Biodiesel from Hydrolyzed Waste Cooking Oil Using a S-ZrO2/SBA-15 Super Acid Catalyst under Sub-Critical Conditions
Due to rapid changes in food habits, a substantial amount of waste fat and used oils are generated each year. Due to strong policies, the disposal of this material into nearby sewers causes ecological and environmental problems in many parts of the world. For efficient management, waste cooking oil,...
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doaj-9be47c52d6e943b299f4f094f29fe7112020-11-25T00:19:09ZengMDPI AGEnergies1996-10732018-01-0111229910.3390/en11020299en11020299Biodiesel from Hydrolyzed Waste Cooking Oil Using a S-ZrO2/SBA-15 Super Acid Catalyst under Sub-Critical ConditionsMuhammad Nobi Hossain0Md Sufi Ullah Siddik Bhuyan1Abul Hasnat Md Ashraful Alam2Yong Chan Seo3Department of Environmental Engineering, Sangji University, 83 Sangjidae-gil, Wonju-si, Gangwon-do 26339, KoreaDepartment of Environmental Engineering, Sangji University, 83 Sangjidae-gil, Wonju-si, Gangwon-do 26339, KoreaDepartment of Environmental Engineering, Sangji University, 83 Sangjidae-gil, Wonju-si, Gangwon-do 26339, KoreaDepartment of Environmental Engineering, Sangji University, 83 Sangjidae-gil, Wonju-si, Gangwon-do 26339, KoreaDue to rapid changes in food habits, a substantial amount of waste fat and used oils are generated each year. Due to strong policies, the disposal of this material into nearby sewers causes ecological and environmental problems in many parts of the world. For efficient management, waste cooking oil, a less expensive, alternative and promising feedstock, can be used as a raw material for producing biofuel. In the present study, we produced a biodiesel from hydrolyzed waste cooking oil with a subcritical methanol process using a synthesized solid super acid catalyst, a sulfated zirconium oxide supported on Santa Barbara Amorphous silica (S-ZrO2/SBA-15). The characterization of the synthesized catalyst was carried out using scanning electron microscopy (SEM), X-ray diffraction (XRD), and the Brunauer-Emmett-Teller (BET) method. The catalytic effect on biodiesel production was examined by varying the parameters: temperatures of 120 to 200 °C, 5–20 min times, oil-to-methanol mole ratios between 1:5 to 1:20, and catalyst loadings of 1–2.5%. The maximum biodiesel yield was 96.383%, obtained under optimum reaction conditions of 140 °C, 10 min, and a 1:10 oil-to-methanol molar ratio with a 2.0% catalyst loading. We successfully reused the catalyst five times without regeneration with a 90% efficiency. The fuel properties were found to be within the limits set by the biodiesel standard.http://www.mdpi.com/1996-1073/11/2/299biodieselheterogeneous acid catalystesterificationwaste cooking oilsubcritical methanol |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Muhammad Nobi Hossain Md Sufi Ullah Siddik Bhuyan Abul Hasnat Md Ashraful Alam Yong Chan Seo |
spellingShingle |
Muhammad Nobi Hossain Md Sufi Ullah Siddik Bhuyan Abul Hasnat Md Ashraful Alam Yong Chan Seo Biodiesel from Hydrolyzed Waste Cooking Oil Using a S-ZrO2/SBA-15 Super Acid Catalyst under Sub-Critical Conditions Energies biodiesel heterogeneous acid catalyst esterification waste cooking oil subcritical methanol |
author_facet |
Muhammad Nobi Hossain Md Sufi Ullah Siddik Bhuyan Abul Hasnat Md Ashraful Alam Yong Chan Seo |
author_sort |
Muhammad Nobi Hossain |
title |
Biodiesel from Hydrolyzed Waste Cooking Oil Using a S-ZrO2/SBA-15 Super Acid Catalyst under Sub-Critical Conditions |
title_short |
Biodiesel from Hydrolyzed Waste Cooking Oil Using a S-ZrO2/SBA-15 Super Acid Catalyst under Sub-Critical Conditions |
title_full |
Biodiesel from Hydrolyzed Waste Cooking Oil Using a S-ZrO2/SBA-15 Super Acid Catalyst under Sub-Critical Conditions |
title_fullStr |
Biodiesel from Hydrolyzed Waste Cooking Oil Using a S-ZrO2/SBA-15 Super Acid Catalyst under Sub-Critical Conditions |
title_full_unstemmed |
Biodiesel from Hydrolyzed Waste Cooking Oil Using a S-ZrO2/SBA-15 Super Acid Catalyst under Sub-Critical Conditions |
title_sort |
biodiesel from hydrolyzed waste cooking oil using a s-zro2/sba-15 super acid catalyst under sub-critical conditions |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2018-01-01 |
description |
Due to rapid changes in food habits, a substantial amount of waste fat and used oils are generated each year. Due to strong policies, the disposal of this material into nearby sewers causes ecological and environmental problems in many parts of the world. For efficient management, waste cooking oil, a less expensive, alternative and promising feedstock, can be used as a raw material for producing biofuel. In the present study, we produced a biodiesel from hydrolyzed waste cooking oil with a subcritical methanol process using a synthesized solid super acid catalyst, a sulfated zirconium oxide supported on Santa Barbara Amorphous silica (S-ZrO2/SBA-15). The characterization of the synthesized catalyst was carried out using scanning electron microscopy (SEM), X-ray diffraction (XRD), and the Brunauer-Emmett-Teller (BET) method. The catalytic effect on biodiesel production was examined by varying the parameters: temperatures of 120 to 200 °C, 5–20 min times, oil-to-methanol mole ratios between 1:5 to 1:20, and catalyst loadings of 1–2.5%. The maximum biodiesel yield was 96.383%, obtained under optimum reaction conditions of 140 °C, 10 min, and a 1:10 oil-to-methanol molar ratio with a 2.0% catalyst loading. We successfully reused the catalyst five times without regeneration with a 90% efficiency. The fuel properties were found to be within the limits set by the biodiesel standard. |
topic |
biodiesel heterogeneous acid catalyst esterification waste cooking oil subcritical methanol |
url |
http://www.mdpi.com/1996-1073/11/2/299 |
work_keys_str_mv |
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