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Pyrolysis of spent coffee grounds using a screw-conveyor reactor

机译:使用螺旋输送反应器将废咖啡渣进行热解

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The fast pyrolysis of spent coffee grounds using a compact, transportable, screw conveyor reactor for producing bio-oil was studied. A two-factor, five-level, central composite response surface experiment was completed to formulate a statistical model that relates reactor temperature (429-550 degrees C) and residence time (23-42 s, controlled by the screw rotation rate) to bio-oil yield and quality. Regression analysis of model fits with experimental data showed that temperature and residence time had a significant effect (p < 0.05) on bio-oil yield. Highest bio-oil yield (61.8%) was observed at 500 degrees C while the highest char yield (20.6% w/w) was produced at the lowest temperature of 429 degrees C. Bio-oil yields increased with screw speed and decreasing residence time. The model predicted a maximum liquid yield of 61.7% and an accompanying char yield of 17.1% at 505 degrees C (778 K) and 70 rpm. In addition to containing oxygenated organic compounds typical of bio-oils, spent coffee bio-oil also contains more hydrophobic compounds (>20% peak area) such as fatty acids, fatty acid esters, medium-chain paraffins, olefins, and caffeine. Because of the abundance of spent coffee grounds and the quality of its bio-oil, this waste stream offers potential as a valuable bioenergy feedstock. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了使用紧凑,可运输的螺旋输送机反应器对废咖啡渣进行快速热解以生产生物油的方法。完成了一个两因素,五个级别的中央复合响应表面实验,以建立一个统计模型,该模型将反应堆温度(429-550摄氏度)和停留时间(23-42 s,由螺杆转速控制)与生物-油的产量和质量。模型拟合与实验数据的回归分析表明,温度和停留时间对生物油产量具有显着影响(p <0.05)。在500摄氏度下观察到最高的生物油收率(61.8%),而在最低温度429摄氏度下产生了最高的木炭收率(20.6%w / w)。生物油收率随着螺杆速度的增加和停留时间的减少而增加。该模型预测在505摄氏度(778 K)和70 rpm下的最大液体产率为61.7%,伴随的焦炭产率为17.1%。废咖啡生物油除了含有典型的生物油含氧有机化合物外,还含有更多的疏水性化合物(峰面积大于20%),例如脂肪酸,脂肪酸酯,中链烷烃,烯烃和咖啡因。由于咖啡渣余量丰富且其生物油的质量,这种废物流具有作为有价值的生物能源原料的潜力。 (C)2015 Elsevier B.V.保留所有权利。

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