...
首页> 外文期刊>Environmental Progress & Sustainable Energy >Crystallization of hydrogenated biodiesel–ethanol–diesel blend based on the solid–liquid equilibrium theory
【24h】

Crystallization of hydrogenated biodiesel–ethanol–diesel blend based on the solid–liquid equilibrium theory

机译:结晶的氢化biodiesel-ethanol-diesel融合的基础上固液平衡理论

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Abstract Hydrogenated biodiesel–ethanol–diesel is a novel ternary fuel blend containing easily volatile, moderately volatile, and hardly volatile components. In this study, based on the thermodynamic phase equilibrium, a model was established to depict the phase transition under changeable pressure and temperature conditions. The crystallization behavior of hydrogenated biodiesel–ethanol–diesel ternary blends was estimated, and the influence of ethanol on the low temperature performance of ternary blends was interpreted in contrast to that of hydrogenated biodiesel–diesel binary blends. It was revealed that the crystallization points of ternary blends such as PHC5E5 (5% partially hydrogenated cottonseed biodiesel?+?5% ethanol?+?90% diesel), PHC10E10 (10% partially hydrogenated cottonseed biodiesel?+?10% ethanol?+?80% diesel), and PHC15E15 (15% partially hydrogenated cottonseed biodiesel?+?15% ethanol?+?70% diesel) were reduced by 4.5?K, 5.7?K and 6.1?K respectively as compared with their countering binary blends. Declines of 4.3?K, 5.3?K and 6.1?K in crystallization points were also demonstrated between partially hydrogenated soybean biodiesel ternary blends and binary blends. Meanwhile, apparent drops in crystallization quantities were perceived between ternary blends and binary blends under different temperatures. The role of ethanol affecting the crystallization of ternary blends was then comprehensively analyzed. At the onset of crystallization, ethanol was simultaneously precipitated in a eutectic manner with compositions of high melting point, impeding the tendency of nucleation and lagging the growth of solid crystals. In addition, most of non‐crystallized ethanol distributed in liquid fuel as well as the interstices of the network and the plate crystal. It beneficially increased the solubility of the crystalline composition in the base liquid to some extent. That is to say, the crystallization points and crystallization quantities were evaluated based on the solid–liquid equilibrium theory, which can provide an effective and reliable method for optimizing the low temperature performance of hydrogenated biodiesel.
机译:摘要氢化biodiesel-ethanol-diesel是一个包含轻松小说三元混合燃料不稳定,适度波动,几乎没有挥发组分。热力学相平衡模型建立了描述下的相变多变的压力和温度条件。氢化的结晶行为biodiesel-ethanol-diesel三元混合是估计的,和乙醇的影响三元混合物的低温性能解释与氢化biodiesel-diesel二进制混合。三元混合物的结晶点如PHC5E5(5%部分氢化棉籽生物柴油+ ?PHC10E10(10%部分氢化棉籽油生物柴油+ ?PHC15E15(15%部分氢化棉籽油生物柴油+ ?减少了4.5 ?相比之下,他们的反击二进制混合。下降为4.3 ?结晶点也被证明之间的部分氢化大豆生物柴油三元混合和二进制混合。结晶量明显下降三元混合和二进制之间的感知不同温度下混合。乙醇影响三元的结晶混合然后全面分析。开始结晶,乙醇同时沉淀共晶的方式成分的熔点高,阻碍成核和生长落后的趋势固体晶体。非优先结晶乙醇分布在液体燃料以及网络的间隙和板晶体。水晶成分的溶解度基液体在某种程度上。结晶点和结晶量进行评估的基础上固液平衡理论,可以提供一个有效的和可靠的方法优化的低温性能氢化生物柴油。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号