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Valorization of algal waste via pyrolysis in a fixed-bed reactor: Production and characterization of bio-oil and bio-char

机译:固定床反应器中热解的藻类废物的算法:生物油和生物炭的生产和表征

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摘要

The aim of the present work is to develop processes for the production of bio-oil andbio-char from algae waste using the pyrolysis at controlled conditions. The pyrolysiswas carried out at different temperatures 400-600 °C and different heating rates 5-50°C/min. The algal waste, bio-oil and bio-char were successfully characterized usingElemental analysis, Chemical composition, TGA, FTIR, 1H-NMR, GC-MS and SEM.At a temperature of 500 °C and a heating rate of 10 °C/min, the maximum yield of biooiland bio-char was found to be 24.10 and 44.01wt%, respectively, which was found tobe strongly influenced by the temperature variation, and weakly affected by the heatingrate variation. Results show that the bio-oil cannot be used as bio-fuel, but can be usedas a source of value-added chemicals. On the other hand, the bio-char is a promisingcandidate for solid fuel applications and for the production of carbon materials.
机译:本工作的目的是使用受控条件的热解,从藻类废物中制定生物油脂和生物油脂的过程。在不同温度下进行400-600°C和5-50℃/ min的不同温度下进行的热解。成功地表征了藻类废物,生物油和生物炭,用元素分析,化学成分,TGA,FTIR,1H-NMR,GC-MS和SEM。温度为500℃,加热速率为10°C / Min,发现生物实向生物焦炭的最大产率分别为24.10和44.01wt%,发现发现受温度变化的强烈影响,并且受加热液变化的弱影响。结果表明,生物油不能用作生物燃料,但可以使用增值化学品来源。另一方面,生物炭是用于固体燃料应用和生产碳材料的承诺制备。

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