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Production of bio-oil and bio-char from pyrolysis of sawdust wood waste (SWW)

机译:生产生物油和生物炭,来自锯末木材废料(SWW)的热解

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摘要

This study deals with fast pyrolysis of sawdust wood waste (SWW) at the range of temperature 300-700 °C in a stainless steel tubular reactor. The aim was to experimentally investigate how the temperature, the particle size, the nitrogen flow rate (N2) and the heating rate affect bio-oil, bio-char and gaseous products. These parameters were varied in the ranges of 5-20 °C/min, below 0.1-1.5 mm and 20-200 mL min~', respectively. It was concluded that both the temperature and heating rate have a significant effect on both yield of bio-oil and bio-char resulting from pyrolysis of SWW. The liquid products obtained at various pyrolysis temperatures were subjected into column chromatography after removal of asphaltenes (hexane insoluble). Obtained bio-oils (maltenes or hexane soluble) were classified as aliphatic, aromatic and polar sub-fractions. The maximum of bio-oil yield of 39.5 wt% was obtained at a pyrolysis temperature of 500 °C, particle size between 0.5 and 1 mm, nitrogen flow rate (N2) of 100 mL min-1 and heating rate of 5 °C/min. Liquid product (bio-oil) obtained under the most suitable and optimal condition was characterized by elemental analysis, Nuclear magnetic resonance spectroscopy ('H NMR and 13C NMR), Fourier transformed infraredspectroscopy (FT-IR). The analysis of liquid showed that bio-oil from SWW could be a potential source of renewable fuel production and value added chemical. The yield of char generally decreases with increasing the temperature, the char yield passes from54.61 to 29.47 wt% at the heating rate of 5 °C/min and from 50.01 to 24.5 wt% at the heating rate of 20 °C/min at the same range of temperature(300-700 °C). Solid products (bio-char) obtained in the presence of nitrogen (N2) contain a very important percentage of carbon and high heating values (HHVs).
机译:本研究采用不锈钢管反应器,在300-700°C的温度范围内对锯末木材废料(SWW)进行快速热解。目的是通过实验研究温度、颗粒大小、氮气流量(N2)和加热速率对生物油、生物炭和气体产品的影响。这些参数分别在5-20°C/min、0.1-1.5 mm以下和20-200 mL min~'范围内变化。结果表明,温度和升温速率对SWW热解产生的生物油和生物炭的产率都有显著影响。在不同热解温度下获得的液体产物在去除沥青质(不溶于己烷)后进行柱色谱分析。获得的生物油(可溶于麦芽烯或己烷)分为脂肪族、芳香族和极性亚组分。在500°C的热解温度、0.5至1 mm的粒径、100 mL min-1的氮气流速(N2)和5°C/min的加热速率下,生物油的最大产率为39.5 wt%。通过元素分析、核磁共振谱(H NMR和13C NMR)对在最合适和最佳条件下获得的液体产物(生物油)进行了表征,傅里叶变换红外光谱(FT-IR)。液体分析表明,SWW产生的生物油可能是可再生燃料生产和增值化学品的潜在来源。焦炭产率一般随温度的升高而降低,焦炭产率从54。在相同的温度范围(300-700°C)下,以5°C/min的加热速率加热61至29.47 wt%,以20°C/min的加热速率加热50.01至24.5 wt%。在氮气(N2)存在下获得的固体产物(生物炭)含有非常重要的碳百分比和高热值(HHV)。

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  • 作者单位

    Organic Chemistry and Analytical Laboratory (LCOA) Faculty of Sciences and Techniques (FST) University of Sultan Moulay Slimane (USMS) 23000 Beni-Mellal Morocco;

    Organic Chemistry and Analytical Laboratory (LCOA) Faculty of Sciences and Techniques (FST) University of Sultan Moulay Slimane (USMS) 23000 Beni-Mellal Morocco;

    Organic Chemistry and Analytical Laboratory (LCOA) Faculty of Sciences and Techniques (FST) University of Sultan Moulay Slimane (USMS) 23000 Beni-Mellal Morocco;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业工程;
  • 关键词

    energy; biomass; pyrolysis; sawdust wood waste; bio-oil; bio-char;

    机译:能量;生物量;热解;木屑木材废料;生物油;生物炭;
  • 入库时间 2022-08-20 19:06:35

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