成果報告書詳細
管理番号20100000001927
タイトル*平成21年度中間年報 水素製造・輸送・貯蔵システム等技術開発 水素製造機器要素技術に関する研究開発 水素製造装置の高性能化・低コスト化・コンパクト化に関する研究開発
公開日2011/6/29
報告書年度2009 - 2009
委託先名三菱化工機株式会社
プロジェクト番号P08003
部署名燃料電池・水素技術開発部
和文要約和文要約等以下本編抜粋:1.研究開発の内容及び成果等 1.1 研究開発の概要 本研究開発では、FCV普及初期(2015年頃を想定)での事業化に対応した実用的な水素ステーション用水素製造装置に要求される性能、仕様をユーザの視点から調査、検討し、その結果により水素製造装置の目標を明確にするとともに、改質器と水素PSAの高効率化開発を軸とした研究開発を行い、平成22年度に試作装置による検証運転を実施する。
英文要約Title : Development of Technologies for Hydrogen Production, Delivery, and Storage Systems. Development of Elemental Technologies for Hydrogen Production System. Development of High Efficiency, Low Cost and Small Hydrogen Production Equipment (FY2008-FY2010); FY2009 Annual Report High efficiency, low-cost and small footprint hydrogen production equipment will be developed in this project during FY2008-FY2010. The aim of this development is to establish comprehensive practical system technologies for the hydrogen supply infrastructure market, which is expected to be launched and disseminated around 2015. As results of designing the plot plan of 300Nm^3/hr-class hydrogen station, the footprint of hydrogen production equipment was 5.5m x 10m including maintenance area. We are planning to get the efficiency of hydrogen production about 85%(HHV, based on supplied energy of feed gas) under the condition of steam-carbon ratio S/C 2.5 and H2PSA efficiency 90%. As results of test of reformation catalyst at micro-reactor, Ni-based catalyst has possibility to use in commercial equipment at S/C2.5. Long time test of Ni-based catalyst is in running to 4000hr. The performance of catalyst has not decreased during 2400hr. As results of examination of new type burner at the 50Nm3/h-class model furnace, the burner has good incineration performance. Investigating the reformer structure, the size of reformer is 1/5 of the past equipment. Based on the simulation and examination at micro-PSA apparatus, we adopted the vacuum desorption and high-cyclic H2-PSA. As results of designing of commercial-scale PSA system, the size of H2-PSA system became 1/2 of the past system. Based on the basic design of 300Nm3/h-class hydrogen production equipment, we designed the 50Nm3/h-class proto type hydrogen production equipment. The equipment is composed of 2 units which are the main unit and the compressor unit.
We will construct and operate it in FY2010 to verify the design of hydrogen production equipment.
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