biomass fast pyrolysis is a key subject on biomass high-efficient utilization both at home and abroad.
生物质快速热解技术是国内外生物质资源高效利用的重点研究课题。
renewable energy could be an alternative of fossil fuel for hydrogen production. catalytic steam reforming of biomass fast pyrolysis oil is an economically feasible method for hydrogen production.
可再生的氢能源作为化石资源的替代品是一个非常重要的途径,水蒸气催化重整生物质快速裂解获得的液体产物生物油是一种可行的制取可再生氢气的过程。
the biomass fast pyrolysis liquefaction technology was studied in detail with the greatest emphasis on the development of the experimental apparatus.
本课题的目标是设计研制一种下降管式生物质热解液化装置。
a fluidized bed reactor biomass fast pyrolysis system for producing bio-oil was developed independently.
大规模生物质快速热解制取生物油将成为解决液体燃料短缺的一个重要途径。
biomass fast pyrolysis technology is one of the most important approach for biomass liquefaction.
生物质快速热裂解技术是实现生物质液化的重要手段。
through upgrading, bio-oil by biomass fast pyrolysis is promising technology for diesel or gasoline substitute.
生物质快速热解制取的生物原油,经过精制提质,具有柴油或汽油的特点,可用于车用燃料。
in order to study the movements of biomass particulate in horizontal entrained bed of the plasma heated biomass fast pyrolysis liquefaction prototype, a set of transparent cold model is designed.
为了研究生物质颗粒在等离子体快速热解液化设备水平携带床热解管中的运动,设计制造了水平携带床冷态模拟装置。