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Application of the SAFT equation of state to biomass fast pyrolysis liquid

机译:SAFT状态方程在生物质快速热解液中的应用

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A practical method has been developed for determining parameters for the statistical associating fluid theory (SAFT) equation of state. Critical temperature, pressure, and density as well as normal boiling point are used to determine parameters for associating compounds, especially sugars. The method has been verified by the description of sugar solubilities in water and in mixed solvents. The predicted and correlated results are in good agreement with the experimental data of systems containing D-fructose, D-glucose, and sucrose. The SAFT model has been further applied to a sugar-containing system in modeling of the recovery of chemicals, such as the sugars levoglucosan and hydroxyacetaldehyde, from a pyrolysis liquid produced from biomass fast pyrolysis. At high temperatures, the two sugars are instable. The modeling of separation of the sugars has been carried out at temperatures 50 degreesC and 60 degreesC and in a pressure range of 0.01-0.03 bar. Under these conditions, the effect of pressure on the separation is larger than that of temperature. A lower pressure and a higher water content of the pyrolysis liquid are favourable for the separation. With pressure decreasing, the effect of water content on the separation is becoming less significant. (C) 2004 Elsevier Ltd. All rights reserved.
机译:已经开发出一种实用的方法来确定统计缔合流体理论(SAFT)状态方程的参数。临界温度,压力和密度以及正常沸点用于确定化合物(尤其是糖)的缔合参数。该方法已通过糖在水和混合溶剂中的溶解度的描述得到了验证。预测和相关的结果与包含D-果糖,D-葡萄糖和蔗糖的系统的实验数据非常吻合。 SAFT模型已进一步应用于含糖系统,用于建模从生物质快速热解产生的热解液中回收化学物质(例如糖左旋葡聚糖和羟基乙醛)的过程。在高温下,这两种糖是不稳定的。糖的分离建模已在50摄氏度和60摄氏度的温度以及0.01-0.03巴的压力范围内进行。在这些条件下,压力对分离的影响大于温度的影响。热解液体的较低压力和较高水含量有利于分离。随着压力的降低,水分对分离的影响变得不那么明显。 (C)2004 Elsevier Ltd.保留所有权利。

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