Advances in Chemical Engineering and Science

Advances in Chemical Engineering and Science

ISSN Print: 2160-0392
ISSN Online: 2160-0406
www.scirp.org/journal/aces
E-mail: aces@scirp.org
"Low Temperature Glycerolysis as a High FFA Pre-Treatment Method for Biodiesel Production"
written by Godlisten G. Kombe, Abraham K. Temu, Hassan M. Rajabu, Godwill D. Mrema, Keat Teong Lee,
published by Advances in Chemical Engineering and Science, Vol.3 No.4, 2013
has been cited by the following article(s):
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[10] Modeling of Glycerolysis Kinetic of Free Fatty Acid in Crude Palm Oil
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[11] Transesterification reaction conditions and low-quality feedstock treatment processes for biodiesel production-A review
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[12] Glycerolysis treatment to enhance biodiesel production from low-quality feedstocks
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[13] Biodiesel production from engineered sugarcane lipids under uncertain feedstock compositions: Process design and techno-economic analysis
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[14] Glycerolysis of free fatty acids: a review
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[15] Glycerolysis of Palm Fatty Acid Distillate (PFAD) as Biodiesel Feedstock Using Heterogeneous Catalyst
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[16] Production of Fatty Acid Methyl Ester from Acid Oil an Edible Oil Refinery By-Product by Two Step Esterification Followed by Trans-Esterification Process
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[17] ACID-CATALYSED ESTERIFICATION ENHANCED BIODIESEL YIELD FROM USED COOKING OIL
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[18] OPTIMIZATION OF SOLAR ASSISTED BIODIESEL PRODUCTION FROM LINSEED OIL
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[19] Παραγωγή και Αξιολόγηση Αιθυλεστέρων Λιπαρών Οξέων από Χρησιμοποιημένα Τηγανέλαια
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[20] Partial glycerides-an important nonionic surfactant for industrial applications: an overview
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[21] 11 History and Business Prospects of the Palm Oil Industry, Case of Malaysia
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[22] Edible oils: extraction, processing, and applications
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[23] Glycerolysis with crude glycerin as an alternative pretreatment for biodiesel production from grease trap waste: Parametric study and energy analysis
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[24] Partial Glycerides-An Important Nonionic Surfactant for Industrial Ap-plications: An Overview
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[25] Effect of Co-solvent Addition on Glycerolysis of Waste Cooking Oil
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[26] Chemical Modification of High Free Fatty Acid Oils for Biodiesel Production
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[27] The effects of pre-treatment and refining of high free fatty acid oil on the oxidation stability of biodiesel
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[28] New technologies for the complete rendering and economic conversion of waste oils to biofuels
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[29] 5 Refining Technologies
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[30] Refining technologies for edible oils
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[31] Glycerin esterification of scum derived free fatty acids for biodiesel production
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[32] Preparation of Vegetable Oil as Biodiesel Feedstock Via Re-Esterification: A Suitable Catalyst
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[33] Glycerolysis for Lowering Free FattyAcid of Waste Cooking Oil
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[34] Re-esterification of high free fatty acid oils for biodiesel production
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[35] PREPARATION VEGETABLE OIL AS BIODIESEL FEEDSTOCK VIA HETEROGENEOUS CATALYST RE-ESTERIFICATION
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