Pyrogenic transformation of oil-bearing biomass into biodiesel without lipid extraction

  • Jung, Jong-Min
  • Lee, Jechan
  • Kim, Jieun
  • Kim, Ki-Hyun
  • Kwon, Eilhann E.
Citations

WEB OF SCIENCE

31
Citations

SCOPUS

34

초록

This study mechanistically investigated the pseudo-catalytic transesterification of oil-bearing biomass through a thermo-chemical pathway. As a case study, all experimental work was conducted with sesame seed and sesame oil. The pseudo-catalytic transesterification occurred in the presence of porous material (silica) since porous material provided reaction space as a micro reactor and drove the heterogeneous reactions between the mobile phase of methanol and the stationary phase of triglycerides (TGs) in sesame. The experimental work verified that the main driving force of pseudo-catalytic transesterification was temperature in the presence of porous material, which led to the direct derivatization of oil-bearing biomass into fatty acid methyl esters (FAMEs). Thermal cracking was observed at temperatures higher than 350 degrees C and the main experimental parameter initiating this thermal cracking was temperature and time. However, the optimal conditions identified in this study were temperatures lower than 350 degrees C, where the total yield of FAMEs reached up to 96.4 +/- 0.3% of lipid in sesame seed. The introduced technology would be applicable to the production of biodiesel and comprehensive lipid analysis in oil-bearing biomass.

키워드

Biodiesel Fatty acid methyl esters (FAMEs)Pseudo-catalytic transesterificationLipidOil-bearing biomassCLIMATE-CHANGE SCIENCEWASTE COOKING OILMETHYL-ESTERSPALM OILCOMBUSTION CHARACTERISTICSTHERMAL-CRACKINGSEED OILCOSTTRANSESTERIFICATIONMICROALGAE
제목
Pyrogenic transformation of oil-bearing biomass into biodiesel without lipid extraction
저자
Jung, Jong-MinLee, JechanKim, JieunKim, Ki-HyunKwon, Eilhann E.
DOI
10.1016/j.enconman.2016.06.049
발행일
2016-09
유형
Article
저널명
Energy Conversion and Management
123
페이지
317 ~ 323