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Torrefaction operation and optimization of microalga residue for energy densification and utilization

机译:微粉藻残的强化操作和能量浓缩与利用的优化

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The torrefaction characteristics of a microalga (Chlorella vulgaris ESP-31) residue in inert (N-2) and non-inert (CO2) atmospheres at temperatures of 200-300 degrees C with the durations of 15-60 min are investigated. A parameter of torrefaction severity index (TSI) is employed to account for the thermal degradation phenomena. The results indicate that the enhancement factor of higher heating value, energy yield, and atomic H/C and O/C ratios versus TSI are strongly characterized by a linear relationship. The solid and energy yields of the residue torrefied in CO2 are lower than in N-2 inasmuch as the thermal degradation in the former is more active, presumably due to the intensified reaction of CO2 with volatile matters in the biomass. At a given energy yield, the microalga residue torrefied at a lower temperature accompanied by a longer duration results in a fuel with higher energy densification and lower solid yield, thereby rendering the better torrefaction quality. On the other hand, a higher efficiency of energy utilization for upgrading the biomass can be achieved at a higher temperature along with a shorter duration. It is thus concluded that the optimization of torrefaction operation depends on the requirement of energy densification or energy utilization on fuel. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了在惰性气体(N-2)和非惰性气体(CO2)中在200-300摄氏度的温度下持续15-60分钟的时间,微藻(Chlorella vulgaris ESP-31)残留物的烘焙特性。烘焙严重性指数(TSI)的参数用于说明热降解现象。结果表明,较高的发热量,能量产率以及原子H / C和O / C比TSI的增强因子具有很强的线性关系。由于前者中的热降解更活跃,因此在CO2中焙烧的残渣的固体和能量产率低于N-2,这大概是由于CO2与生物质中挥发性物质的强化反应所致。在给定的能量产率下,在较低的温度下焙烧的微藻残渣伴随较长的持续时间,导致燃料具有更高的能量密度和更低的固体产率,从而提供更好的焙烧质量。另一方面,可以在较高的温度下以及较短的持续时间下实现更高的能量利用效率以用于升级生物质。因此得出结论,烘焙操作的优化取决于能量致密化或对燃料的能量利用的要求。 (C)2015 Elsevier Ltd.保留所有权利。

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