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Catalytic steam gasification of biomass for a sustainable hydrogen future: influence of catalyst composition

机译:生物质催化蒸汽气化可持续氢气未来:催化剂组成的影响

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摘要

Hydrogen is regarded as a clean energy for fuelling the future. Hydrogen will be the energy carrier from other resources such as hydropower, wind, solar and biomass. Producing hydrogen from gasification of biomass wastes, particularly in the presence of steam, represents a promising route to produce this clean and CO2-neutral fuel. The steam pyrolysis-gasification ofbiomass (wood sawdust) was carried out with various nickel-based catalysts for hydrogen production in a two-stage fixed bed reaction system. The wood sawdust was pyrolysed in the first reactor and the derived products were gasified in the second reactor in the presence of the catalyst and steam. The synthesised Ni-Ca-Al and Ni-Zn-Al catalysts were preparedbyco-precipitation method with different Ni loadings of 20 mol% and various Zn/Al or Ca/Al ratios, which were characterized with scanning electron microscopy (SEM), transmission electron microscopy (TEM) and temperature-programmed oxidation (TPO). The results showed that the Ni/Zn-Al (1:9) catalyst resulted in higher hydrogenproduction(23.9 mmol H2 g-1biomass)compared with the Ni/Ca-Al (1:9) catalyst (12.7 23.9 mmol H2 g-1 biomass) and in addition, the increase of Ca or Zn content in the catalyst slightly increased the hydrogen production. The TPO results showed that the catalyst suffered negligible coke deposition from the catalytic steam pyrolysis/gasification of wood sawdust. Additionally, Na2CO3 basic solution was also found toproduce a catalyst with better performance and lower coke deposition, compared with NH4OH catalyst preparation agent, as observed by TPO, SEM and TEM analysis.
机译:氢被认为是推动未来发展的清洁能源。氢将成为其他资源(例如水电,风能,太阳能和生物质)的能源载体。由生物质废物的气化生产氢气,特别是在存在蒸汽的情况下,是生产这种清洁的,二氧化碳中和燃料的有前途的途径。生物质(木屑)的蒸汽热解气化是在两阶段固定床反应系统中用各种镍基催化剂进行的,用于制氢。将木屑在第一反应器中热解,并将衍生的产物在第二反应器中在催化剂和蒸汽存在下气化。采用共沉淀法制备了Ni负载量为20 mol%,Zn / Al或Ca / Al比不同的Ni-Ca-Al和Ni-Zn-Al催化剂。电子显微镜(TEM)和程序升温氧化(TPO)。结果表明,与Ni / Ca-Al(1:9)催化剂(12.7 23.9 mmol H2 g-1)相比,Ni / Zn-Al(1:9)催化剂产生更高的氢气产生量(23.9 mmol H2 g-1生物量)生物质),此外,催化剂中Ca或Zn含量的增加会略微增加氢气的产生。 TPO结果表明,由于木屑的催化蒸汽热解/气化,催化剂的焦炭沉积量可忽略不计。此外,通过TPO,SEM和TEM分析观察到,与NH4OH催化剂制备剂相比,Na2CO3碱性溶液还可以生产出具有更好性能和更低焦炭沉积的催化剂。

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