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Biomass co-pyrolysis: Effects of blending three different biomasses on oil yield and quality

机译:生物质共热解:混合三种不同生物质对油产量和质量的影响

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In the present study, pyrolysis and co-pyrolysis of sugarcane bagasse, poppy capsule pulp, and rice husk were conducted in a fixed bed reactor at 550⁰C in nitrogen atmosphere. The moisture (5%–8%), ash (4%–17%), volatile matter (60%–76%), and fixed carbon analyses (11%–24%) of the utilized biomass were conducted. The decomposition behavior of biomasses due to the heat effect was investigated by thermogravimetric analysis/differential thermal analysis . In the pyrolysis of biomasses separately, the highest bio-oil yield was obtained with sugarcane bagasse (27.4%). In the co-pyrolysis of the binary blends of biomass, the highest bio-oil yield was obtained with the rice husk and sugarcane bagasse blends. While the mean bio-oil yield obtained with the separate pyrolysis of these two biomasses was 23.9%, it was observed that the bio-oil yield obtained with the co-pyrolysis of biomass blends was 28.4%. This suggested a synergistic interaction between the two biomasses during pyrolysis. It was observed that as the total ash content in the biomasses used in the pyrolysis increased, the bio-oil yield decreased, and the solid product content increased. Characterization studies of bio-oils were conducted by Fourier-transform infrared spectroscopy, gas chromatography–mass spectrometry (GC-MS), and hydrogen-1 nuclear magnetic resonance analyses. Results of these studies revealed that, all bio-oils were mainly composed of aliphatic and oxygenated compounds. The calorific values of bio-oils were determined by calorimeter bomb. Based on the GC-MS, the bio-oils with high fatty acid and its ester content also had high calorific values. The highest calorific value was 29.68 MJ kg~(-1), and this was obtained by pyrolysis of poppy capsule and sugarcane bagasse blend.
机译:在本研究中,甘蔗渣,罂粟荚果浆和稻壳的热解和共热解是在氮气气氛下于550°C的固定床反应器中进行的。进行了利用生物质的水分(5%–8%),灰分(4%–17%),挥发性物质(60%–76%)和固定碳分析(11%–24%)。通过热重分析/差热分析研究了生物质的热分解行为。分别在生物质的热解中,甘蔗渣获得了最高的生物油产率(27.4%)。在生物质的二元混合物的共热解过程中,稻壳和甘蔗渣混合物能获得最高的生物油产量。虽然通过这两种生物质的单独热解获得的平均生物油产率为23.9%,但观察到通过生物质混合物的共热解获得的生物油产率为28.4%。这表明热解过程中两种生物量之间存在协同作用。观察到,随着用于热解的生物质中总灰分含量的增加,生物油产率降低,固体产物含量增加。通过傅立叶变换红外光谱,气相色谱-质谱(GC-MS)和氢1核磁共振分析对生物油进行了表征研究。这些研究结果表明,所有生物油主要由脂肪族和氧化性化合物组成。用热量计炸弹测定生物油的热值。基于GC-MS,具有高脂肪酸及其酯含量的生物油也具有很高的热值。最高热值为29.68 MJ kg〜(-1),这是通过罂粟胶囊和甘蔗渣共混物的热解获得的。

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