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首页> 外文期刊>Waste and biomass valorization >Application of Novel Pyrolysis Reactor Technology to Concentrate Bio-oil Components with Antioxidant Activity from Tobacco, Tomato and Coffee Ground Biomass
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Application of Novel Pyrolysis Reactor Technology to Concentrate Bio-oil Components with Antioxidant Activity from Tobacco, Tomato and Coffee Ground Biomass

机译:新型热解反应器技术在浓缩烟草,番茄和咖啡渣生物质中具有抗氧化活性的生物油成分中的应用

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To make biomass conversion to fuels more cost-effective, value-added products, including pharmaceuticals, should be produced from agricultural residues. The objectives of this study were (1) to investigate the antioxidant properties of bio-oil produced from the pyrolysis of biomass and (2) to concentrate and identify antioxidant compounds from the bio-oil. This study used a two stage mechanically fluidized reactor (MFR) where the first stage, termed one-dimensional (1-D), produces vapors with varying chemical composition based on the reactor temperature while the two-dimensional (2-D) stage, separates vapor components according to their condensation temperature. Tobacco leaf (Nicotiana tabacum), tomato plant (Solanum lycopersicum) and spent coffee (Coffea arabica) grounds ( 1 mm) were pyrolyzed at a heating rate of 10 A degrees C/min from ambient to 565 A degrees C. The 400-565 A degrees C reactor temperature cuts of all three biomass bio-oils from 1-D MFR pyrolysis produced the highest amount of antioxidant activity compared to the other bio-oil cuts and the 2-D MFR pyrolysis of tomato plant bio-oil collected in the 120 A degrees C condenser had the highest concentration of antioxidants. The 50% 2,2-diphenyl-1-picrylhydrazyl (DPPH) scavenging potential (IC50 value) of the reference compound ascorbic acid and tomato bio-oil cut collected in the 120 A degrees C condenser was 138 A mu g/mL versus 37 mg/mL, respectively. The gas chromatography-mass spectrometry (GC-MS) analysis identified 2-furanmethanol, phenol and glucose in the tomato bio-oil. The findings indicate the two stage MFR process can be used to concentrate antioxidants during bio-oil production by reactor and condenser temperature controls thus providing a useful tool for producing value-added compounds while processing agricultural residues.
机译:为了使生物质转化为燃料更具成本效益,应从农业残留物中生产包括药品在内的增值产品。这项研究的目的是(1)研究生物质热解产生的生物油的抗氧化特性,以及(2)浓缩和鉴定生物油中的抗氧化化合物。这项研究使用了两阶段机械流化反应器(MFR),其中第一阶段(称为一维(1-D))会根据反应堆温度产生具有不同化学成分的蒸气,而第二阶段(2-D)根据其冷凝温度分离蒸气成分。将烟叶(Nicotiana tabacum),番茄植株(Solanum lycopersicum)和废咖啡(Coffea arabica)磨碎物(<1 mm)从环境温度以10 A / min的速率加热到565 A / min。400-一维MFR热解过程中所有三种生物质生物油的565 A反应器温度降低产生的抗氧化剂活性最高,相比之下,其他生物油馏分和番茄中采集的番茄植物生物油的二维MFR热解相比。 120摄氏度的冷凝器具有最高的抗氧化剂浓度。在120°C冷凝器中收集的参考化合物抗坏血酸和番茄生物油馏分的50%2,2-二苯基-1-吡啶并肼基(DPPH)清除潜力(IC50值)为138 Aμg / mL分别为mg / mL。气相色谱-质谱(GC-MS)分析鉴定了番茄生物油中的2-呋喃甲醇,苯酚和葡萄糖。研究结果表明,通过反应器和冷凝器温度控制,两阶段MFR工艺可用于在生物油生产过程中浓缩抗氧化剂,从而提供了一种在加工农业残留物时生产增值化合物的有用工具。

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