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A combined catalyst and sorbent for enhancing hydrogen production from coal or biomass

机译:组合的催化剂和吸附剂,可提高煤炭或生物质的产氢量

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摘要

Future large-scale production of H2 for use as a clean fuel will likely depend upon gasifying coal or biomass followed by steam reforming the resulting gas mixture and separating the CO2 byproduct. The process of steam reforming and CO2 separation can be greatly simplified by utilizing a new material that combines a reforming catalyst with a sorbent for CO2. Such a material was prepared in the form of small pellets with cores made of calcium and magnesium oxides and shells made largely of alumina impregnated with a nickel catalyst. Subsequent laboratory performance tests of the material showed that CO, CH4, and toluene, which are representative products of gasification, were largely converted to H2 by reacting the material with steam in the presence of the catalyst/sorbent, so that CO2 was absorbed as it was produced. The sorbent was easily regenerated by raising its temperature, which made it possible to reuse the catalyst/sorbent repeatedly.
机译:用作清洁燃料的氢气的未来大规模生产将可能取决于将煤或生物质气化,然后蒸汽重整生成的气体混合物并分离出二氧化碳副产物。通过使用将重整催化剂与用于CO2的吸附剂相结合的新材料,可以大大简化蒸汽重整和CO2分离的过程。这种材料以小丸粒的形式制备,其芯由钙和镁的氧化物制成,而壳则主要由浸渍有镍催化剂的氧化铝制成。随后对该材料进行的实验室性能测试表明,作为气化代表产物的CO,CH4和甲苯在催化剂/吸附剂的存在下通过使该材料与蒸汽反应而大量转化为H2,从而使CO2随其吸收产生了。通过提高吸附剂的温度可以轻松地使其再生,从而可以重复使用催化剂/吸附剂。

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