PEMBUATAN DAN KARAKTERISASI ELEKTRODA KARBON AKTIF DARI BIOMASSA PELEPAH AREN DENGAN PERSENTASE KOH
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1. Jasa, L. (2010). Mengatasi krisis energi dengan memanfaatkan aliran pangkung sebagai sumber pembangkit listrik alternatif. Majalah Ilmiah Teknologi Elektro.
2. Hetharia, M. & Lewerissa, Y. J. (2018). Analisis energi pada perencanaan pembangkit listrik tenaga uap (PLTU) dengan cycle tempo. Jurnal Voering, 3(1).
3. Iswanto, A. H. (2009). Aren (Arenga Pinnata). Diakses Pada 27 Juli 2020, URL: http://Repository.Usu.Ac.Id/Bitstream/Handle/123456789/849/08e00917.Pdf?Sequence=1&Isallowed=Y.
4. Sahari, J., Sapuan, S. M., Ismarrubie, Z. N., & Rahman, M. Z. A. (2012). physical and chemical properties of different morphological parts of sugar palm fibres. Fibres & Textiles In Eastern Europe, 2(91), 21–24.
5. Wijaya, U. (2007). synthesis of mesoporous carbons derived from hypercrosslinking of divinylbenzene–4-vinylbenzyl chloride resin. Iptek The Journal For Technology And Science, 18(4).
6. Park, B. H., Kim, Y. J., Park, J. S., & Choi, J. (2011). Capacitive deionization using a carbon electrode prepared with water-soluble poly (vinyl alcohol) binder. Journal Of Industrial And Engineering Chemistry, 17(4), 717–722.
7. Putri, M. S. D., Awitdrus, A., & Manullang, R. K. (2020). Penyerapan logam berat Pb dan Cu menggunakan karbon aktif berbasis mahkota nanas dengan variasi konsentrasi kalium hidroksida. Komunikasi Fisika Indonesia, 17(1), 30–34.
8. Kartikasari, N., Farma, R., & Awitdrus, A. (2018). pengaruh aktivasi kimia dengan bantuan iradiasi gelombang mikro terhadap sifat fisis karbon aktif dari sekam padi sebagai adsorben. Komunikasi Fisika Indonesia, 15(1), 71–76.
9. Saktioto, R. F. S., Soerbakti, Y., Saputra, A., Syasudhuha, H. H., & Anita, S. (2020). Characteristic of electrical power dissipation of oil palm fruits during storage time. Journal of Southwest Jiaotong University, 55(6).
10. Giancoli, D. C. (2005). Physics : Principles With Applications Sixth Edition. United States: Pearson Education Inc.
11. Nabais, J. V., Teixeira, J. G., & Almeida, I. (2011). Development of easy made low cost bindless monolithic electrodes from biomass with controlled properties to be used as electrochemical capacitors. Bioresource Technology, 102(3), 2781–2787.
12. Kumar, K., Saxena, R. K., Kothari, R., Suri, D. K., & Kaushik, N. K. (1997). Correlation between adsorption and X-ray diffraction studies on viscose rayon based activated carbon cloth. Carbon (New York, Ny), 35(12), 1842–1844.
13. Saadatkhah, N., Carillo Garcia, A., Ackermann, S., Leclerc, P., Latifi, M., Samih, S., Patience, G. S., & Chaouki, J. (2020). Experimental methods in chemical engineering: thermogravimetric analysis—TGA. The Canadian Journal Of Chemical Engineering, 98(1), 34–43.
14. Bunaciu, A. A., Udriştioiu, E. G., & Aboul-Enein, H. Y. (2015). X-ray diffraction: Instrumentation and applications. Critical Reviews In Analytical Chemistry, 45(4), 289–299.
15. Hidayat, T., Dewi, R., & Hamzah, Y. (2021). Effect of holding time on optical structure properties of Ba(Zr0.5Ti0.5)O3 thin film using sol-gel method. Science, Technology & Communication Journal, 1(2), 59–66.
16. Saputrina, T. T., Iwantono, I., Awitdrus, A., & Umar, A. A. (2020). Performances of dye-sensitized solar cell (DSSC) with working electrode of aluminum-doped ZnO nanorods. Science, Technology & Communication Journal, 1(1), 1–7.
DOI: http://dx.doi.org/10.31258/jkfi.18.1.75-80
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