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BBD optimization of K-ZnO catalyst modification process for heterogeneous transesterification of rice bran oil to biodiesel

Kabo, K. S. and Yacob, A. R. and Bakar, W. A. W. A. and Buang, N. A. and Bello, A. M. and Ruskam, A. (2016) BBD optimization of K-ZnO catalyst modification process for heterogeneous transesterification of rice bran oil to biodiesel. In: Soft Soil Engineering International Conference 2015, SEIC 2015, 27 October 2015 through 29 October 2015, Langkawi; Malaysia.

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Abstract

Environmentally benign zinc oxide (ZnO) was modified with 0-15% (wt.) potassium through wet impregnation and used in transesterification of rice bran oil (RBO) to form biodiesel. The catalyst was characterized by X-Ray powder Diffraction (XRD), its basic sites determined by back titration and Response Surface Methodology (RSM) Box-Behnken Design (BBD) was used to optimize the modification process variables on the basic sites of the catalyst. The transesterification product, biodiesel was analyzed by Nuclear Magnetic Resonance (NMR) spectroscopy. The result reveals K-modified ZnO with highly increased basic sites. Quadratic model with high regression R2 = 0.9995 was obtained from the ANOVA of modification process, optimization at maximum basic sites criterion gave optimum modification conditions of K-loading = 8.5% (wt.), calcination temperature = 480 oC and time = 4 hours with response and basic sites = 8.14 mmol/g which is in close agreement with the experimental value of 7.64 mmol/g. The catalyst was used and a value of 95.53% biodiesel conversion was obtained and effect of potassium leaching was not significant in the process.

Item Type:Conference or Workshop Item (Paper)
Uncontrolled Keywords:basic sites optimization, biodiesel, catalyst leaching, K-modified-zinc oxide
Subjects:Q Science > QD Chemistry
Divisions:Science
ID Code:73111
Deposited By: Muhammad Atiff Mahussain
Deposited On:22 Nov 2017 12:07
Last Modified:22 Nov 2017 12:07

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