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Increasing Throughput of Batch Distillation

机译:增加批量蒸馏的吞吐量

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Batch distillation is still widely used in numerous chemical plants that make multiple products at a relatively small scale. As in continuous distillation, various combinatorial sequences of batch separations can be derived. Each of these sequences can be optimized using commercial simulator and compared with the other sequences. The objective function in optimization of batch distillation is usually the cycle time that needs to be minimized. It corresponds to the minimum energy of separation in continuous distillation, because batch distillation columns operate usually at maximum boilup. Therefore, the shorter the cycle time, the lower the energy of separation. Optimization procedure has to take into account sizes of existing tanks and other available equipment, which may lead sometimes to a classical scheduling problem. An example of selecting the optimum batch distillation sequence will be presented. The components in the feed may be lumped into five groups, ordered according to their volatilities: 1. Lights (L), 2. Product A, 3. Intermediates (I) , 4. Product B, 5. Heavies (H). Combining optimization with batch column model available in commercial simulator provides a useful tool for developing optimum batch distillation recipes.
机译:批量蒸馏仍然广泛用于许多化工厂,使多种产品以相对较小的规模制造。如在连续蒸馏中,可以衍生出各种组合分离的组合序列。可以使用商业模拟器优化这些序列中的每一个,并与其他序列进行比较。批量蒸馏优化的目标函数通常是需要最小化的循环时间。它对应于连续蒸馏中分离的最小能量,因为批量蒸馏塔通常在最大磷酸盐处运行。因此,循环时间越短,分离能量越低。优化程序必须考虑到现有罐和其他可用设备的大小,有时会导致经典调度问题。将呈现选择最佳批量蒸馏序列的示例。饲料中的组件可以将其集中成五组,根据它们的挥发性排序:1。灯(L),2.产品A,3.中间体(I),4.产品B,5.重量(H)。在商业模拟器中使用批次列模型结合优化为开发最佳批量蒸馏配方提供了一种有用的工具。

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    《ESCAPE-19》|2009年||共5页
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