成果報告書詳細
管理番号20140000000214
タイトル*平成25年度中間年報 バイオマスエネルギー技術研究開発 戦略的次世代バイオマスエネルギー利用技術開発事業(次世代技術開発) 革新的噴流床ガス化とAntiーASF型FT合成によるバイオジェット燃料製造システムの研究開発
公開日2014/6/21
報告書年度2013 - 2013
委託先名三菱重工業株式会社 国立大学法人富山大学 三菱日立パワーシステムズ株式会社
プロジェクト番号P10010
部署名新エネルギー部
和文要約
英文要約Title: Development of Biojet Fuel Production Systems with Innovative Entrained Flow Gasifier and Anti-ASF FT Synthesis (FY2012-2015) FY2013 Annual Report

The commercialization of biomass to liquid (BTL) technology requires not only development of stand-alone processes but a total system solution. This R&D targets the development of an innovative biojet fuel production system. This R&D focuses on the development of entrained flow gasifier suitable for BTL and FT synthesis catalysts for biojet fuel with high selectivity and durability. This development is aimed at improving efficiency and reducing the cost of BTL systems, which are challenges in biomass energy consumption.
In FY2013 following items had been executed,
(1)Development of innovative entrained flow gasifier:
・Large biomass particle were able to be applied to the gasifier in which inner flow was optimized .
・Basic Study on thermochemical performances of herbaceous and wasted biomass had been carried out and showed that herbaceous biomass started to decompose at a slightly lower temperature, which suggested at low temperature (around 220-270deg-C), herbaceous biomass would soften to adhere to woody biomass and to make mixture.
(2)Demonstration of biojet fuel synthesis using bio-syngas:
・Demonstration of biojet fuel synthesis using bio-syngas were completed.
(3)Development of biojet fuel synthesis catalyst:
Cobalt based catalyst for FT synthesis of biojet fuel were developed.
・Anti-ASF type FT synthesis catalysts for biojet fuel with high selectivity and durability were developed.
・With the effects of co-fed olefins on the product, both efficiency of CO conversion and selectivity of C8-C16 were improved.
(4)Optimization of biojet fuel production system:
・FT synthesis process model had been constructed and total system of the process could be studied.
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