Analisa Kinerja Mesin Pengering Buah Pinang Tenaga Hibrid

Authors

  • Sepriyanto Politeknik Jambi
  • Sigit Kurniawan Politeknik Jambi
  • Sepdian Politeknik Jambi

DOI:

https://doi.org/10.37338/inovator.v5i2.158

Keywords:

Mesin pengering, Pinang, Biomassa, Hibrid

Abstract

The purpose of this study was to determine the performance of a hybrid dryer by combining the utilization of solar energy (solar dryer) and biomass power sources. Utilization of solar thermal energy sources by maximizing solar heat radiation sources which are absorbed directly into the drying chamber in the form of a transparent house with ventilation holes for fresh air to enter and moist air to exit. This process will produce hot air circulation (convection) in the drying chamber continuously so that the process of evaporation of water from the material being dried is faster. The temperature of the hybrid dryer with a sun source without the test material was 56º C. In the hybrid dryer test with a biomass combustion power source without the test material, the maximum temperature was 46 º C with a stable temperature of 40 º C. In the hybrid dryer test with a solar power source with the material test with a drying rate for 6 hours of drying there was a reduction in the mass of areca nut by 19%. The performance of the hybrid drying machine is better when the temperature is controlled with a setting temperature of 60º C. The average drying rate of areca nut from the hybrid dryer is 1 kg/hour

References

https://jambi.bps.go.id/indicator/54/516/3/luas-tanaman-perkebunan-menurut-jenis-tanaman-dan-kabupaten-kota.html

Srisang, N., Srisang, S., & Chungcharoen, T. (2018). The study of the drying kinetic and the cutting performance in dried betel nut production machine. MATEC Web of Conferences, 192, 4–7. https://doi.org/10.1051/matecconf/201819203005

Studi, P., Industri, T., Teknik, F., & Tanjungpura, U. (2015). Metode Kansei Engineering Dan Desain Eksperimen Di Desa Sungai Berembang Kabupaten Kuburaya. 1–5

Susilo, B., Hermanto, M. B., Mujahidin, A., Djoyowasito, G., & Damayanti, R. (2020). Performance of Drying Machine with Air Dehumidifying Process for Sweet Corn Seed (Zea mays saccharata). IOP Conference Series: Earth and Environmental Science, 515(1). https://doi.org/10.1088/1755-1315/515/1/012008.

Divekar, S. P. et al. (2017) ‘Development and Evaluation of Waste- Fired Dryer for Arecanut’, I(2), pp. 172–176.

Sinadia, B. S. (2018) THE DESIGN OF FUZZY-EXPERT CONTROL SYSTEM IN HIBRID SOLAR-POWER DRYING INSTRUMENT AND LPG. Universitas Hasanuddin Makassar.

Susanto, E., Syharil and Waspodo, P. (1995) ‘Pengaruh Suhu Pengeringan dan Perlakuan Buah Pinang (ARECA CATECHU L.) Terhadap Jumlah Biji Pinang Utuh’, Journal of Agro based Industry, 12(1), pp. 36–40.

Zoukit, A. et al. (2019) ‘Design of mamdani type fuzzy controller for a hybrid solar- electric dryer : case study of clay drying’, in 2019 6th International Conference on Control, Decision and Information Technologies (CoDIT). Paris: IEEE, pp. 1332–1337.

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Published

2022-11-30

How to Cite

Analisa Kinerja Mesin Pengering Buah Pinang Tenaga Hibrid. (2022). Jurnal INOVATOR, 5(2), 25-28. https://doi.org/10.37338/inovator.v5i2.158