E3S Web of Conferences (Jan 2018)

Preliminary Study Of Local Catalyst For Low Cost Methanol Synthesis As Subsequence Process Of A Model System Of Biomass Fluidized Bed Catalytic Gasification

  • Prasetyo Joni,
  • Rahmawati Nurdiah,
  • Murti Galuh Wirama,
  • Sumbogo Murti S.D.,
  • Puspitarini Tyas,
  • Pertiwi Astri,
  • Mirdayanti Fusia,
  • Rosyadi Erlan,
  • Hidayat Herman,
  • Adiarso,
  • Sudo Yuta,
  • Noda Reiji

DOI
https://doi.org/10.1051/e3sconf/20186702035
Journal volume & issue
Vol. 67
p. 02035

Abstract

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Biomass waste has been emerging as an alternative energy and fuel. Direct combustion of biomass leads to harmful substances such as NOx and CO which are environmentally unfriendly manner. Innovation of clean technologies like gasification would have a potential in developing technology to reduce the emissions of harmful substances into the environment. The syngas of biomass gasification is an intermediate product which can be converted further to various types of alternative fuels especially methanol. Agency for the Assessment and application of Technology (BBPT)-Indonesia in cooperation with Gunma University-Japan has been conducting assessment and application of environmentally friendly solid biomass wastes utilization technology under the SATREPS (Science and Technology Research Partnership for Sustainable Development) program. This work is a prolongation of biomass gasification process from empty fruit bunches (EFB) to produce syngas. Furthermore, the syngas has a potential as raw material to synthesize methanol. The study of methanol synthesis focused on the development of efficient and low-cost catalyst in term of low pressure and low temperature. The catalyst of methanol synthesis was prepared by co-precipitation method with copper basis. The experiments have been performed and tested in a once-through process by Low-Pressure Fixed Bed Reactor in Micromeritics unit at a mild operating condition. The result shows that catalyst CuO: ZnO: Al2O3 (47%: 37%: 15%) has a good performance at 20 bar and 270°C with methanol concentration in the gas product up to 1.15%. On the words, the local catalyst performance comparable with commercial catalysts at low pressure and low temperature.