2016
DOI: 10.14710/jksa.19.3.107-110
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Pengaruh Buffer Kalium Fosfat dan Natrium Fosfat terhadap Produksi Listrik dalam Sistem Microbial Fuel Cell (MFC) dengan Lactobacillus bulgaricus pada Whey Tahu

Abstract: Microbial Fuel Cell (MFC) adalah sistem bioelektrokimia yang mengubah energi kimia menjadi energi listrik yang melibatkan reaksi reduksi dan oksidasi dengan memanfaatkan mikroba. Tujuan penelitian ini adalah menentukan beda potensial yang dihasilkan sistem MFC pada substrat whey tahu menggunakan mikroba Lactobacillus bulgaricus dengan variasi bahan buffer fosfat dan pH. Penelitian ini menggunakan sistem MFC dual chamber dengan jembatan garam sebagai penghantar proton dari kompartemen anoda ke kompartemen katod… Show more

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Cited by 4 publications
(6 citation statements)
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“…Based on Pramono and Rani's research [12], which used Eschericia coli bacteria in urine fuel cells, the maximum current is 0.149 mA. This study was obtained high current due to the buffer addition at anode chamber which could maintain the environmental pH, also as a source of nutrients by bacteria produced high [9].…”
Section: Fig 3 Molasses Substrate Flow Current Value With a Combinamentioning
confidence: 92%
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“…Based on Pramono and Rani's research [12], which used Eschericia coli bacteria in urine fuel cells, the maximum current is 0.149 mA. This study was obtained high current due to the buffer addition at anode chamber which could maintain the environmental pH, also as a source of nutrients by bacteria produced high [9].…”
Section: Fig 3 Molasses Substrate Flow Current Value With a Combinamentioning
confidence: 92%
“…The First preparation of electrolyte solution was conducted by diluted 31.6 grams of KMnO4 with 1000 mL distilled water and 33 grams of solid K3Fe(CN)6 were dissolved with 1000 mL distilled water [9,6]. The second preparation of microorganism carried out by inserted Isolate Pseudomonas Sp.…”
Section: Preparation Of Electrolyte Solution Microorganism and Saltmentioning
confidence: 99%
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“…Pengembangan sel bahan bakar mikroba masih dalam masa pertumbuhan dengan kebutuhan perbaikan yang cukup sehubungan dengan output daya dan substrat yang mudah dijangkau [4,5]. Senyawa organik di alam dapat berupa senyawa molekul rendah hingga senyawa makromolekul.…”
Section: Pendahuluanunclassified
“…MFC is not only ecologically beneficial, but it is also a highly promising technology that can compete with other technologies in renewable energy generation, as well as the cost of developing reactors and sources of materials that can compete with fossil fuels (Sari and Suyati 2016). According to Palanisamy et al (2019), MFC provides more advantages than traditional fuel cells since it can create electricity from organic waste and renewable…”
Section: Introductionmentioning
confidence: 99%