Experimental investigation on biodiesel production incorporating deep eutectic solvents

Author:

Kadapure Santosh Ashok1ORCID,Kadapure Poonam2,Savadatti Amrut3,Bhojvani Nikita4,Joshi Omkar5

Affiliation:

1. Associate Professor, Department of Chemical Engineering, KLE Dr MSS Sheshgiri College of Engineering and Technology, Belagavi, Karnataka, India (corresponding author: )

2. Lecturer, Rani Parvati Devi College of Arts and Commerce, Department of BBA, Belagavi, Karnataka, India

3. Technical Officer, Department of Chemical Engineering, KLE Dr MSS Sheshgiri College of Engineering and Technology, Belagavi, Karnataka, India

4. Software Engineer, Department of Chemical Engineering, KLE Dr MSS Sheshgiri College of Engineering and Technology, Belagavi, Karnataka, India

5. Associate Engineer, Department of Chemical Engineering, KLE Dr MSS Sheshgiri College of Engineering and Technology, Belagavi, Karnataka, India

Abstract

In recent years, biodiesel has been proving to be a remarkable alternative for petro-diesel. In this research study, an effort has been made to improve the yield of biodiesel by using a synthesised novel deep eutectic solvent (DES). The synthesised DES of different composition was checked for its superiority for biodiesel production using sesame oil. Experiments were conducted with different parameters such as molar ratio of alcohol to oil and agitation speed at fixed temperature and contact time. The molar ratio of methanol to oil is 8:1, at a temperature of 60°C and a reaction time of 60 min proved to be the optimum condition for DESs. All tested DESs have been able to improve the yield of biodiesel compared to non-DES. The highest yield of biodiesel (97·8%) has been achieved by using ethylene glycol as the hydrogen donor in the ratio 1:2 and at a molar ratio of 8:1 with agitation speed of 1200 r/min. All the properties of prepared biodiesel met the American Society for Testing and Materials standards such as viscosity, flash point and specific gravity. The synthesised choline chloride-DES proved to be effective in improving the yield of biodiesel and thus can be used as an alternative to ionic liquids.

Publisher

Emerald

Reference22 articles.

1. ASTM (2012) D 1298-12: Standard test method for density, relative density (specific gravity), or API gravity of crude petroleum and liquid petroleum products by hydrometer method. ASTM International, West Conshohocken, PA, USA.

2. ASTM (2020) D 6751-20: Standard specification for biodiesel fuel blend stock (B100) for middle distillate fuels. ASTM International, West Conshohocken, PA, USA.

3. Methanolysis optimization of sesame (Sesamum indicum) oil to biodiesel and fuel quality characterization

4. BSI (2013) BS EN 14214: Liquid petroleum products – Fatty acid methyl esters (FAME) for use in diesel engines and heating applications – Requirements and test methods. BSI, London, UK.

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