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      • UT - Faculty of Fisheries and Marine Science
      • UT - Aquatic Product Technology
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      Peningkatan Kinerja Microbial Fuel Cell dari Limbah Cair Perikanan dengan Alat Boost Converter

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      Date
      2024
      Author
      Ramadhan, Rahmat Agung
      Ibrahim, Bustami
      Uju
      Subrata, I Dewa Made
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      Abstract
      Listrik merupakan kebutuhan pokok dalam kehidupan sehari-hari. Energi fosil biasanya digunakan untuk menghasilkan listrik dan energi yang tidak terbarukan, sehingga akan habis apabila tidak ada inovasi yaitu berupa energi terbarukan. Limbah cair perikanan dapat menghasilkan listrik dengan sistem Microbial Fuel Cell (MFC). Akan tetapi, listrik yang dihasilkan relatif kecil. Tujuan penelitian yaitu meningkaatkan tegangan listrik dari limbah pemindangan ikan pada sistem Microbial Fuel Cell menggunakan rangkaian tambahan alat boost converter. Penelitian dilakukan dengan menggunakan 5 sistem MFC yang dirangkai secara seri dan disambungkan ke alat boost converter. Nilai elektrisitas sistem MFC dengan rangkaian alat boost converter yaitu tegangan sebesar 12,13±0,87 V, nilai arus 0,86±0,20 mA, dan nilai daya 10,50±3,11 mW, sedangkan tanpa rangkaian alat boost converter yaitu nilai tegangan sebesar 2,24±0,26 volt, nilai arus 0,17±0,03 mA, dan nilai daya 0,38±0,11 mW. Peningkatan elektrisitas pada sistem MFC menunjukkan bahwa rangkaian alat boost converter berfungsi. Sistem MFC dapat menurunkan nilai BOD, COD, dan TAN.
       
      Electricity is a basic necessity in everyday life. Fossil energy is typically used to generate electricity, and non-renewable energy sources will eventually be depleted without innovation in the form of renewable energy. Liquid waste from fisheries is a commodity that can generate electricity through Microbial Fuel Cell (MFC) systems. However, the electricity generated is relatively small. The research aimed to increase the electrical voltage from fish curing waste in a Microbial Fuel Cell system by using an additional boost converter circuit. The research was conducted using 5 MFC systems connected in series and connected to a boost converter device. The electrical values of the MFC system with the boost converter circuit were a voltage of 12.13±0.87 V, a current of 0.86±0.20 mA, and a power of 10.50±3.11 mW. Meanwhile, without the boost converter circuit, the voltage value was 2.24±0.26 volts, the current was 0.17±0.03 mA, and the power was 0.38±0.11 mW. The increase in electricity in the MFC system indicated that the boost converter circuit functioned properly. The MFC system was able to reduce BOD, COD, and TAN values.
       
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      http://repository.ipb.ac.id/handle/123456789/152204
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      • UT - Aquatic Product Technology [2460]

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      Copyright © 2020 Library of IPB University
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      Indonesia DSpace Group 
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      Universitas Jember Digital Repository