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Valorization of citrus wastes by fast pyrolysis in a conical spouted bed reactor

机译:在圆锥形喷头反应器中通过快速热解法对柑橘废物进行增值

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The fast pyrolysis of the juice squeezing derived orange waste has been carried out in a continuous pyrolysis bench-scale plant consisting of a conical spouted bed reactor (CSBR). A prior study performed in thermobalance and a kinetic model consisting of a multi-component mechanism allowed determining the contents of pectin (35 wt%), hemicellulose (16.6 wt%) and cellulose (17.1 wt%), but that of lignin could not be satisfactorily determined as its degradation curve overlapped with other compounds such as sugars, proteins and fats. In the bench scale experiments, the bio-oil yields were very high in the 425-500 degrees C range (close to 55 wt%) due to the suitable features of the CSBR (high heat and mass transfer rates and short residence time of the volatiles), but they are lower for higher temperatures due to the promotion of secondary cracking reactions. Compared to lignocellulosic biomasses, the orange waste produced a bio-oil with more methanol and furfural and less phenolic species, which is an encouraging fact for its stability and valorization by catalytic cracking or steam reforming. The high concentration of CO2 in the gas is a drawback for use for energy production. The char yield (33-27 wt%) was high in the whole range of temperatures studied and its high carbon content (71-73 wt%) and HHV (approximate to 27 MJ kg(-1)) are suitable for use as fuel.
机译:榨汁榨橙汁的快速热解已经在由圆锥形喷头床反应器(CSBR)组成的连续热解实验规模的工厂中进行。先前在热天平中进行的研究和由多组分机理组成的动力学模型可以确定果胶(35 wt%),半纤维素(16.6 wt%)和纤维素(17.1 wt%)的含量,但木质素含量不能确定。令人满意地确定为它的降解曲线与糖,蛋白质和脂肪等其他化合物重叠。在实验室规模的实验中,由于CSBR的合适特性(高传热和传质速率以及较短的停留时间,在425-500摄氏度范围内,生物油产率很高(接近55 wt%))。挥发物),但由于促进了第二次裂解反应,它们在较高温度下较低。与木质纤维素生物质相比,橙色废物产生的生物油中含有更多的甲醇和糠醛,而酚类物质较少,这是令人鼓舞的事实,因为它具有催化裂化或蒸汽重整的稳定性和增值作用。气体中高浓度的CO2是用于能源生产的一个缺点。在所研究的整个温度范围内,焦炭收率(33-27 wt%)都很高,并且其高碳含量(71-73 wt%)和HHV(约27 MJ kg(-1))适合用作燃料。

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