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Conversion of Wood Waste to be a Source of Alternative Liquid Fuel Using Low Temperature Pyrolysis Method

机译:使用低温热解法将木材废料转化为替代液体燃料的源泉

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摘要

Conversion of wood waste into bio-oil with low temperature pyrolysis method has been successfully carried out using tubular transport reactors. Pyrolysis carried out at temperatures of 250-300°C without using N2 gas. Bio-oil purified by a fractionation distillation method to remove water and light fraction compounds. The materials obtained from different types of wood waste, namely: Randu wood (Ceiba pentandra), Sengon wood (Paraserianthes falcataria), Coconut wood (Cocos nucifera), Bangkirei wood (Shorea laevis Ridl), Kruing wood (Dipterocarpus) and Meranti wood (Shorea leprosula). Bio-oil products are analyzed for their properties and characteristics, namely the nature of density, acidity, high heat value (HHV), and elements contained in bio-oil such as carbon, nitrogen and sulfur content based on SNI procedures, while bio-oil chemical compositions are investigated using Gas Chromatography Mass Spectroscopy (GC-MS). The maximum yield of bio-oil products occurs at 300°C by 40%. Bio-oil purification by fractional distillation method can produce purity of 16-31% wt. The characterization results of the chemical content of bio-oil showed that bio-oil of methyl formate, 2,6-dimetoxy phenol, 1,2,3 trimethoxy benzene, levoglucosan, 2,4-hexadienedioic acid and 1,2- benzenediol.
机译:木材废料为生物油与低温热解方法转化已经成功地进行了使用管状输送反应器。热解在250-300℃的温度下进行,而不使用N 2气体。生物油通过分馏蒸馏法除去水和轻馏分的化合物进行纯化。的Randu木(吉贝),Sengon木(南洋楹),椰子木(椰子),Bangkirei木(娑罗蟾RIDL),Kruing木(龙脑)和柳安木(:从不同类型的木材废料,即所得到的材料望天树leprosula)。生物油产品分析包含在生物油,例如碳,氮和基于SNI程序硫含量它们的性质和特性,密度,酸度,热值高(HHV)的即性质,和元素,而生物油化学组合物通常使用气相色谱 - 质谱(GC-MS)分析。的生物油产品的最大产率40%发生在300℃。生物油纯化通过分馏法可产生16-31%(重量)的纯度。生物油的化学含量的表征结果显示甲酸甲酯,2,6- dimetoxy苯酚,1,2,3-三甲基苯,左旋葡聚糖,2,4- hexadienedioic酸和1,2-苯二酚的该生物油。

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