4.5 Article

Drying of Sisal Fiber: A Numerical Analysis by Finite-Volumes

期刊

ENERGIES
卷 14, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/en14092514

关键词

mass; heat; sisal fiber; experimental; simulation

资金

  1. CONSTRUCT-Instituto de I & D em Estruturas e Construcoes - Fundacao para a Ciencia e a Tecnologia (FCT/MCTES) [UIDB/04708/2020, UIDP/04708/2020]
  2. Central Government Investment and Expenditure Program (PIDDAC)
  3. CNPq (Brazilian Research Agency)
  4. CAPES (Brazilian Research Agency)
  5. FINEP (Brazilian Research Agency)
  6. Fundação para a Ciência e a Tecnologia [UIDP/04708/2020, UIDB/04708/2020] Funding Source: FCT

向作者/读者索取更多资源

The study focuses on evaluating the drying of sisal fibers in an oven with mechanical air circulation using a transient and 3D mathematical model, and conducting drying experiments under different conditions. Results show that the moisture content and temperature distribution of sisal fibers are influenced by the temperature and relative humidity of the drying air, with the drying process occurring in a falling rate period.
Vegetable fibers have inspired studies in academia and industry, because of their good characteristics appropriated for many technological applications. Sisal fibers (Agave sisalana variety), when extracted from the leaf, are wet and must be dried to reduce moisture content, minimizing deterioration and degradation for long time. The control of the drying process plays an important role to guarantee maximum quality of the fibers related to mechanical strength and color. In this sense, this research aims to evaluate the drying of sisal fibers in an oven with mechanical air circulation. For this purpose, a transient and 3D mathematical model has been developed to predict moisture removal and heating of a fiber porous bed, and drying experiments were carried out at different drying conditions. The advanced model considers bed porosity, fiber and bed moisture, simultaneous heat and mass transfer, and heat transport due to conduction, convection and evaporation. Simulated drying and heating curves and the hygroscopic equilibrium moisture content of the sisal fibers are presented and compared with the experimental data, and good concordance was obtained. Results of moisture content and temperature distribution within the fiber porous bed are presented and discussed in details. It was observed that the moisture removal and temperature kinetics of the sisal fibers were affected by the temperature and relative humidity of the drying air, being more accentuated at higher temperature and lower relative humidity, and the drying process occurred in a falling rate period.

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