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Archive | 2012

Biodiesel Production Using Homogeneous and Heterogeneous Catalysts: A Review

Ajay K. Dalai; Titipong Issariyakul; Chinmoy Baroi

Biodiesel, which is an alternative renewable fuel, is defined as mono alkyl ester of long-chain fatty acids and has properties comparable to those of fossil-based diesel. Biodiesel can be produced from vegetable oils or animal fats. The most common method used to produce biodiesel is a reversible chemical reaction called transesterification. This reaction takes place either in the presence of catalysts at lower temperature and pressure or in the absence of catalysts at higher temperature and pressure in supercritical state. Catalyzed transesterification reaction is preferred in biodiesel production because of the moderate reaction conditions. Homogeneous base catalysis can be used in transesterification when fresh vegetable oil is used as a feedstock due to its low cost, high catalytic activity, and feasibility to operate at low temperatures. Homogeneous acid catalysis is a better choice when the feedstock contains higher amounts of free fatty acids (FFAs). Heterogeneous base and acid catalysis are preferred due to their easy separation from biodiesel, hence reducing number of product purification steps. However, heterogeneous catalysis is still under development and has a promising future in biodiesel industries. In this chapter, various acid- and base-catalyzed esterification and transesterification reactions are discussed, and recent trend in catalyst development is highlighted. It is recommended that a proper selection of catalyst is made in a transesterification reaction, depending largely on the type of feedstock.


Fuel Processing Technology | 2007

Production of biodiesel from waste fryer grease using mixed methanol/ethanol system

Titipong Issariyakul; Mangesh G. Kulkarni; Ajay K. Dalai; Narendra N. Bakhshi


Renewable & Sustainable Energy Reviews | 2014

Biodiesel from vegetable oils

Titipong Issariyakul; Ajay K. Dalai


Chemical Engineering Journal | 2008

Biodiesel production from mixtures of canola oil and used cooking oil

Titipong Issariyakul; Mangesh G. Kulkarni; Lekha Charan Meher; Ajay K. Dalai; Narendra N. Bakhshi


Energy & Fuels | 2010

Biodiesel Production from Greenseed Canola Oil

Titipong Issariyakul; Ajay K. Dalai


Canadian Journal of Chemical Engineering | 2012

Comparative kinetics of transesterification for biodiesel production from palm oil and mustard oil

Titipong Issariyakul; Ajay K. Dalai


Catalysis Today | 2013

Ion-exchange resins as catalysts in transesterification of triolein

Greg Paterson; Titipong Issariyakul; Chinmoy Baroi; Amarjeet S. Bassi; Ajay K. Dalai


Asia-Pacific Journal of Chemical Engineering | 2013

Development of eggshell derived catalyst for transesterification of used cooking oil for biodiesel production

A. Navajas; Titipong Issariyakul; G. Arzamendi; L.M. Gandía; Ajay K. Dalai


Journal of the American Oil Chemists' Society | 2011

Evaluating Esters Derived from Mustard Oil ( Sinapis alba ) as Potential Diesel Additives

Titipong Issariyakul; Ajay K. Dalai; Prabhat Desai


Archive | 2012

Biodiesel from Mustard Oil

Titipong Issariyakul; Ajay K. Dalai

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Ajay K. Dalai

University of Saskatchewan

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Chinmoy Baroi

University of Saskatchewan

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Amarjeet S. Bassi

University of Western Ontario

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Greg Paterson

University of Saskatchewan

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A. Navajas

Universidad Pública de Navarra

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G. Arzamendi

Universidad Pública de Navarra

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L.M. Gandía

Universidad Pública de Navarra

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