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Please use this identifier to cite or link to this item: http://hdl.handle.net/10119/15746

Title: Performance of compact fast pyrolysis reactor with Auger-type modules for the continuous liquid biofuel production
Authors: Nishimura, Shun
Ebitani, Kohki
Keywords: Fast pyrolysis reactor
Auger-type module
Pyrolysis oil
Time-course performance
Issue Date: 2018-01-22
Publisher: American Institute of Physics
Magazine name: AIP Conference Proceedings
Volume: 1929
Number: 1
Start page: 020008-1
End page: 020008-9
DOI: 10.1063/1.5021921
Abstract: Development of a compact fast pyrolysis reactor constructed using Auger-type technology to afford liquid biofuel with high yield has been an interesting concept in support of local production for local consumption. To establish a widely useable module package, details of the performance of the developing compact module reactor were investigated. This study surveyed the properties of as-produced pyrolysis oil as a function of operation time, and clarified the recent performance of the developing compact fast pyrolysis reactor. Results show that after condensation in the scrubber collector, e.g. approx. 10 h for a 25 kg/h feedstock rate, static performance of pyrolysis oil with approximately 20 MJ/kg (4.8 kcal/g) calorific values were constantly obtained after an additional 14 h. The feeding speed of cedar chips strongly influenced the time for oil condensation process: i.e. 1.6 times higher feeding speed decreased the condensation period by half (approx. 5 h in the case of 40 kg/h). Increasing the reactor throughput capacity is an important goal for the next stage in the development of a compact fast pyrolysis reactor with Auger-type modules.
Rights: Copyright 2018 Authors. Published by AIP Publishing. Shun Nishimura, Kohki Ebitani, AIP Conference Proceedings, 1929(1), 020008 (2018) and may be found at http://dx.doi.org/10.1063/1.5021921
URI: http://hdl.handle.net/10119/15746
Material Type: publisher
Appears in Collections:c11-1. 会議発表論文 (Conference Papers)

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