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Studies on long-term storage stability of biodiesel (B100) and its blend (B20) using Box-Behnken response surface method
Authors:Pavalavana Pandian Jayaraman  M. Pugazhvadivu
Affiliation:Department of Mechanical Engineering, Pondicherry Engineering College, Puducherry, India
Abstract:The gradual depletion of fossil fuels has greatly enhanced the necessity to look for alternative fuels for automobile engines. In response to this, biodiesel is being considered as a promising and potential alternative substitute to conventional petroleum diesel. However, long-term storage stability of biodiesel is poorer compared to conventional petroleum diesel. The aim of the project work is to study the long-term storage stability of biodiesel (B100) and its blend (B20) prepared from used frying oil in different conditions of storage. In this work, the effect of antioxidants and temperature on long storage stability of biodiesel obtained from with respect to storage period is analysed using response surface methodology (RSM). The long storage of biodiesel obtained from used frying oils were optimised by varying parameters such as antioxidant concentration, storage period by Box-Behnken RSM. The properties such as the acid value and the viscosity of biodiesel were initially measured. The results of the investigation showed that the addition of sufficient concentration of antioxidant (pyrogallol) significantly maintains the acid value and viscosity of biodiesel and helps to store for a longer storage period at the given storage temperature.
Keywords:Box-Behnken method  long storage stability  waste frying oil  biodiesel  antioxidant  optimisation
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