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Catalytic pyrolysis of reutealis trisperma oil using raw dolomite for bio-oil production.

Buyang, Yorinda and Suprapto, Suprapto and Nugraha, Reva Edra and Holilah, Holilah and Bahruji, Hasliza and Hantoro, Ridho and Abdul Jalil, Aishah and Oetami, Titie Prapti and Prasetyoko, Didik (2023) Catalytic pyrolysis of reutealis trisperma oil using raw dolomite for bio-oil production. Journal of Analytical and Applied Pyrolysis, 169 (105852). NA-NA. ISSN 0165-2370

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Official URL: http://dx.doi.org/10.1016/j.jaap.2022.105852

Abstract

Conversion of non-edible Reutealis trisperma Oil (RTO) into bio-oil by catalytic pyrolysis was carried out using dolomite as catalysts. Dolomite, a sedimentary carbonate rock mineral, has shown potential as a cheap and eco-friendly catalyst to enhance bio-oil yield by reducing coke formation. Dolomite was directly used in the catalytic pyrolysis of RTO without prior calcination or treatment. Increasing the pyrolysis temperatures from 400 °C to 450 °C, improved bio-oil production from 59.68% to 77.39%, with only 0.11% of carbon char formation. The non-catalytic thermal pyrolysis produced 68.29% liquid bio-oil product and 7.04% carbon char. GC-MS analysis revealed that dolomite also enhanced the composition of heavy hydrocarbon molecules, contributing to a higher flash point and thermal stability of bio-oil. Analysis of the physical properties proved that the use of fresh dolomite decreased the viscosity (3.12 cSt) and increased calorific value (41.61 MJkg−1) and density (0.85 g/cm−3) compared with the bio-oil produced by non-catalytic thermal pyrolysis. Bio-oil quality was further enhanced through esterification reaction that significantly reduced the carboxylic acid content from 55.47% to 3.32%.

Item Type:Article
Uncontrolled Keywords:Bio-oil; Catalytic pyrolysis; Dolomite; Reutealis trisperma.
Subjects:Q Science > QD Chemistry
Divisions:Science
ID Code:106235
Deposited By: Muhamad Idham Sulong
Deposited On:20 Jun 2024 02:14
Last Modified:20 Jun 2024 02:14

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