山楂热解合成生物油转化为生物燃料及替代绿色能源生物柴油的研究

H. E. Farissi, F. Mansouri, R. Lakhmiri, A. Albourine, M. Safi, J. Brigui, J. C. D. Silva
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引用次数: 1

摘要

生物质的增值作为第二代生物燃料的来源是未来的项目之一。在最佳温度和加热速度条件下,利用固定床热裂解的方法,将山竹种子和壳作为生物燃料的来源,取得了令人鼓舞的结果。通过XPS、元素分析、FTIR等不同的分析方法对所获得的液体进行了表征,丰富了研究内容。在升温速率为21℃min - 1和40℃min - 1的450℃条件下热解得到的两种种子及其壳生物油的热值分别为37.05和37.93。这项工作包括通过将其油转化为生物燃料(生物柴油)来对森林废弃物之一(在本例中是地中海生态系统中普遍分布的灌木cistus ladaniferus的种子)进行再生。这些垃圾的固定床热解在温室气体排放方面也具有低环境影响的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of bio-oils synthesized by pyrolysis from cistus ladaniferus transformed into biofuel and biodiesel used as an alternative green energy
The valorization of biomasses as a source of second generation biofuels is one of the future projects. The valorization, of seeds and shells of cistus ladaniferus as a source of biofuel by the thermal way, pyrolysis in fixed bed under the optimal conditions of temperature and heating speed present very encouraging results. The characterization of the liquid obtained by different analytical methods such as XPS, Elemental Analysis, FTIR, enriches the study. The calorific values of the two bio-oils of seeds and their shells obtained by pyrolysis at 450°C with a heating rate of 21°C min−1 and 40°C min−1 are of the order of 37.05 and 37.93 respectively. This work consisted in valorizing one of the forest rejects, in this case the seeds of cistus ladaniferus which are shrubs generally distributed in the Mediterranean ecosystem, by transforming its oil into biofuel (biodiesel). The fixed bed pyrolysis of these rejects also has the advantage of having a low environmental impact in terms of greenhouse gas emissions.
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