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High quality bio-oil from catalytic flash pyrolysis of lignocellulosic biomass over alumina-supported sodium carbonate

机译:氧化铝负载碳酸钠上木质纤维素生物质的催化闪速热解制得的高质量生物油

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Performance of a novel alumina-supported sodium carbonate catalyst was studied to produce a valuable bio-oil from catalytic flash pyrolysis of lignocellulosic biomass. Post treatment of biomass pyrolysis vapor was investigated in a catalyst fixed bed reactor at the downstream of the pyrolysis reactor. In-situ catalytic upgrading of biomass pyrolysis vapor was conducted in an entrained flow pyrolysis reactor by feeding a premixed feedstock of the catalyst and biomass. Na2CO3/γ-AI2O3 was very effective for de-oxygenation of the pyrolysis liquid and oxygen content of the bio-oil was decreased from 47.5 wt% to 16.4 wt%. An organic rich bio-oil was obtained with 5.8 wt% water content and a higher heating value of 36.1 MJ/kg. Carboxylic acids were completely removed and the bio-oil had almost a neutral pH. This bio-oil of high calorific low, low water and oxygen content may be an attractive fuel precursor. In-situ catalytic upgrading of biomass pyrolysis vapor produced a very similar quality bio-oil compared to post treatment of pyrolysis vapors, and shows the possible application of Na2CO3/γ-Al2O3 in a commercial type reactor system such as a fluidized bed reactor.
机译:研究了新型氧化铝负载碳酸钠催化剂从木质纤维素生物质的催化快速热解中产生有价值的生物油的性能。在热解反应器下游的催化剂固定床反应器中研究了生物质热解蒸气的后处理。通过进料催化剂和生物质的预混合原料,在气流床热解反应器中进行生物质热解蒸气的原位催化提质。 Na 2 CO 3 /γ-Al2 O 3对于热解液的脱氧非常有效,并且生物油的氧含量从47.5重量%降低至16.4重量%。获得具有5.8重量%的水含量和36.1 MJ / kg的较高的热值的富含有机物的生物油。羧酸被完全去除,生物油的pH值几乎为中性。高热量低,低水和氧含量的这种生物油可能是有吸引力的燃料前体。与热解蒸气的后处理相比,生物质热解蒸气的原位催化改性产生了质量非常相似的生物油,并且表明了Na 2 CO 3 /γ-Al2 O 3在商业类型的反应器系统例如流化床反应器中的可能应用。

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