4.7 Article Proceedings Paper

Nickel catalyst with different supports for green diesel production

Journal

ENERGY
Volume 182, Issue -, Pages 306-320

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.energy.2019.06.020

Keywords

Palmitic acid; Green diesel; Nickel catalyst; Deoxygenation

Funding

  1. National Nanotechnology Center (Nanotech), NSTDA, Ministry of Science and Technology, Thailand, through its program of Research Network NANOTEC (RNN)
  2. Thailand Research Fund [MRG5980252]
  3. National Center of Excellence for Petroleum, Petrochemicals, and Advanced Materials (PETROMAT)

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Green diesel or bio-hydrogenated diesel can be produced from vegetable oils and their derivatives via a catalytic reaction. This work carried out the synthesis and characterization of nickel catalysts for the production of n-alkane from palmitic acid. A nickel (Ni) metal catalyst was studied based on different properties of the supports which were zirconia (ZrO2), Zeolite Socony Mobil-5 (H-ZSM-5), and activated carbon (AC). All catalysts were prepared via the incipient wetness impregnation method. The reaction was carried out in semi-batch mode with the controlled hydrogen gas pressure as low as 10 bars. The results showed that Ni on ZrO2 provided the highest conversion (98.33%) and high n-pentadecane selectivity of around 76% due to the highest acidity of the ZrO2 surface. Methane gas was the main component in the gaseous products and due to the methanation reaction on CO, CO2 was produced. The successful synthesis of a Ni-catalyst for green diesel production (n-pentadecane) from palmitic acid at low pressure can be implemented via deoxygenation reaction to produce green diesel. (C) 2019 Elsevier Ltd. All rights reserved.

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