Published August 25, 2016 | Version v1
Journal article

Study of non-catalytic thermal decomposition of triglyceride at hydroprocessing condition

  • 1. Kongu Engineering College (Autonomus), Erode (India)
  • 2. Chalmers University of Technology (Sweden)
  • 3. Eco-traffic AB, Stockholm (Sweden)

Description

Highlights: • Thermolysis of triglycerides occurs above 300 °C and cracking intensify above 350 °C. • Decomposition of carboxylic group observed, and β-H abstraction gives radical. • Product contains aldehyde, ketonic, saturated/unsaturated, cyclic, glycerol group. • Gasoline fraction contains lighter, cyclic and unsaturated hydrocarbons. • Residues contain ester, dimer and carboxylic groups. - Abstract: Non-catalytic thermal decomposition of triglyceride is studied between 300 and 410 °C at 0.1 and 5 MPa in the presence of H2 or inert gas. This test is carried in tubular reactor filled with inert material (borosilicate glass pellet). The qualitative and analytical results showed that n-alkanes and alkenes with oxygenated olefins were primary products, consistent with thermal cracking to lighter hydrocarbons. The resulting outlet fuel gas obtained mainly from the radical reaction and had high concentration of CO, ethylene and methane. The decomposition forms a large number of radical compounds containing acids, aldehydes, ketones, aliphatic and aromatic hydrocarbon groups. Lighter fraction contains mostly naphthenic group, and heavy fraction contains straight chain paraffinic hydrocarbons. When H2 partial pressure raised, the cracking of heavy fractions is low, and products contain low concentration of the lighter and gasoline fractions. Here, the thermal decomposition of triglyceride yields lighter fractions due to cracking, decarboxylation and decarbonylation.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.applthermaleng.2016.06.167

Additional details

Identifiers

DOI
10.1016/j.applthermaleng.2016.06.167;
PII
S1359-4311(16)31081-X;

Publishing Information

Journal Title
Applied Thermal Engineering
Journal Volume
107
Journal Page Range
p. 301-310
ISSN
1359-4311
CODEN
ATENFT

Optional Information

Copyright
Copyright (c) 2016 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.