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Simulation Model of Pyrolysis Biofuel Yield Based on Algal Components and Pyrolysis Kinetics

机译:基于藻类成分和热解动力学的热解生物燃料产量模拟模型

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摘要

Yield and composition of pyrolysis oil were tested by fixed bed pyrolysis reactor and GC-MS. Algae pyrolysis kinetics was also calculated by Lorentzian fitting multi-heating rate method with R2 > 0.98. Their activation energy was ranged from 94 to 216 kJ/mol and most of fitting peaks could be described by the random nucleation followed by growth mechanism. Higher bio-oil yield of 35.0 % for Chlorella biomass and 40.6 % for Spirulina biomass at 425 °C have been obtained, while it is 49.4 % at 450 °C for Chrysophyceae biomass. The main compounds of pyrolysis oil included aliphatic and alicyclic hydrocarbons, aromatic hydrocarbons, nitrogenated compounds (nitriles, amines, amines, and N-heterocyclic compounds), carboxylic acids, ketones, alcohols, furans, phenols, ester, and others. Carbon number distribution of bio-oil is similar to that of gasoline and diesel, and fatty acid has an influence on bio-oil carbon distribution. Components biofuel model based on algal biomass component was established and the difference between simulated value and experiment value is less 3.58 %. Kinetics biofuel model based on fitting peak areas in pyrolysis kinetics was established and the difference between simulated value and experiment value is less 3.45 %. Pyrolysis oil yield can be quickly and efficiently achieved with these two models.
机译:通过固定床热解反应器和GC-MS测试热解油的产率和组成。藻类热解动力学也通过洛伦兹拟合多重加热速率法计算,R2> 0.98。它们的活化能范围从94到216 kJ / mol,大多数拟合峰可以通过随机成核和随后的生长机理来描述。在425°C下,绿藻的生物油产率更高,螺旋藻生物量的生物油产率更高,为40.6%,而金藻科生物质的生物油产率在450°C下为49.4%。热解油的主要化合物包括脂族和脂环族烃,芳族烃,含氮化合物(腈,胺,胺和N杂环化合物),羧酸,酮,醇,呋喃,酚,酯等。生物油的碳数分布与汽油和柴油相似,而脂肪酸对生物油的碳分布有影响。建立了基于藻类生物质成分的成分生物燃料模型,模拟值与实验值之差小于3.58%。建立了基于热解动力学拟合峰面积的动力学生物燃料模型,模拟值与实验值之差小于3.45%。使用这两种模型可以快速有效地实现热解油的产率。

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  • 来源
    《Bioenergy research 》 |2014年第4期| 1293-1304| 共12页
  • 作者单位

    1.School of Energy and Power Engineering Energy and Environment International Center Beihang University 37 Xueyuan Rd. Haidian District Beijing People’s Republic of China;

    1.School of Energy and Power Engineering Energy and Environment International Center Beihang University 37 Xueyuan Rd. Haidian District Beijing People’s Republic of China;

    1.School of Energy and Power Engineering Energy and Environment International Center Beihang University 37 Xueyuan Rd. Haidian District Beijing People’s Republic of China;

    1.School of Energy and Power Engineering Energy and Environment International Center Beihang University 37 Xueyuan Rd. Haidian District Beijing People’s Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Algal biomass Kinetics Biofuel yield model Pyrolysis biofuel;

    机译:藻类生物质动力学生物燃料产率模型热解生物燃料;

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