Synthesis and catalytic properties of calcium oxide obtained from organic ash over a titanium nanocatalyst for biodiesel production from dairy scum
The fatty acid methyl ester (FAME) production from dairy effluent scum as a sustainable energy source using CaO obtained from organic ash over titanium dioxide nanoparticles (TNPs) as the transesterification nano-catalyst has been studied. The physical and chemical properties of the synthesized cata...
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my.utm.1031572023-11-13T04:56:28Z http://eprints.utm.my/103157/ Synthesis and catalytic properties of calcium oxide obtained from organic ash over a titanium nanocatalyst for biodiesel production from dairy scum Walid Nabgan, Walid Nabgan Bahador Nabgan, Bahador Nabgan Muhammad Ikram, Muhammad Ikram Jadhav, Arvind H. Ali, Mohamad Wijayanuddin Ul-Hamid, Anwar Nam, Hyungseok Lakshminarayana, Parashuram Kumar, Ankit Bahari, Mahadi B. Khusnun, Nur Farahain TP Chemical technology The fatty acid methyl ester (FAME) production from dairy effluent scum as a sustainable energy source using CaO obtained from organic ash over titanium dioxide nanoparticles (TNPs) as the transesterification nano-catalyst has been studied. The physical and chemical properties of the synthesized catalysts were characterized, and the effect of different experimental factors on the biodiesel yield was studied. It was revealed that the CaO–TiO2 nano-catalyst displayed bifunctional properties, has both basic and acid phases, and leads to various effects on the catalyst activity in the transesterification process. These bifunctional properties are critical for achieving simultaneous transesterification of dairy scum oil feedstock. According to the reaction results, the catalyst without and with a low ratio of TNPs showed a low catalytic activity. In contrast, the 3Ca–3Ti nano-catalyst had the highest catalytic activity and a strong potential for reusability, producing a maximum biodiesel yield of 97.2% for a 3 wt% catalyst, 1:20 oil to methanol molar ratio for the dairy scum, and a reaction temperature of 70 °C for a period of 120 min under a 300 kPa pressure. The physical properties of the produced biodiesel are within the EN14214 standards. Elsevier Ltd 2022 Article PeerReviewed Walid Nabgan, Walid Nabgan and Bahador Nabgan, Bahador Nabgan and Muhammad Ikram, Muhammad Ikram and Jadhav, Arvind H. and Ali, Mohamad Wijayanuddin and Ul-Hamid, Anwar and Nam, Hyungseok and Lakshminarayana, Parashuram and Kumar, Ankit and Bahari, Mahadi B. and Khusnun, Nur Farahain (2022) Synthesis and catalytic properties of calcium oxide obtained from organic ash over a titanium nanocatalyst for biodiesel production from dairy scum. Chemosphere, 290 (NA). pp. 1-13. ISSN 0045-6535 http://dx.doi.org/10.1016/j.chemosphere.2021.133296 DOI : 10.1016/j.chemosphere.2021.133296 |
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TP Chemical technology Walid Nabgan, Walid Nabgan Bahador Nabgan, Bahador Nabgan Muhammad Ikram, Muhammad Ikram Jadhav, Arvind H. Ali, Mohamad Wijayanuddin Ul-Hamid, Anwar Nam, Hyungseok Lakshminarayana, Parashuram Kumar, Ankit Bahari, Mahadi B. Khusnun, Nur Farahain Synthesis and catalytic properties of calcium oxide obtained from organic ash over a titanium nanocatalyst for biodiesel production from dairy scum |
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The fatty acid methyl ester (FAME) production from dairy effluent scum as a sustainable energy source using CaO obtained from organic ash over titanium dioxide nanoparticles (TNPs) as the transesterification nano-catalyst has been studied. The physical and chemical properties of the synthesized catalysts were characterized, and the effect of different experimental factors on the biodiesel yield was studied. It was revealed that the CaO–TiO2 nano-catalyst displayed bifunctional properties, has both basic and acid phases, and leads to various effects on the catalyst activity in the transesterification process. These bifunctional properties are critical for achieving simultaneous transesterification of dairy scum oil feedstock. According to the reaction results, the catalyst without and with a low ratio of TNPs showed a low catalytic activity. In contrast, the 3Ca–3Ti nano-catalyst had the highest catalytic activity and a strong potential for reusability, producing a maximum biodiesel yield of 97.2% for a 3 wt% catalyst, 1:20 oil to methanol molar ratio for the dairy scum, and a reaction temperature of 70 °C for a period of 120 min under a 300 kPa pressure. The physical properties of the produced biodiesel are within the EN14214 standards. |
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Article |
author |
Walid Nabgan, Walid Nabgan Bahador Nabgan, Bahador Nabgan Muhammad Ikram, Muhammad Ikram Jadhav, Arvind H. Ali, Mohamad Wijayanuddin Ul-Hamid, Anwar Nam, Hyungseok Lakshminarayana, Parashuram Kumar, Ankit Bahari, Mahadi B. Khusnun, Nur Farahain |
author_facet |
Walid Nabgan, Walid Nabgan Bahador Nabgan, Bahador Nabgan Muhammad Ikram, Muhammad Ikram Jadhav, Arvind H. Ali, Mohamad Wijayanuddin Ul-Hamid, Anwar Nam, Hyungseok Lakshminarayana, Parashuram Kumar, Ankit Bahari, Mahadi B. Khusnun, Nur Farahain |
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Walid Nabgan, Walid Nabgan |
title |
Synthesis and catalytic properties of calcium oxide obtained from organic ash over a titanium nanocatalyst for biodiesel production from dairy scum |
title_short |
Synthesis and catalytic properties of calcium oxide obtained from organic ash over a titanium nanocatalyst for biodiesel production from dairy scum |
title_full |
Synthesis and catalytic properties of calcium oxide obtained from organic ash over a titanium nanocatalyst for biodiesel production from dairy scum |
title_fullStr |
Synthesis and catalytic properties of calcium oxide obtained from organic ash over a titanium nanocatalyst for biodiesel production from dairy scum |
title_full_unstemmed |
Synthesis and catalytic properties of calcium oxide obtained from organic ash over a titanium nanocatalyst for biodiesel production from dairy scum |
title_sort |
synthesis and catalytic properties of calcium oxide obtained from organic ash over a titanium nanocatalyst for biodiesel production from dairy scum |
publisher |
Elsevier Ltd |
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2022 |
url |
http://eprints.utm.my/103157/ http://dx.doi.org/10.1016/j.chemosphere.2021.133296 |
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1783876352525467648 |
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13.209306 |