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首页> 外文期刊>Energy & fuels >Vapor-Liquid Equilibrium (VLE)-Based Modeling for the Prediction of Operating Regimes in a Heavy Gas Oil Hydrotreater
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Vapor-Liquid Equilibrium (VLE)-Based Modeling for the Prediction of Operating Regimes in a Heavy Gas Oil Hydrotreater

机译:基于汽液平衡(VLE)的重汽油加氢处理装置运行状态预测模型

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摘要

In a pilot-plant trickle-bed hydrotreating reactor, ideal operating regimes (plug flow, full catalyst wetting, and absence of reactor wall effects) are desirable to generate reliable, reproducible, and representative data for kinetics studies and commercial scale-up. In this study, the operating regimes of a heavy gas oil pilot-plant hydrotreating reactor were investigated under operating conditions of commercial interest using real petroleum feedstocks. Vapor-liquid equilibrium experiments and calculations were performed to accurately predict the fluid flows and the physical/transport properties of the vapor and liquid phases. These properties were subsequently used to predict the operating regimes under various operating conditions and to generate a map of operating conditions within which the desired operating regimes can be maintained.
机译:在中试滴流床加氢处理反应器中,理想的操作方式(活塞流,催化剂完全浸润和没有反应器壁效应)对于生成可靠的,可重复的和代表性的动力学研究和商业规模化数据是理想的。在这项研究中,研究了重瓦斯油中试装置加氢处理反应器在实际商业条件下使用实际石油原料的运行方式。进行汽液平衡实验和计算以准确预测流体流动以及汽相和液相的物理/传输特性。这些特性随后被用于预测各种工况下的工况,并生成可以维持所需工况的工况图。

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