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MODEL PREDICTIVE CONTROL FOR PRODUCTION OF ULTRA-LOW SULFUR DIESEL IN A HYDROTREATING PROCESS

机译:水闸过程中超低硫柴油生产的模型预测控制

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摘要

ABSTRACT There is a continual desire around the world to reduce the sulphur content of diesel fuel to ultra-low levels (below 10 ppm) due to environmental concerns and the intention of improving air quality and lowering harmful exhaust emissions of diesel engines. In this work, a hydrodesulfurization unit fed with multiple diesel streams was addressed using a phenomenological mathematical model aiming to produce Ultra-Low Sulfur Diesel (ULSD). A three-phase model of a trickle-bed reactor was considered. A model-based predictive control strategy (MPC) was implemented with the objective of controlling the sulfur concentration at the exit of the reactor, manipulating the flow rates of the oils entering the system, the superficial velocity of the gas and the temperature of the load in the presence of disturbances in the concentration of organic sulfur compounds in the fed oils. It was observed that the control strategy reduced the contaminant content to the specification range of diesel S10.
机译:摘要有在世界各地持续希望减少柴油燃料中的硫含量降至超低水平(低于10ppm)由于环境问题和改善空气质量和降低柴油发动机的有害废气排放量的目的。在这项工作中,具有多个柴油流进料到加氢脱硫单元,用于使用一个唯象数学模型旨在生产超低硫柴油(ULSD)中的溶液处理。滴流床反应器的三相模型考虑。基于模型的预测控制策略(MPC)用控制在反应器的出口处的硫浓度,操纵油的流量进入系统,气体的空塔速度和负载的温度的目的实施在干扰中的在进料油有机硫化合物的浓度存在。据观察,该控制策略降低了污染物含量柴油S10的规格范围内。

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