Study of possible options for technological schemes of gas fractionation plants for a wide fraction of light hydrocarbons

M. V. Voronov, S. V. Popov, O. V. Khabibrakhmanov, A. D. Yulin
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Abstract

Analysis of the component composition of the ethane-propane fraction obtained from the wide fraction of light hydrocarbons (NGL) at operating gas fractionation plants shows that due to the insufficiently clear separation of light hydrocarbons С1÷С3, a high propane content is observed in the ethane-propane fraction (EPF). SPE is used in the pyrolysis plant, where ethylene is obtained as the target intermediate, therefore, under industrial conditions, it is necessary to ensure the maximum possible extraction of propane from the SPE composition. In the technological scheme of operating plants, SME is obtained using a fractionating absorber or a distillation column. In both versions, the SME is taken from the top of the apparatus, and the bottom product containing C3+ hydrocarbons is fed for further fractionation. In order to analyze the operation of gas fractionation plants in the Honeywell UniSim Design software environment, a plant model was developed. A computational experiment using various industrial values of the hydrocarbon content in NGL showed that in order to achieve the maximum possible extraction of propane from the PSP, it is necessary to involve all the propane in the PSP obtained on the fractionating absorber (or distillation column) so that only the C4+ hydrocarbon fraction is in the bottom product of the apparatus for further separation. The ESP obtained in this way is sent to an additional distillation column, which provides a clear separation into ethane (distillate of the column) and propane (bottom product of the column) fractions, while in the obtained fractions concentration indicators are achieved that improve the corresponding indicators of standards according to TU 0272-022- 00151638-99. The calculated regime parameters and fractional compositions of technological flows of apparatuses are given, the modified scheme of the installation is described. The developed models can be used to optimize the operating modes of industrial devices and design new installations, as well as to train technologists in the methods of qualified process management.
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大馏分轻烃气体分馏装置技术方案的可能选择研究
对正在运行的天然气分馏装置从轻烃宽馏分(NGL)中获得的乙烷-丙烷馏分的组分组成分析表明,由于轻烃С1÷С3分离不够清晰,乙烷-丙烷馏分(EPF)中丙烷含量较高。SPE用于热解装置,乙烯作为目标中间体得到,因此,在工业条件下,有必要确保从SPE组成物中最大限度地提取丙烷。在运行装置的工艺方案中,采用分馏吸收塔或精馏塔获得SME。在这两个版本中,SME从设备的顶部取出,含有C3+碳氢化合物的底部产物被送入进一步分馏。为了在Honeywell UniSim Design软件环境下分析气体分馏装置的运行情况,开发了一个装置模型。利用NGL中烃类含量的各种工业值进行的计算实验表明,为了最大限度地从PSP中提取丙烷,有必要将分馏吸收塔(或精馏塔)上获得的PSP中的所有丙烷都纳入其中,这样只有C4+烃类馏分在装置的底部产物中进行进一步分离。用这种方法得到的ESP送至另一精馏塔,将乙烷(塔顶馏出物)和丙烷(塔底产物)馏分分离清楚,得到的馏分中的浓度指标提高了TU 0272-022- 00151638-99标准的相应指标。给出了计算得到的体制参数和装置工艺流程的分数组成,并介绍了装置的改造方案。开发的模型可用于优化工业设备的操作模式和设计新装置,以及培训技术人员的合格过程管理方法。
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8 weeks
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