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Model-Based Investigation of Catalyst Fouling in the Case of Special Hydrocracking of Sunflower Oil and Kerosene Mixture

机译:向日葵油和煤油混合物特殊加氢裂化的催化剂结垢模型研究

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摘要

In this work, the catalyst deactivation phenomenon in the case of special hydrocracking of sunflower oil and kerosene mixture was analyzed based on experiments and models. Alternative (bio/waste-originated) fuels are becoming more important to reduce the full life cycle environmental pollution of transportation. One of the production possibilities of these alternative fuels is the co-processing (i.e., catalytic quality improvement) of fossil and biobased feedstocks. The huge number of individual chemical components in the system increases the complexity of the investigation. Moreover, from the chemical analysis viewpoint, only some of these can be followed during the experiments. Hence, the models to describe the processes in this system (hydrocracker) are usually based on lumps (i.e., component groups). Experimental data are reported on the special catalytic hydrocracking of sunflower oil and kerosene mixture for the production of high-quality aviation fuel (JET). Experiments were carried out in a fixed-bed tubular reactor over temperatures between 533 and 613 K, pressure ranging from 30 to 70 bar, and liquid hourly space velocities of 1.0 and 2.0 h(-1), employing a Pt/H-mordenite catalyst. The objective of our work is to investigate the existing lumped models that are suitable for describing the experimental data; moreover, while maintaining the possible reaction pathways, model parameters were identified and validated against the measurements. As a result of the analysis of the measurement data, it has been established that in the case of lower liquid load/higher residence time, a deactivation phenomenon, the so-called catalyst fouling, takes place on the applied catalyst. Three catalyst deactivation models were developed and integrated into the kinetic model: the Levenspiel deactivation kinetic model, a simplified Eley Rideal mechanism, and the last one based on competitive adsorption.
机译:在这项工作中,基于实验和模型分析了向日葵油和煤油混合物特殊加氢裂化的情况下的催化剂失活现象。替代(生物/废物来源)燃料对于减少运输的整个生命周期环境污染变得越来越重要。这些替代燃料的生产可能性之一是化石和生物基原料的共处理(即,催化质量改善)。系统中大量的单个化学成分增加了调查的复杂性。而且,从化学分析的观点来看,在实验过程中只能遵循其中的一些。因此,用于描述该系统(加氢裂化器)中的过程的模型通常基于集总(即,组分组)。关于葵花油和煤油混合物的特殊催化加氢裂化用于生产高质量航空燃料(JET)的实验数据已有报道。使用Pt / H-丝光沸石催化剂在固定床管式反应器中于533至613 K的温度,30至70 bar的压力以及1.0和2.0 h(-1)的液体时空速度进行实验。我们工作的目的是研究适用于描述实验数据的现有集总模型;此外,在保持可能的反应路径的同时,识别模型参数并针对测量结果进行验证。分析测量数据的结果表明,在较低的液体负荷/较高的停留时间的情况下,在所施加的催化剂上发生失活现象,即所谓的催化剂结垢。开发了三种催化剂失活模型并将其整合到动力学模型中:Levenspiel失活动力学模型,简化的Eley Rideal机理和最后一个基于竞争吸附的模型。

著录项

  • 来源
    《Energy & fuels》 |2019年第3期|2575-2583|共9页
  • 作者单位

    Univ Pannonia, Dept Proc Engn, H-8200 Veszprem, Hungary;

    Univ Pannonia, Dept Proc Engn, H-8200 Veszprem, Hungary;

    Univ Pannonia, Dept Proc Engn, H-8200 Veszprem, Hungary;

    Univ Pannonia, Dept MOL Hydrocarbon & Coal Proc, H-8200 Veszprem, Hungary;

    Univ Pannonia, Dept MOL Hydrocarbon & Coal Proc, H-8200 Veszprem, Hungary;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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