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Pyrolysis of Wood and Bark in an Auger Reactor: Physical Properties and Chemical Analysis of the Produced Bio-oils

机译:俄歇反应器中木材和树皮的热解:产生的生物油的物理性质和化学分析

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摘要

Bio-oil was produced at 450 ℃ by fast pyrolysis in a continuous auger reactor. Four feed stocks were used: pine wood, pine bark, oak wood, and oak bark. After extensive characterization of the whole bio-oils and their pyrolytic lignin-rich ethyl acetate fractions by gas chromatography/mass spectrometry (GC/MS), gel permeation chromatography (GPC), calorific values, viscosity dependences on shear rates and temperatures, elemental analyses, ~1H and ~(13)C NMR spectroscopy, water analyses, and ash content, these bio-oils were shown to be comparable to bio-oils produced by fast pyrolysis in fluidized bed and vacuum pyrolysis processes. This finding suggests that portable auger reactors might be used to produce bio-oil at locations in forests to generate bio-oil on-site for transport of the less bulky bio-oil (versus raw biomass) to biorefineries or power generation units. The pyrolysis reported herein had lower heat transfer rates than those achieved in fluidized bed reactors, suggesting significant further improvements are possible.
机译:在连续螺旋反应器中通过快速热解在450℃产生生物油。使用了四种饲料原料:松木,松树皮,橡木和橡树皮。通过气相色谱/质谱(GC / MS),凝胶渗透色谱(GPC)对整个生物油及其富含热解木质素的乙酸乙酯馏分进行广泛表征后,发热量,剪切速率和温度的粘度依赖性,元素分析,〜1H和〜(13)C NMR光谱,水分析和灰分含量,这些生物油被证明与流化床和真空热解过程中快速热解产生的生物油相当。这一发现表明,便携式螺旋钻反应堆可用于在森林中的某些地方生产生物油,以现场产生生物油,以将体积较小的生物油(相对于原始生物质)运输到生物炼油厂或发电装置。本文报道的热解的传热速率比流化床反应器中的传热速率低,这表明可能进一步改进。

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