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Thin-layer drying kinetics and quality assessment of octopus (Octopus sp.) using mixed and open solar dryers

Author

Listed:
  • Arina Fatharani

    (Department of Agricultural Technology, Faculty of Agriculture, University of Bengkulu, Bengkulu, Indonesia)

  • Yuwana Yuwana

    (Department of Agricultural Technology, Faculty of Agriculture, University of Bengkulu, Bengkulu, Indonesia)

  • Faulina Maissy

    (Department of Agricultural Technology, Faculty of Agriculture, University of Bengkulu, Bengkulu, Indonesia
    Department of Food and Agricultural Product Technology, Andalas University, Padang, Indonesia)

  • Firmansyah Firmansyah

    (Department of Agricultural Technology, Faculty of Agriculture, University of Bengkulu, Bengkulu, Indonesia)

  • Hilda Maya Sintia Dewi

    (Department of Agricultural and Biosystems Engineering, Universitas Gadjah Mada, Yogyakarta, Indonesia)

  • Ulfah Anis

    (Department of Agricultural Technology, Faculty of Agriculture, University of Bengkulu, Bengkulu, Indonesia)

  • Fitri Yuwita

    (Department of Agricultural Technology, Faculty of Agriculture, University of Bengkulu, Bengkulu, Indonesia)

Abstract

Octopus (Octopus sp.) is highly perishable marine species for which efficient drying is essential to extend shelf life in tropical climates. The anatomical heterogeneity of the octopus complicates consistent drying. This study systematically evaluated the performance of a mixed solar dryer (MSD) and open solar drying (OSD) across distinct anatomical regions (head, mantle, and tentacles), with emphasis on drying kinetics and quality attributes. Five thin-layer models were applied to characterize moisture reduction, and product quality was assessed by measuring browning, protein, fat, and ash content. The MSD achieved a 20% higher temperature and 29% lower humidity, resulting in a 74% increase in drying rate relative to OSD. The Hasibuan and Daud model exhibited the highest predictive accuracy (coefficient of determination (R2) = 0.9965; root mean square error (RMSE) = 0.0168; sum of squared errors (SSE) = 0.0058). Significant interaction effects between anatomical region and drying method were observed for browning and ash content (P < 0.05), whereas protein and fat content were primarily influenced by anatomical characteristics. Overall, the MSD produced products with reduced browning and enhanced nutrient retention. These results support the implementation of MSD technology by small-scale processors to improve both drying efficiency and product quality in octopus preservation.

Suggested Citation

  • Arina Fatharani & Yuwana Yuwana & Faulina Maissy & Firmansyah Firmansyah & Hilda Maya Sintia Dewi & Ulfah Anis & Fitri Yuwita, 2026. "Thin-layer drying kinetics and quality assessment of octopus (Octopus sp.) using mixed and open solar dryers," Research in Agricultural Engineering, Czech Academy of Agricultural Sciences, vol. 72(2), pages 81-94.
  • Handle: RePEc:caa:jnlrae:v:72:y:2026:i:2:id:199-2025-rae
    DOI: 10.17221/199/2025-RAE
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    References listed on IDEAS

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    1. Vamvakas, Ioannis & Salamalikis, Vasileios & Kazantzidis, Andreas, 2020. "Evaluation of enhancement events of global horizontal irradiance due to clouds at Patras, South-West Greece," Renewable Energy, Elsevier, vol. 151(C), pages 764-771.
    2. de Andrade, Ricardo Cesar & Tiba, Chigueru, 2016. "Extreme global solar irradiance due to cloud enhancement in northeastern Brazil," Renewable Energy, Elsevier, vol. 86(C), pages 1433-1441.
    3. Piacentini, Rubén D. & Salum, Graciela M. & Fraidenraich, Naum & Tiba, Chigueru, 2011. "Extreme total solar irradiance due to cloud enhancement at sea level of the NE Atlantic coast of Brazil," Renewable Energy, Elsevier, vol. 36(1), pages 409-412.
    4. Deeto, S. & Thepa, S. & Monyakul, V. & Songprakorp, R., 2018. "The experimental new hybrid solar dryer and hot water storage system of thin layer coffee bean dehumidification," Renewable Energy, Elsevier, vol. 115(C), pages 954-968.
    5. Suherman, Suherman & Anggoro, Didi Dwi & Sugiharto, Sugiharto & Asy-Syaqiq, Muhammad Anas, 2025. "Investigation of a mixed-mode solar dryer assisted with an air recycling system and phase change material unit for coffee beans drying: An experimental study," Renewable Energy, Elsevier, vol. 254(C).
    6. Lakshmi, D.V.N. & Muthukumar, P. & Nayak, Prakash Kumar, 2021. "Experimental investigations on active solar dryers integrated with thermal storage for drying of black pepper," Renewable Energy, Elsevier, vol. 167(C), pages 728-739.
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