Conversion of flaxseed oil into biodiesel using KOH catalyst: Optimization and characterization dataset

The dataset presented here are part of the data planned to produce biodiesel from flaxseed. Biodiesel production from flaxseed oil through transesterification process using KOH as catalyst, and the operating parameters were optimized with the help of face-centered central composite design (FCCD) of...

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Main Authors: Mohammed Danish, Pradeep kale, Tanweer Ahmad, Muhammad Ayoub, Belete Geremew, Samuel Adeloju
Format: Article
Language:English
Published: Elsevier 2020-04-01
Series:Data in Brief
Online Access:http://www.sciencedirect.com/science/article/pii/S2352340920301190
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author Mohammed Danish
Pradeep kale
Tanweer Ahmad
Muhammad Ayoub
Belete Geremew
Samuel Adeloju
author_facet Mohammed Danish
Pradeep kale
Tanweer Ahmad
Muhammad Ayoub
Belete Geremew
Samuel Adeloju
author_sort Mohammed Danish
collection DOAJ
description The dataset presented here are part of the data planned to produce biodiesel from flaxseed. Biodiesel production from flaxseed oil through transesterification process using KOH as catalyst, and the operating parameters were optimized with the help of face-centered central composite design (FCCD) of response surface methodology (RSM). The operating independent variables selected such as, methanol oil ratio (4:1 to 6:1), catalyst (KOH) weight (0.40–1.0%), temperature (35 °C–65 °C), and reaction time (30 min–60 min) were optimized against biodiesel yield as response. The maximum yield (98.6%) of biodiesel from flaxseed can achieved at optimum methanol oil ratio (5.9:1), catalyst (KOH) weight (0.51%), reaction temperature (59.2 °C), and reaction time (33 min). The statistical significance of the data set was tested through the analysis of variance (ANOVA). These data were the part of the results reported in “Optimization of process variables for biodiesel production by transesterification of flaxseed oil and produced biodiesel characterizations” Renewable Energy [1]. Keywords: Biodiesel, Flaxseed oil, Face-centered central composite design, Response surface methodology (RSM), Transesterification
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spelling doaj.art-fed3cd1b86d34a0fb9e6c5b169d225102022-12-21T23:54:28ZengElsevierData in Brief2352-34092020-04-0129Conversion of flaxseed oil into biodiesel using KOH catalyst: Optimization and characterization datasetMohammed Danish0Pradeep kale1Tanweer Ahmad2Muhammad Ayoub3Belete Geremew4Samuel Adeloju5Bioengineering Technology Section, Malaysian Institute of Chemical and Bioengineering Technology (MICET), Universiti Kuala Lumpur, Lot 1988, Kawasan Perindustrian Bandar Vendor, Taboh Naning, 78000, Alor Gajah, Melaka, MalaysiaDepartment of Mechanical Engineering, JSPM's Bhivrabai Sawant Polytechnic, Wagholi, Pune, 412207, IndiaDepartment of Chemistry, School of Mathematics and Natural Science, Copperbelt University, Kitwe, ZambiaCentre for Biofuel and Biochemical Research (CBBR), Department of Chemical Engineering, Universiti Teknologi PETRONAS, 32610, Seri Iskandar, Perak, Malaysia; Corresponding author.Department of Chemistry, College of Natural and Computational Science, Madda Walabu University, Bale-Robe, EthiopiaFaculty of Science, Charles Sturt University, Wagga Wagga, NSW 2650, AustraliaThe dataset presented here are part of the data planned to produce biodiesel from flaxseed. Biodiesel production from flaxseed oil through transesterification process using KOH as catalyst, and the operating parameters were optimized with the help of face-centered central composite design (FCCD) of response surface methodology (RSM). The operating independent variables selected such as, methanol oil ratio (4:1 to 6:1), catalyst (KOH) weight (0.40–1.0%), temperature (35 °C–65 °C), and reaction time (30 min–60 min) were optimized against biodiesel yield as response. The maximum yield (98.6%) of biodiesel from flaxseed can achieved at optimum methanol oil ratio (5.9:1), catalyst (KOH) weight (0.51%), reaction temperature (59.2 °C), and reaction time (33 min). The statistical significance of the data set was tested through the analysis of variance (ANOVA). These data were the part of the results reported in “Optimization of process variables for biodiesel production by transesterification of flaxseed oil and produced biodiesel characterizations” Renewable Energy [1]. Keywords: Biodiesel, Flaxseed oil, Face-centered central composite design, Response surface methodology (RSM), Transesterificationhttp://www.sciencedirect.com/science/article/pii/S2352340920301190
spellingShingle Mohammed Danish
Pradeep kale
Tanweer Ahmad
Muhammad Ayoub
Belete Geremew
Samuel Adeloju
Conversion of flaxseed oil into biodiesel using KOH catalyst: Optimization and characterization dataset
Data in Brief
title Conversion of flaxseed oil into biodiesel using KOH catalyst: Optimization and characterization dataset
title_full Conversion of flaxseed oil into biodiesel using KOH catalyst: Optimization and characterization dataset
title_fullStr Conversion of flaxseed oil into biodiesel using KOH catalyst: Optimization and characterization dataset
title_full_unstemmed Conversion of flaxseed oil into biodiesel using KOH catalyst: Optimization and characterization dataset
title_short Conversion of flaxseed oil into biodiesel using KOH catalyst: Optimization and characterization dataset
title_sort conversion of flaxseed oil into biodiesel using koh catalyst optimization and characterization dataset
url http://www.sciencedirect.com/science/article/pii/S2352340920301190
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