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Biogenic-Mediated Synthesis of the Cs(2)O–MgO/MPC Nanocomposite for Biodiesel Production from Olive Oil

[Image: see text] In this work, a biogenic-mediated approach is successfully used to synthesize a novel heterogeneous Cs(2)O–MgO/MPC basic nanocomposite. For the first time, the established technicality employs pomegranate seed extract that gives a green capping fuel and reducing mediators during an...

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Autores principales: Hassan, Hassan M.A., Alhumaimess, Mosaed S., Alsohaimi, Ibrahim H., Essawy, Amr A., Hussein, Modather F., Alshammari, Hamed M., Aldosari, Obaid F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7643108/
https://www.ncbi.nlm.nih.gov/pubmed/33163764
http://dx.doi.org/10.1021/acsomega.0c02814
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author Hassan, Hassan M.A.
Alhumaimess, Mosaed S.
Alsohaimi, Ibrahim H.
Essawy, Amr A.
Hussein, Modather F.
Alshammari, Hamed M.
Aldosari, Obaid F.
author_facet Hassan, Hassan M.A.
Alhumaimess, Mosaed S.
Alsohaimi, Ibrahim H.
Essawy, Amr A.
Hussein, Modather F.
Alshammari, Hamed M.
Aldosari, Obaid F.
author_sort Hassan, Hassan M.A.
collection PubMed
description [Image: see text] In this work, a biogenic-mediated approach is successfully used to synthesize a novel heterogeneous Cs(2)O–MgO/MPC basic nanocomposite. For the first time, the established technicality employs pomegranate seed extract that gives a green capping fuel and reducing mediators during an aqueous solution combustion process of metal ion precursors. The synthesized nanocomposites were identified by X-ray diffraction, Fourier transform infrared, N(2) isotherms, field emission scanning electron microscopy, and CO(2)-TPD analyses. The transesterification process of olive oil was used to evaluate the catalytic performance. The nanocomposite displayed outstanding catalytic efficiency stemming from the boosting of the reactant and product diffusion. The transesterification activity and the optimization design were assessed by applying the response surface methodology. Based on the experimental tests, the finest experimental conditions with a biodiesel yield of 96.1% are 4 h, 4% catalyst amount, an oil/methanol ratio of 1:15, and a temperature of 65 °C. The predicted optimal conditions based on the statistical model are 6 h contact time, 5.2 % catalyst dose, 65 °C reaction temperature, and 1:15 oil/methanol molar ratio, attaining a biodiesel yield of 95.18%. The catalyst reusability has been performed almost continuously up to four cycles, with no loss of the active constituents. The obtained biodiesel demonstrated characteristics close to those of international standards of biodiesel. Besides, the process employed in this study demonstrated significant potential for further development and commercialization and is cheaper than the refined vegetable oil used in traditional approaches of biodiesel manufacturing.
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spelling pubmed-76431082020-11-06 Biogenic-Mediated Synthesis of the Cs(2)O–MgO/MPC Nanocomposite for Biodiesel Production from Olive Oil Hassan, Hassan M.A. Alhumaimess, Mosaed S. Alsohaimi, Ibrahim H. Essawy, Amr A. Hussein, Modather F. Alshammari, Hamed M. Aldosari, Obaid F. ACS Omega [Image: see text] In this work, a biogenic-mediated approach is successfully used to synthesize a novel heterogeneous Cs(2)O–MgO/MPC basic nanocomposite. For the first time, the established technicality employs pomegranate seed extract that gives a green capping fuel and reducing mediators during an aqueous solution combustion process of metal ion precursors. The synthesized nanocomposites were identified by X-ray diffraction, Fourier transform infrared, N(2) isotherms, field emission scanning electron microscopy, and CO(2)-TPD analyses. The transesterification process of olive oil was used to evaluate the catalytic performance. The nanocomposite displayed outstanding catalytic efficiency stemming from the boosting of the reactant and product diffusion. The transesterification activity and the optimization design were assessed by applying the response surface methodology. Based on the experimental tests, the finest experimental conditions with a biodiesel yield of 96.1% are 4 h, 4% catalyst amount, an oil/methanol ratio of 1:15, and a temperature of 65 °C. The predicted optimal conditions based on the statistical model are 6 h contact time, 5.2 % catalyst dose, 65 °C reaction temperature, and 1:15 oil/methanol molar ratio, attaining a biodiesel yield of 95.18%. The catalyst reusability has been performed almost continuously up to four cycles, with no loss of the active constituents. The obtained biodiesel demonstrated characteristics close to those of international standards of biodiesel. Besides, the process employed in this study demonstrated significant potential for further development and commercialization and is cheaper than the refined vegetable oil used in traditional approaches of biodiesel manufacturing. American Chemical Society 2020-10-21 /pmc/articles/PMC7643108/ /pubmed/33163764 http://dx.doi.org/10.1021/acsomega.0c02814 Text en © 2020 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Hassan, Hassan M.A.
Alhumaimess, Mosaed S.
Alsohaimi, Ibrahim H.
Essawy, Amr A.
Hussein, Modather F.
Alshammari, Hamed M.
Aldosari, Obaid F.
Biogenic-Mediated Synthesis of the Cs(2)O–MgO/MPC Nanocomposite for Biodiesel Production from Olive Oil
title Biogenic-Mediated Synthesis of the Cs(2)O–MgO/MPC Nanocomposite for Biodiesel Production from Olive Oil
title_full Biogenic-Mediated Synthesis of the Cs(2)O–MgO/MPC Nanocomposite for Biodiesel Production from Olive Oil
title_fullStr Biogenic-Mediated Synthesis of the Cs(2)O–MgO/MPC Nanocomposite for Biodiesel Production from Olive Oil
title_full_unstemmed Biogenic-Mediated Synthesis of the Cs(2)O–MgO/MPC Nanocomposite for Biodiesel Production from Olive Oil
title_short Biogenic-Mediated Synthesis of the Cs(2)O–MgO/MPC Nanocomposite for Biodiesel Production from Olive Oil
title_sort biogenic-mediated synthesis of the cs(2)o–mgo/mpc nanocomposite for biodiesel production from olive oil
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7643108/
https://www.ncbi.nlm.nih.gov/pubmed/33163764
http://dx.doi.org/10.1021/acsomega.0c02814
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