Published 2009 | Version v1
Miscellaneous

Temperature dependence on the synthesis of Jatropha bio lubricant

  • 1. Faculty of Engineering, Universiti Putra Malaysia, Serdang, Selangor (Malaysia), Dept. of Chemical and Environmental Engineering

Description

Full text: Jatropha oil has good potential as the renewable energy as well as lubricant feedstock. The synthesis of jatropha bio lubricant was performed by transesterification of jatropha methyl ester (JME) with trimethyl-ol-propane (TMP) with sodium methoxide (NaOCH3) catalyst. The effects of temperature on the synthesis were studied at a range between 120 degree Celsius and 200 degree Celsius with pressure kept at 10 mbar. The conversion of JME to jatropha bio lubricant was found to be the highest (47 %) at 200 degree Celsius. However, it was suggested that the optimum temperature of the reaction is at 150 degree Celsius due to insignificant improvement in bio lubricant production. To maintain forward reaction, the excess amount of JME was maintained at 3.9:1 ratios to TMP. Kinetic study was done and compared. The synthesis was found to follow a second order reaction with overall rate constant of 1.49 x 10-1 (% wt/ wt.min.degree Celsius)-1. The estimated activation energy was 3.94 kJ/mol. Pour point for jatropha bio lubricant was at -3 degree Celsius and Viscosity Index (VI) ranged from 178 to 183. The basic properties of jatropha bio lubricant, pour point and viscosities are found comparable to other plant based bio lubricant, namely palm oil and soybean based bio lubricant. (author)

Availability note (English)

Available in abstract form only, full text entered in this record

Additional details

Publishing Information

Imprint Pagination
1 p.

Conference

Title
International Advanced of Technology Congress
Acronym
Atci 2009
Dates
3-5 Nov 2009
Place
Kuala Lumpur (Malaysia)

INIS

Country of Publication
Malaysia
Country of Input or Organization
Malaysia
INIS RN
41096059
Subject category
S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
BIODEGRADATION; CATALYSTS; CHEMICAL FEEDSTOCKS; ESTERIFICATION; LUBRICANTS; RENEWABLE ENERGY SOURCES; SYNTHESIS; TEMPERATURE DEPENDENCE
Descriptors DEC
CHEMICAL REACTIONS; DECOMPOSITION; ENERGY SOURCES; MATERIALS; RAW MATERIALS