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EXPERIMENTAL INVESTIGATION OF A PACKED-BED SOLAR REACTOR FOR THE STEAM-GASIFICATION OF BIOMASS CHARCOAL

机译:用于生物质炭蒸汽气化的填充床太阳能反应器的实验研究

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Gasification of coal, biomass, and other carbonaceous materials for high-quality syngas production is considered using concentrated solar energy as the source of high-temperature process heat. The solar reactor consists of two cavities separated by a SiC-coated graphite plate, with the upper one serving as the radiative absorber and the lower one containing the reacting packed bed that shrinks as the reaction progresses. A 5-kW prototype reactor with an 8 cm-depth, 14.3 cm-diameter cylindrical bed was fabricated and tested in the High-Flux Solar Simulator at PSI, subjected to solar flux concentrations up to 2300 suns. Beech charcoal was used as a model feedstock and converted into high-quality syngas (predominantly H_2 and CO) with packed-bed temperatures up to 1500 K, an upgrade factor of the calorific value of 1.33, and an energy conversion efficiency of 29%. Pyrolysis was evident through the evolution of higher gaseous hydrocarbons during heating of the packed bed. The engineering design, fabrication, and testing of the solar reactor are described.
机译:使用浓缩的太阳能作为高温工艺热源来考虑煤,生物质和其他碳质材料的煤,生物质和其他碳质材料。太阳能反应器由两个由SiC涂覆的石墨板分开的空腔组成,其中含有辐射吸收剂和含有反应的反应填充床的下部腔作为辐射吸收剂,其含有反应的填充床。在PSI的高通量太阳能模拟器中制造和测试了8千瓦的原型反应器,并在PSI的高通量太阳能模拟器中进行了测试,经受过多2300℃的太阳能磁通浓度。山毛榉木炭用作模型原料,并转化为高达1500 k的填充床温度的高质量合成气(主要是H_2和CO),升级因子为1.33,能量转换效率为29%。通过在加热填充床的加热过程中,通过较高气态烃的演变显而易见的热解。描述了太阳能反应器的工程设计,制造和测试。

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