Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/8434
Title: Heterogeneous nanomagnetic catalyst from Cupriferous mineral processing Gangue for the production of biodiesel
Authors: Ngoie, Wighens I. 
Welz, Pamela J. 
Ikhu-Omoregbe, Daniel 
Oyekola, Oluwaseun 
Keywords: Biodiesel;heterogeneous nano-magnetic catalyst;edible oil wastewater sludge
Issue Date: 2019
Publisher: MDPI
Source: Ngoie, W. I., Welz, P. J., Ikhu-Omoregbe, D. et al. 2019. Heterogeneous nanomagnetic catalyst from Cupriferous mineral processing Gangue for the production of biodiesel. Catalysts 9: 1047. [http://doi.org/10.3390/catal9121047]
Journal: Catalysts 
Abstract: The commercialisation of biodiesel as an alternative energy source is challenged by high production costs. The cost of feedstock, catalyst and separation of the dissolved catalyst (homogeneous catalyst) from the product are the major contributors to the total manufacturing cost of biodiesel. This study investigated the potential of a heterogeneous catalyst produced from mineral processing waste for biodiesel production. Tailings from the concentration of cupriferous minerals served as the starting material for synthesis of the catalyst. The nanomagnetic catalysts were prepared using co-precipitation (CMCO) and sol-gel (CMSG) methods, combined with zero-valent iron nanoparticles (ZVINPs) to form a hydride catalyst (CMSG/ZVINPs). Catalyst properties were assessed using SEM, TEM, BET and EDX. The catalyst activity was enhanced by a large number of basic sites that were afforded by the presence of calcite and magnesite. Good surface areas and particle sizes of 58.9 m2 /g and 15.4 nm, and 52.6 m2 /g and 16.9 nm were observed for the catalysts that were prepared using the CMSG and CMCO methods, respectively. 173 emu/g mass magnetisation was obtained for CMSG/ZVINPs, which was sufficient for the catalyst to be regenerated and reused for biodiesel production by exploiting the magnetic properties. The maximum yield obtained with this catalyst was 88% and an average of 27% decrease in biodiesel yield was observed after four reaction cycles. The physicochemical properties of the biodiesel produced complied with the ASTM standard specification. The results showed that mineral processing tailings are a viable starting material for catalyst preparation in biodiesel production
URI: http://hdl.handle.net/11189/8434
ISSN: 2073-4344
DOI: http://doi.org/10.3390/catal9121047
Appears in Collections:Eng - Journal articles (DHET subsidised)

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