The 8th International Conference of the Indonesian Chemical Society (Icics) 2019 2020
DOI: 10.1063/5.0001078
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The separation of phenolic compounds from bio-oil produced from pyrolysis of corncobs

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Cited by 9 publications
(5 citation statements)
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“…This study is in accordance with the study by Gresinta et al [38] and a comparative review by Dolah et al [39] where the highest component of bio-oil in OPEFB is phenol compounds. Meanwhile, high levels of phenol in bio-oil will affect the high viscosity and acid number which will cause corrosion, decrease the degree of acidity (pH) and reduce the heating value of bio-oil [40][41][42]. So it can be concluded that the low phenol content from the results of this study indicates that the research results are better than previous studies.…”
Section: Effect Of Zeolite Catalyst On Pyrolysis Productsmentioning
confidence: 57%
“…This study is in accordance with the study by Gresinta et al [38] and a comparative review by Dolah et al [39] where the highest component of bio-oil in OPEFB is phenol compounds. Meanwhile, high levels of phenol in bio-oil will affect the high viscosity and acid number which will cause corrosion, decrease the degree of acidity (pH) and reduce the heating value of bio-oil [40][41][42]. So it can be concluded that the low phenol content from the results of this study indicates that the research results are better than previous studies.…”
Section: Effect Of Zeolite Catalyst On Pyrolysis Productsmentioning
confidence: 57%
“…The high volatile matter content indicates a strong potential for liquid oil production during thermochemical conversion, while the slightly higher ash content compared to other coconut fibers suggests a potential reduction in bio-oil yield due to sludge formation [20]. The high carbon content and heating value underscore the suitability of coconut fiber for both biochar and bio-oil production via thermochemical conversion routes [21].…”
Section: Proximate Analysis Of the Coconut Fibermentioning
confidence: 99%
“…Proses hidrolisis ini dilakukan pada suhu 180 0 C dan menggunakan media pemanas steam. Konversi glukosa yang terbentuk sebesar 76% [4]. Lignin (padatan) dan glukosa (cairan) selanjutnya dipisahkan menggunakan filter press.…”
Section: Gambar 4 Diagram Blok Proses Hidrolisis Hemiselulosaunclassified
“…Lignin (padatan) dan glukosa (cairan) selanjutnya dipisahkan menggunakan filter press. Cake yang keluar menuju ke rotary dryer untuk mengurangi kadar air dari padatan lignin hingga 13,2% padatan kering [4].…”
Section: Gambar 4 Diagram Blok Proses Hidrolisis Hemiselulosaunclassified
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