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Sustainability Study on Heavy Metal Uptake in Neem Biodiesel Using Selective Catalytic Preparation and Hyphenated Mass Spectrometry

Author

Listed:
  • Mirella Elkadi

    (Department of Chemistry, The Petroleum Institute, P.O. Box 2533 Abu Dhabi, UAE)

  • Avin Pillay

    (Department of Chemistry, The Petroleum Institute, P.O. Box 2533 Abu Dhabi, UAE)

  • Johnson Manuel

    (Department of Chemistry, The Petroleum Institute, P.O. Box 2533 Abu Dhabi, UAE)

  • Mohammad Zubair Khan

    (Department of Chemistry, The Petroleum Institute, P.O. Box 2533 Abu Dhabi, UAE)

  • Sasi Stephen

    (Department of Chemistry, The Petroleum Institute, P.O. Box 2533 Abu Dhabi, UAE)

  • Arman Molki

    (Department of Mechanical Engineering, The Petroleum Institute, P.O. Box 2533 Abu Dhabi, UAE)

Abstract

It is common knowledge that the presence of trace metals in biofuels can be detrimental to the environment and long-term sustainable development. This study provides an insight into selective catalytic preparation of biofuel to compare uptake of trace metals in the biodiesel fraction with preferential base catalysts. The role of specific metal hydroxides in controlling trace metal content in biofuel production is relatively unexplored, and the effect of different homogeneous catalysts (NaOH, KOH) on metal retention in biodiesel from commercial neem oil was examined. A detailed study of this nature of catalyst vs. metal uptake is in the interest of sustainable living and could make a significant contribution to biofuels research. Both catalysts displayed variable uptake for certain toxic elements, which was attributed to the behavior of the catalyst in the reaction mixture. A general comparison reflected specific trends in metal retention (ICP-MS) with the use of different base catalysts. Challenges encountered by extending the study and using a heterogeneous catalyst (CaO) are presented. Our work could play a significant role in influencing catalyzed transesterfication processes to control elemental and toxic metal uptake in biofuels. The impact of our work on sustainable living is presented.

Suggested Citation

  • Mirella Elkadi & Avin Pillay & Johnson Manuel & Mohammad Zubair Khan & Sasi Stephen & Arman Molki, 2014. "Sustainability Study on Heavy Metal Uptake in Neem Biodiesel Using Selective Catalytic Preparation and Hyphenated Mass Spectrometry," Sustainability, MDPI, vol. 6(5), pages 1-11, April.
  • Handle: RePEc:gam:jsusta:v:6:y:2014:i:5:p:2413-2423:d:35521
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    References listed on IDEAS

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    1. Çelikten, İsmet & Koca, Atilla & Ali Arslan, Mehmet, 2010. "Comparison of performance and emissions of diesel fuel, rapeseed and soybean oil methyl esters injected at different pressures," Renewable Energy, Elsevier, vol. 35(4), pages 814-820.
    2. Qi, D.H. & Geng, L.M. & Chen, H. & Bian, Y.ZH. & Liu, J. & Ren, X.CH., 2009. "Combustion and performance evaluation of a diesel engine fueled with biodiesel produced from soybean crude oil," Renewable Energy, Elsevier, vol. 34(12), pages 2706-2713.
    3. Leung, Dennis Y.C. & Wu, Xuan & Leung, M.K.H., 2010. "A review on biodiesel production using catalyzed transesterification," Applied Energy, Elsevier, vol. 87(4), pages 1083-1095, April.
    4. Aydin, Hüseyin & Bayindir, Hasan, 2010. "Performance and emission analysis of cottonseed oil methyl ester in a diesel engine," Renewable Energy, Elsevier, vol. 35(3), pages 588-592.
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