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Simulation of ethane steam cracking with severity evaluation

机译:严重程度评价乙烷蒸汽裂缝的模拟

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Understanding the influence of operating parameters towards cracking severity is paramount in ensuring optimum operation of an ethylene plant. However, changing the parameters in an actual plant for data collection can be dangerous. Thus, a simulation model for ethane steam cracking furnace is developed using ASPEN Plus for the assessment. The process performance is evaluated with cracking severity factors and main product yields. Three severity factors are used for evaluation due to their ease of measurement, which are methane yield (Ymet), Ethylene-Ethane Ratio (EER) and Propylene-Ethylene Ratio (PER). The result shows that cracking severity is primarily influenced by reactor temperature. Operating the furnace with coil outlet temperature ranging between 850°C to 950°C and steam-to-hydrocarbon ratio of 0.3 to 0.5 has led to optimum main product yield.
机译:了解操作参数对破裂严重程度的影响至关重要在确保乙烯植物的最佳运行中是至关重要的。但是,改变实际工厂中的参数数据收集可能是危险的。因此,使用Aspen Plus进行乙烷蒸汽裂化炉的仿真模型进行评估。通过破裂严重因素和主要产品产量进行评估过程性能。由于它们的易于测量,三个严重性因子用于评估,这是甲烷产率(YEME),乙烯 - 乙烷比(EER)和丙烯 - 乙烯比(PER)。结果表明,破裂严重程度主要受反应器温度的影响。使用线圈出口温度操作850°C至950℃,蒸汽与烃比为0.3至0.5,导致最佳的主要产物产率。

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