EN
Biodiesel production from waste frying oil by electrochemical method using stainless steel electrode
Öz
Biodiesel production from waste frying oil is important in terms of effectively utilizing waste and reducing production costs. It is important that the production method of biodiesel is environmentally friendly, economical, and sustainable. For this purpose, electrochemical transesterification process with stainless steel electrodes instead of rare metal electrodes was preferred in this study for biodiesel production. In this study, where SS304 class AISI 304 stainless steel was used as an electrode, biodiesel was produced from waste frying oil by electrochemical method. An electrolyte was prepared with 8:1 molar ratio of methanol, 2% by weight distilled water, 2% THF, 0.5% NaCl and waste frying oil. The conversion efficiency and fuel properties of biodiesel produced in the electrochemical process lasting 3 hours with a reaction voltage of 20 V were determined. The results were compared with biodiesel produced by conventional methods. According to the results, a conversion efficiency of 68% was achieved in the electrochemical process. Moreover, it has been determined that biodiesel properties are compatible with EN 14214.
Anahtar Kelimeler
Kaynakça
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- Adewale P., Dumont M-J., Ngadi M., “Recent trends of biodiesel production from animal fat wastes and associated production techniques”, Renewable and Sustainable Energy Reviews, 45, 574–588, 2015.
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- Fukuda H, Kondo A, Noda H., “Biodiesel fuel production by transesterification of oils”, J Biosci Bioeng, 92, 405–416, 2001.
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- Fereidooni L., Tahvildari K., Mehrpooya M., “Trans-esterification of waste cooking oil with methanol by electrolysis process using KOH”, Renew Energy, 16:183–193, 2018.
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Ayrıntılar
Birincil Dil
İngilizce
Konular
Otomotiv Mühendisliği (Diğer)
Bölüm
Araştırma Makalesi
Yazarlar
Yayımlanma Tarihi
27 Mart 2024
Gönderilme Tarihi
21 Şubat 2024
Kabul Tarihi
14 Mart 2024
Yayımlandığı Sayı
Yıl 2024 Cilt: 13 Sayı: 1
APA
Balki, M. K. (2024). Biodiesel production from waste frying oil by electrochemical method using stainless steel electrode. International Journal of Automotive Engineering and Technologies, 13(1), 54-62. https://doi.org/10.18245/ijaet.1440793
AMA
1.Balki MK. Biodiesel production from waste frying oil by electrochemical method using stainless steel electrode. International Journal of Automotive Engineering and Technologies. 2024;13(1):54-62. doi:10.18245/ijaet.1440793
Chicago
Balki, Mustafa Kemal. 2024. “Biodiesel production from waste frying oil by electrochemical method using stainless steel electrode”. International Journal of Automotive Engineering and Technologies 13 (1): 54-62. https://doi.org/10.18245/ijaet.1440793.
EndNote
Balki MK (01 Mart 2024) Biodiesel production from waste frying oil by electrochemical method using stainless steel electrode. International Journal of Automotive Engineering and Technologies 13 1 54–62.
IEEE
[1]M. K. Balki, “Biodiesel production from waste frying oil by electrochemical method using stainless steel electrode”, International Journal of Automotive Engineering and Technologies, c. 13, sy 1, ss. 54–62, Mar. 2024, doi: 10.18245/ijaet.1440793.
ISNAD
Balki, Mustafa Kemal. “Biodiesel production from waste frying oil by electrochemical method using stainless steel electrode”. International Journal of Automotive Engineering and Technologies 13/1 (01 Mart 2024): 54-62. https://doi.org/10.18245/ijaet.1440793.
JAMA
1.Balki MK. Biodiesel production from waste frying oil by electrochemical method using stainless steel electrode. International Journal of Automotive Engineering and Technologies. 2024;13:54–62.
MLA
Balki, Mustafa Kemal. “Biodiesel production from waste frying oil by electrochemical method using stainless steel electrode”. International Journal of Automotive Engineering and Technologies, c. 13, sy 1, Mart 2024, ss. 54-62, doi:10.18245/ijaet.1440793.
Vancouver
1.Mustafa Kemal Balki. Biodiesel production from waste frying oil by electrochemical method using stainless steel electrode. International Journal of Automotive Engineering and Technologies. 01 Mart 2024;13(1):54-62. doi:10.18245/ijaet.1440793
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