de Mendoza de Amazonas, Chachapoyas 01001, Peru)

  • Luidem Fernández-Rosillo

    (Escuela Profesional de Ingeniería de Industrias Alimentarias, Facultad de Ingeniería, Universidad Nacional de Jaén, Cajamarca 06801, Peru)

  • Nestor A. Sánchez-Goycochea

    (Centro de Apoyo Logístico para Investigadores (CALI), Universidad Tecnológica del Perú, Lambayeque 14000, Peru)

  • Eliana Milagros Cabrejos-Barrios

    (Grupo de Modelamiento y Simulación de Procesos en la Industria Alimentaria (MOSIPRIA), Instituto de Investigación de Ciencia de Datos (INSCID), Universidad Nacional de Jaén, Cajamarca 06801, Peru)

  • Ernesto Hernández-Martínez

    (Grupo de Modelamiento y Simulación de Procesos en la Industria Alimentaria (MOSIPRIA), Instituto de Investigación de Ciencia de Datos (INSCID), Universidad Nacional de Jaén, Cajamarca 06801, Peru)

  • Juan C. Damián-Sandoval

    (Grupo de Modelamiento y Simulación de Procesos en la Industria Alimentaria (MOSIPRIA), Instituto de Investigación de Ciencia de Datos (INSCID), Universidad Nacional de Jaén, Cajamarca 06801, Peru)

  • Segundo G. Chávez

    (Instituto de Investigación para el Desarrollo Sustentable de Ceja de Selva (INDES-CES), Universidad Nacional Toribio Rodríguez de Mendoza de Amazonas, Chachapoyas 01001, Peru)

  • Marvin G. Valle-Epquín

    (Instituto de Investigación, Innovación y Desarrollo para el Sector Agrario y Agroindustrial (IIDAA), Facultad de Ingeniería y Ciencias Agrarias, Universidad Nacional Toribio Rodríguez de Mendoza de Amazonas, Chachapoyas 01001, Peru)

  • César R. Balcázar-Zumaeta

    (Instituto de Investigación, Innovación y Desarrollo para el Sector Agrario y Agroindustrial (IIDAA), Facultad de Ingeniería y Ciencias Agrarias, Universidad Nacional Toribio Rodríguez de Mendoza de Amazonas, Chachapoyas 01001, Peru)

Abstract

Understanding mass transfer mechanisms during coffee drying is essential for optimizing postharvest processing conditions. This study aimed to estimate the effective moisture diffusivity coefficient ( D e f f ) and convective mass transfer coefficient ( h m ) of Coffea arabica L. var. Catimor through mathematical modeling. Drying experiments were conducted in an automated convection dryer (CE 130) at four constant temperatures (40, 50, 60, and 70 °C) and an air velocity of 1.5 m/s. Drying time, equilibrium moisture content ( M e q ), and critical moisture content ( M c ) were determined. A MATLAB based algorithm was developed to solve Fick’s second law and estimate D e f f and h m during coffee drying. An Arrhenius-type model was further applied to describe the temperature dependence of both coefficients. Although the model captured the general increasing trend with temperature, only moderate coefficients of determination were obtained ( R 2 = 0.63 for D e f f and R 2 = 0.74 for h m ). Drying times were 26.5, 17.5, 16.5, and 13.5 h at 40, 50, 60, and 70 °C, respectively. M e q ranged from 11.30% to 11.76% (wet basis), while M c remained close to 46% (wet basis) at all temperatures. D e f f ranged from 0.232 × 10 − 10 to 1.397 × 10 − 10 m 2 / s , whereas h m ranged from 1 . 668 × 10 − 9 to 3.998 × 10 − 9 m / s . Both coefficients increased with temperature, indicating enhanced internal diffusion and external mass transfer. These findings provide useful engineering parameters for modeling, design, and optimization of industrial coffee drying processes.

Suggested Citation

  • Frank Fernandez-Rosillo & Fredy Velayarce-Vallejos & Luidem Fernández-Rosillo & Nestor A. Sánchez-Goycochea & Eliana Milagros Cabrejos-Barrios & Ernesto Hernández-Martínez & Juan C. Damián-Sandoval & , 2026. "Mathematical Modeling of Moisture Diffusivity and Mass Transfer During Drying of Coffea arabica L. var. Catimor," Agriculture, MDPI, vol. 16(13), pages 1-20, June.
  • Handle: RePEc:gam:jagris:v:16:y:2026:i:13:p:1402-:d:1977340
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