Atom Indonesia Journal
Vol 38, No 2 (2012): August 2012

Comparison of Gamma Irradiated and Raw Lignite in Bioliquefaction Process by Fungus T5

I. Sugoro (School of Life Science and Technology, Bandung Institute of Technology Jl. Ganesa 10, Bandung 40132, Indonesia Center for Application of Isotope and Radiation Technology, National Nuclear Energy Agency Jl. Lebak Bulus Raya No. 49, Jakarta, Indonesia)
D.I. Astuti (School of Life Science and Technology, Bandung Institute of Technology Jl. Ganesa 10, Bandung 40132, Indonesia)
D. Sasongko (Department of Chemical Engineering, Bandung Institute of Technology Jl. Ganesa 10, Bandung 40132, Indonesia)
P. Aditiawati (School of Life Science and Technology, Bandung Institute of Technology Jl. Ganesa 10, Bandung 40132, Indonesia)



Article Info

Publish Date
15 Jan 2013

Abstract

The bioliquefaction of coal is a processing technology for converting solid coal to liquid oil at ambient temperature by helping microorganism. The pretreated of lignite is important to decrease the hydrofobic of lignite surface. One of pretreated method was irradiation by gamma rays. Aim of this research was to compare the gamma irradiated lignite and raw lignite in bioliquefaction process by selected fungus T5. The fungus was identified by molecular method using 18S rDNA. Treatments were A (MSS + gamma irradiated lignite 5% + T5) and B (MSS + raw lignite 5% + T5) and culture type was sub-merged. The parameters observed were colonization, bacterial and fungal enumeration, identify of dominant bacteria using 16S rDNA and characterization of bioliquefaction product by UV-Vis spectroscopy dan gas chromatography – mass spectrometry (GCMS). The results showed that fungus T5 belongs to Ascomycota, Trichoderma asperellum. Fungus has the ability to growth and liquefy gamma irradiated and raw lignite. Bacteria were detected in raw lignite treatment and dominant bacteria were identified as Bacillus megaterium and Bacillus thuringensis. UV-Vis analysis showed that boliquefaction product mainly contained naphtacene, naphthalene, and anthracene for gamma irradiated lignite, but anthracene and benzene for raw lignite. For GCMS analysis, 22 and 38 compounds were identified for gamma irradiated and raw lignite. Both treatment had different number of hydrocarbon, i.e. C6 – C35 (A) and C10 – C35 (B) and dominated by aromatic acids, aliphatic and phenylethers. Percent area of gasoline (C7 – C11) and diesel (C10 – C24) fractions on the treatment B was 7.23% and 62.35%, while in treatment A was 7.22% and 44.27%. Based on the results, pretreated of lignite by gamma irradiation could be increased the bioliquefaction product.Received: 5 December 2011; Revised: 21 May 2012; Accepted: 11 June 2012

Copyrights © 2012






Journal Info

Abbrev

aij

Publisher

Subject

Materials Science & Nanotechnology

Description

Exist for publishing the results of research and development in nuclear science and technology Starting for 2010 Atom Indonesia published three times a year in April, August, and December The scope of this journal covers experimental and analytical research in all areas of nuclear science and ...