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首页> 外文期刊>The Korean journal of chemical engineering >Purification of R-12 for refrigerant reclamation using existing industrial-scale batch distillation: design,optimization,simulation,and experimental studies
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Purification of R-12 for refrigerant reclamation using existing industrial-scale batch distillation: design,optimization,simulation,and experimental studies

机译:使用现有的工业规模批量蒸馏净化R-12用于制冷剂填海:设计,优化,模拟和实验研究

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摘要

Many design variables and constraints, such as operating temperature and pressure of existing batch distillation or operating temperature of existing cooling and heating media, must be verified and satisfied during design and optimization when an existing batch distillation column is utilized for new mixture. The convergence of batch distillation simulation is sensitive with the initial values of these variables. Thus, a new systematic methodology was proposed to design and optimize separation of a new mixture using an existing batch column. The systematic methodology was based on an industrial case study of dichlorodifluoromethane (R-12) reclamation from a waste refrigerant mixture. Based on a comparison of the Pxy diagram with experimental data, "REFerence fluid PROPerties" was selected as the thermodynamic model. After design and optimization using shortcut and rigorous methodologies, the existing batch distillation unit was operated to validate the proposed methodology. The experimented performance match well with the simulated results. Under the optimized operating condition, complete purification of R-12 (purity=99.5%) was achieved experimentally after 28.3 h. The advantages and disadvantages of the proposed methodology were then discussed.
机译:许多设计变量和约束,例如现有的批量蒸馏或现有冷却和加热介质的工作温度的工作温度和工作温度,在设计和优化期间必须在新混合物中使用时进行设计和优化。批量蒸馏模拟的收敛性与这些变量的初始值敏感。因此,提出了一种新的系统方法,用于使用现有的批柱设计和优化新混合物的分离。系统方法基于从废制冷剂混合物中的二氯二氟甲烷(R-1​​2)回收的工业案例研究。基于对实验数据的PXY图的比较,选择“参考流体特性”作为热力学模型。使用快捷方式和严格方法设计和优化后,运行现有的批量蒸馏单元以验证提出的方法。实验性能与模拟结果相匹配。在优化的操作条件下,在28.3小时后通过实验完成R-12(纯度= 99.5%)的完全纯化。然后讨论了所提出的方法的优点和缺点。

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