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Properties of Bio-Oil and Bio-Char Produced by Sugar Cane Bagasse Pyrolysis in a Stainless Steel Tubular Reactor

机译:不锈钢管式反应器中甘蔗甘蔗瓶热解产生的生物油和生物炭的性质

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In this study, compositional analysis of the products obtained by thermal degradation of sugar cane bagasse at various pyrolysis temperatures (300, 350, 400, 450, 500, 550, 600, 650, 700, 750 and 800 °C) and heating rate (5,10, 20 and 50 °C/min) wasstudied. Sugar cane bagasse was pyrolyzed in a stainless steel tubular reactor. The aim of this work was to experimentally investigate how the temperature and heating rate affects liquid and char product yields via pyrolysis and to determine optimal condition to have a better yield of these products. Liquid product (bio-oil) obtained under the most suitable conditions were characterized by elemental analysis, FT-IR, C-NMR and H-NMR. In addition, column chromatography was employed to determine the aliphatic fraction (Hexane Eluate); gas chromatography and FT-IR were achieved on aliphatic fractions. For char product (bio-char), the elemental chemical composition and yield of the char were determined. The results of our work showed that the amount of liquid product (bio-oil) from pyrolysis of sugar cane bagasse increases with increasing the final temperature and decreases with increasing the heating rate. The highest yield of liquid product is obtained from the samples at 550 °C and at the heating rateof 5°C/ min, the maximal average yield achieved almost 32.80 wt%. The yield of char generally decreases with increasing the temperature, the char yield passes from 39.7 wt% to 21 wt% at the heating rate of 5°C/min and from 32 wt% to 17.2 wt% at the heating rate of 50 °C/min at the same range of temperature (300-800 °C). The analysis of bio-oil showed the presence of an aliphatic character and that it is possible to obtain liquid products similar to petroleum from sugar cane bagasse waste. The solidproducts (bio-char) obtained in the presence of nitrogen (N2) contain a very important percentage of carbon and high higher heating values (HHV).
机译:在本研究中,通过在各种热解温度下热降解甘蔗泡沫(300,350,400,450,500,550,600,650,700,750和800°C)和加热速率( 5,10,20和50°C / min)被褥。在不锈钢管式反应器中甘蔗甘蔗棒热解。这项工作的目的是通过热解,通过热解,通过热解性研究温度和加热速率如何影响液体和炭产物的产量,并确定最佳条件以具有更好的这些产品的产量。通过元素分析,FT-IR,C-NMR和H-NMR表征在最合适的条件下获得的液体产物(生物油)。此外,采用柱色谱法测定脂族级分(己烷洗脱液);在脂族级分中达到气相色谱和FT-IR。对于炭产品(生物炭),测定元素化学成分和炭的产率。我们的作品结果表明,随着最终温度的增加,随着加热速率的增加而降低,甘蔗甘蔗瓶的热解的液体产物(生物油)的量增加。液体产物的最高产率是从550℃的样品中获得的,在加热速率下5℃/ min,最大的平均产率达到近32.80wt%。随着温度的增加,炭的产率通常降低,以5℃/ min的加热速率,在50℃的加热速率下,以5℃/ min的加热速率从39.7wt%至21wt%从39.7wt%至21wt%中通过32wt%至17.2重量% / min在相同的温度范围内(300-800°C)。生物油分析显示存在脂族特征,并且可以获得类似于来自甘蔗甘蔗渣的液体产品。在氮气(N 2)存在下获得的固体产量(生物炭)含有非常重要的碳和高加热值(HHV)百分比。

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