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Article

Towards Sustainability Pathway with Bio-Derived Platinum and Palladium Catalyst for Furfural Hydrogenation—A Novel Greener Approach in Catalysis

by
Babatunde J. Akinbile
,
Leah C. Matsinha
,
Banothile C. E. Makhubela
and
Abayneh A. Ambushe
*
Research Centre for Synthesis and Catalysis, Department of Chemical Sciences, University of Johannesburg, Auckland Park, Johannesburg 2006, South Africa
*
Author to whom correspondence should be addressed.
Minerals 2021, 11(8), 895; https://doi.org/10.3390/min11080895
Submission received: 15 July 2021 / Revised: 5 August 2021 / Accepted: 9 August 2021 / Published: 19 August 2021

Abstract

The use of living plants to recover precious metals with potential catalytic activity is still at the infant stage. In this study, selective hydrogenation of furfural to furfuryl alcohol using novel bio-ore catalysts recovered from the end stage of phytomining process is demonstrated. The phytomining process was carried out in the green house by artificially contaminating cassava (Manihot esculenta) plant with 500 mg/L palladium (Pd) and platinum (Pt) solutions for a period of eight weeks. After harvesting, concentrations of metals as high as 78 ± 0.047 and 1276 ± 0.036 µg/g of Pd and Pt, respectively, were detected in the calcinated root of cassava. The produced bio-ore catalysts; @PdCassCat and @PtCassCat were fully characterized with the following techniques: transmission electron microscopy (TEM), scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM-EDX), powder X-ray diffraction (pXRD), N2-sorption, and UV-visible spectroscopy techniques and directly applied as catalysts for hydrogenation of furfural to furfuryl alcohol. The reaction was conducted under an optimized condition (furfural (10 mmol), triethylamine (Et3N) (10 mmol), formic acid (20 mmol), temperature (160 °C), catalyst amount (40 mg)) realizing a yield of 76.5% and 100% furfuryl alcohol using @PdCassCat and @PtCassCat, respectively. The catalytic activities of the @PdCassCat and @PtCassCat were excellent as well as recyclable up to four and five times, respectively.
Keywords: phytoextraction; platinum group metals; furfural; furfuryl alcohol; bio-ore; hydrogenation; heterogenous catalysts phytoextraction; platinum group metals; furfural; furfuryl alcohol; bio-ore; hydrogenation; heterogenous catalysts

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MDPI and ACS Style

Akinbile, B.J.; Matsinha, L.C.; Makhubela, B.C.E.; Ambushe, A.A. Towards Sustainability Pathway with Bio-Derived Platinum and Palladium Catalyst for Furfural Hydrogenation—A Novel Greener Approach in Catalysis. Minerals 2021, 11, 895. https://doi.org/10.3390/min11080895

AMA Style

Akinbile BJ, Matsinha LC, Makhubela BCE, Ambushe AA. Towards Sustainability Pathway with Bio-Derived Platinum and Palladium Catalyst for Furfural Hydrogenation—A Novel Greener Approach in Catalysis. Minerals. 2021; 11(8):895. https://doi.org/10.3390/min11080895

Chicago/Turabian Style

Akinbile, Babatunde J., Leah C. Matsinha, Banothile C. E. Makhubela, and Abayneh A. Ambushe. 2021. "Towards Sustainability Pathway with Bio-Derived Platinum and Palladium Catalyst for Furfural Hydrogenation—A Novel Greener Approach in Catalysis" Minerals 11, no. 8: 895. https://doi.org/10.3390/min11080895

APA Style

Akinbile, B. J., Matsinha, L. C., Makhubela, B. C. E., & Ambushe, A. A. (2021). Towards Sustainability Pathway with Bio-Derived Platinum and Palladium Catalyst for Furfural Hydrogenation—A Novel Greener Approach in Catalysis. Minerals, 11(8), 895. https://doi.org/10.3390/min11080895

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