Datasets on process transesterification of binary blend of oil for fatty acid ethyl ester (FAEE) synthesized via the ethanolysis of heterogeneous doped catalyst

被引:5
作者
Adepoju, T. F. [1 ]
Ibeh, M. A. [1 ]
Babatunde, E. O. [3 ]
Abegunde, G. S. [3 ]
Adepoju, P. O. [2 ]
Asuquo, A. J. [1 ]
Osueke, C. O. [4 ]
机构
[1] Akwa Ibom State Univ, Chem Petrochem Engn Dept, PMB 1167, Uyo, Akwa Ibom State, Nigeria
[2] Univ Ilorin, Fac Engn, Agr & Biosyst Engn Dept, PMB 1515, Ilorin, Kwara State, Nigeria
[3] Univ Ilorin, Fac Engn, Dept Chem Engn, PMB 1515, Ilorin, Kwara State, Nigeria
[4] Landmark Univ, Coll Engn, Dept Mech Engn, PMB 1106, Ilorin, Kwara State, Nigeria
关键词
API gravity ratio; Fatty acid ethyl ester (FAEE); Response surface methodology (RSM); Catalyst characterization; Physicochemical properties; Catalyst reusability test;
D O I
10.1016/j.dib.2020.105905
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The data employed the blend of waste used oil and beef tallow for the synthesis of fatty acid ethyl ester (FAEE) via ethanolysis of developed catalyst from calcined fermented cocoa pod husk powder (CFCPHP) doped with burnt cocoa pod husk powder (BCHP). Characterization of the developed doped catalyst (DDC) was carried out using FTIR, SEM, XRD, and BET adsorption analysis, while the basic strength of the DDC was tested through reusability test data. Mathematical optimization of the process condition was carried out through Box-Behnken Experimental Design (BBED) in 29 runs with variations in four variables as catalyst concentration (1.5 to 3.5 wt.%), reaction time (60 to 100 min), ethanol/oil molar ratio (EtOH/OMR) of 3 to 7, and reaction temperature (60 to 80 degrees C). The FAEE quality was ascertained by determining its fuel properties. The data showed that the binary blend ratio of 42:58 of Waste Used oil: Beef Tallow oil (WUO: BTO) was obtained through API gravity ratio formulation. The developed doped catalyst (DDC) produced a high CaO-base of 84.30 (wt.%), with a high total basic site of 210 mu mole.g(-1) via BET and XRD analysis. The SEM analysis dataset showed non-uniform sizes, highly porous and crystalline sample, while the dataset on FTIR analysis data confirmed the presence of wagging and twisting CO32-, the bending vibration of O-Ca-O, the sp(2) of C = O, C = C, the sp of C C and C N, the bending structure of O-H, and the O=O, N O of Amines, and Amides. Based on the experiment, the maximum experimental yield of 97.80 (%wt.) at runs 7, and low yield of 89.50 (%wt.) at run 17 was obtained for FAEE. Mathematical optimization in 10 solutions predicted the FAEE yield of 97.7999 (%wt.) at the catalyst concentration of 3.10 (wt.%), the reaction time of 68.09 min, the EtOH/OMR of 3.01, and the reaction temperature of 72.21 degrees C. This data was validated in replicate, and the average mean value of FAEE was 97.68 (%wt.). Dataset on ANOVA and parametric analysis showed that the variable factors considered were significant at p-value <0.00 01, with high R-2 of 99.14%, R-2-predicted of 98.32%, R-2-adjusted of 98.28%, and adequate precision of 51.152, respectively. Catalyst reusability test data showed that the cycle number was stopped at the 5th cycle due to the decrease in catalyst basic strength. The produced FAEE dataset was within the recommended standard, and the data showed the developed doped catalyst successfully converted binary blend oil to FAEE, and the fermentation process increased the CaO-based conversion of DDC. (c) 2020 The Author(s). Published by Elsevier Inc. This is an open access article under the CC BY license. (http://creativecommons.org/licenses/by/4.0/
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页数:11
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