Parameter Optimization for Enhanced Biodiesel Yield from Linum usitatissimum Oil Through Solar Energy Assistance

Author:

Budhraja Neeraj1

Affiliation:

1. DTU

Abstract

Abstract Biodiesel is a biofuel produced from vegetable oils and animal fats. The study describes the solar-assisted biodiesel production from linseed oil and the parameter optimization using Taguchi’s L27 orthogonal approach and response surface methodology (RSM). A solar paraboloid dish of collector area 6.1 m2 and concentration ratio approx. 200 is used for the transesterification process. The yearly and daily solar radiation data shows that May-June has longer solar radiation availability during the daytime; and are favorable months for experimentation. The results show that Taguchi’s approach gives a maximum biodiesel yield of 89.14%, while the RSM model offers a slightly higher 91.9% yield. However, the RSM analysis predicted 91.1% (maximum biodiesel yield) at molar ratio (MR) 8.92:1, reaction time (RT) 108.97 minutes, and catalyst concentration (CC) 0.61 wt.%, respectively. The ANOVA analysis found that the MR has the highest percentage contribution of 75.67%, followed by CC (15.9%) and RT (5.69%). The biodiesel composition is determined using gas chromatography, and the various other fuel properties are measured as per ASTM testing methods. The study successfully confirms the solar heating usage for the transesterification process.

Publisher

Research Square Platform LLC

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