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首页> 外文期刊>Energy sources. Part A, Recovery, utilization, and environmental effects >Bio-oil Production from an Oilseed By-product: Fixed-bed Pyrolysis of Olive Cake
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Bio-oil Production from an Oilseed By-product: Fixed-bed Pyrolysis of Olive Cake

机译:油籽副产物的生物油生产:橄榄饼的固定床热解

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摘要

A study of pyrolysis of olive cake at the temperature range from 400℃ to 700℃ has been carried out. The experiments were performed in a laboratory scale tubular reactor under nitrogen atmosphere. The yields of derived gases, liquids, and char were determined in relation to pyrolysis temperature and sweeping gas flow rates, at heating rates of about 300℃ min~(-1) . As the pyrolysis temperature was increased, the percentage mass of char decreased whilst gas product increased. The oil products increased to a maximum value of ~39.4 wt% of dry ash free biomass at a pyrolysis temperature of about 550°C in a nitrogen atmosphere with flow rate of 100 mL min~(-1) and with a heating rate of 300℃ min~(-1). Results showed that the bio-oil obtained under the optimum conditions is a useful substitute for fossil fuels or chemicals.
机译:对橄榄饼在400℃至700℃范围内的热解进行了研究。实验在氮气氛下在实验室规模的管式反应器中进行。在大约300℃min〜(-1)的加热速率下,确定了与裂解温度和吹扫气体流速有关的衍生气体,液体和焦炭的产率。随着热解温度的升高,炭的百分含量降低,而气体产物升高。在氮气气氛中,在热解温度约为550°C,流速为100 mL min〜(-1),加热速率为300的条件下,油产品的最大含量达到无灰生物质的39.4 wt%的最大值。 ℃min〜(-1)。结果表明,在最佳条件下获得的生物油可替代化石燃料或化学物质。

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