Sundaryono, Agus and M., Lutfi Firdaus and Dewi, Handayani (2017) SYNTHESIS OF METHYL ESTER FROM POME ASSISTED BY ULTRASONIC IRRADIATION AND CRACKING USING ZEOLITE CATALYST. In: 3rd International Seminar on Science Education, 28th October 2017, Yogyakarta State University.
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Text (3rd International Seminar on Science Education)
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Abstract
The purpose of this research is to convert the Palm Oil Mill Effluent (POME) into biofuel to find alternative energy as a substitute for petroleum-based energy supply. This study began with the synthesis of methyl esters, the synthesis of methyl ester was carried out in two stages of reaction: esterification with the aid of ultrasonic irradiation using acid catalyst and transesterification reaction with base catalyst. The result of the synthesis then cracked by heating at a temperature of 380 °C for 2 hours using natural zeolite catalysts that have impregnated by active metals, i.e. Cr/HZa and Ni/HZa catalysts. The Ni/HZa catalyst produced 2.4% hydrocarbons, equivalent oil gas, 14.1% short-chain methyl ester and 83.2% long-chain methyl ester. The Cr/HZa catalyst was able to crack methyl esters to produce hydrocarbons of 5.4%, equivalent oil gas, 15.19% short-chain methyl ester and long-chain methyl ester of 79.4%. Characteristics of biofuel that was resulted from catalytic cracking of methyl ester using Ni/HZa catalyst: density 0,799 g /mL, kinematic viscosity 1,391 cSt, fog point 1,67 °C, pour point 0°C, acid number 1,86 mg KOH/g oil and water content 0,932 %. Characteristics of biofuel resulted from catalytic cracking of methyl ester using Cr/HZa catalyst: density 0,795 g / mL, kinematic viscosity 1,322 cSt, fog point 1°C, pour point 0°C, acid number 1,68 mg KOH/g oil and water content 2,102%.
Item Type: | Conference or Workshop Item (Paper) |
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Subjects: | L Education > L Education (General) |
Divisions: | Faculty of Education > Journal |
Depositing User: | UPT Perpustakaan Universitas Bengkulu |
Date Deposited: | 26 May 2023 02:18 |
Last Modified: | 26 May 2023 02:18 |
URI: | http://repository.unib.ac.id/id/eprint/12013 |
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