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Computer aided simulation and process design of a hydrogenation plant using ASPEN HYSYS 2006.

机译:使用ASPEN HYSYS 2006的加氢站的计算机辅助仿真和工艺设计。

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摘要

Nowadays, computers are extensively used in engineering modeling and simulation fields in many different ways, one of which is in chemical engineering. Simulation and modeling of a chemical process plant and the sizing of the equipment with the assistance of computers, is of special interests to process engineers and investors. This is due to the ability of high speed computers, which make millions of mathematical calculations in less than a second associated with the new powerful software that make the engineering calculations more reliable and precise by making very fast iterations in thermodynamics, heat and mass transfer calculations. This combination of new technological hardware and developed software enables process engineers to deal with simulation, design, optimization, control, analysis etc. of complex plants, e.g. refinery and petrochemical plants, reliably and satisfactorily.;Hydrogenation process is an example of the complex plants, to which a special attention is made by process designers and manufacturers. This process is used for upgrading of hydrocarbon feeds containing sulfur, nitrogen and/or other unsaturated hydrocarbon compounds. In oil and gas refineries, the product of steam cracking cuts, which is valuable, may be contaminated by these unwanted components and thus there is a need to remove those pollutants in downstream of the process. Hydrogenation is also used to increase the octane number of gasoline and gas oil.;Sulfur, nitrogen and oxygen compounds and other unsaturated hydrocarbons are undesired components causing environmental issues, production of by-products, poisoning the catalysts and corrosion of the equipment. The unsaturated C=C double bonds in dioleffinic and alkenyl aromatics compounds, on the other hand, cause unwanted polymerization reactions due to having the functionality equal to or greater than 2.;Hydrogenation process of the undesired components will remove those impurities and/or increase the octane number of aforementioned hydrocarbons. This process is sometimes referred to as "hydrotreating"; however, "upgrader" is a general word and is, of course, of more interest.;The main chemical process simulators used for static and dynamic simulations are ASPEN PLUS, ASPEN HYSYS, PRO II, and CHEMCAD. The basic design concepts of all simulators are the same and one can fairly use all simulators if one is expert in any of them.;In this thesis, a hydrogenation process plant was designed on the basis of the chemistry of hydrocarbons, hydrogenation reaction mechanism, detailed study of thermodynamics and kinetics and then a steady-state simulation and design of the process is carried out by ASPEN HYSYS 2006 followed by design evaluation and some modifications and conclusions.;Hydrogenation reaction has a complicated mechanism. It has been subjected to hot and controversial debates over decades. Many kinetic data are available, which contradict one another. Among them, some of the experimental researches utilize good assumptions in order to simplify the mechanism so that a "Kinetic Reaction" modeling can be employed. This thesis takes the benefit of such research works and applies some conditions to approve the validity of those assumptions. Meanwhile, some other papers from reputed companies such as IFP are used in order to make sure that the present simulation and design is a practical one and applicable in real world.;On the basis of this detailed study of reaction modeling and kinetic data, a hydrogenation plant was designed to produce and purify over 98 million kilograms of different products; e.g. Benzene, Toluene, Iso-octane etc. with fairly high purity.
机译:如今,计算机以多种不同方式广泛用于工程建模和仿真领域,其中一种是化学工程。化学过程工厂的仿真和建模以及在计算机的辅助下对设备的规模确定是过程工程师和投资者特别感兴趣的。这是由于高速计算机的能力,它与新的功能强大的软件相关联的不到一秒钟的时间就可以进行数百万次数学计算,该软件通过对热力学,传热和传质计算进行非常快速的迭代,使工程计算更加可靠和精确。 。新技术硬件和已开发软件的这种结合使过程工程师能够处理复杂工厂的仿真,设计,优化,控制,分析等工作。加氢过程是复杂工厂的一个例子,过程设计师和制造商对此特别注意。该方法用于提纯含有硫,氮和/或其他不饱和烃化合物的烃进料。在石油和天然气精炼厂中,有价值的蒸汽裂化产物可能会被这些不需要的成分污染,因此需要在工艺的下游去除那些污染物。氢化还用于增加汽油和粗柴油的辛烷值。硫,氮和氧化合物以及其他不饱和烃是不希望的组分,导致环境问题,副产物的产生,催化剂中毒和设备腐蚀。另一方面,由于二醇官能团和官能团等于或大于2,二醇和烯基芳族化合物中的不饱和C = C双键会引起不希望的聚合反应;不希望的组分的加氢过程会除去这些杂质和/或增加上述烃的辛烷值。该过程有时称为“加氢处理”。但是,“升级程序”是一个通用词,当然更有意义。用于静态和动态模拟的主要化学过程仿真器是ASPEN PLUS,ASPEN HYSYS,PRO II和CHEMCAD。所有模拟器的基本设计概念是相同的,只要其中任何一个都是专家,就可以公平使用所有模拟器。本文根据烃的化学性质,加氢反应机理,设计了加氢工艺装置。详细地研究了热力学和动力学,然后由ASPEN HYSYS 2006对该过程进行了稳态模拟和设计,然后进行了设计评估和一些修改和结论。加氢反应的机理很复杂。数十年来,它一直受到激烈和有争议的辩论。现有许多动力学数据,它们相互矛盾。其中,一些实验研究利用了良好的假设,以简化机理,从而可以采用“动力学反应”模型。本文正是从这样的研究工作中受益的,并运用了一些条件来验证这些假设的有效性。同时,还使用了IFP等知名公司的其他论文,以确保当前的仿真和设计是切实可行的,并且可在现实世界中应用。;在对反应建模和动力学数据进行详细研究的基础上,加氢站的设计目的是生产和提纯9800万公斤以上的不同产品;例如苯,甲苯,异辛烷等,纯度很高。

著录项

  • 作者

    Ordouei, Mohammad Hossein.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Engineering Chemical.
  • 学位 M.A.Sc.
  • 年度 2009
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:17

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