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Process and Controller Configuration of High Purity Binary Distillation Columns in the Purification Stage of Petrochemical Plant

机译:石油化工纯化阶段高纯度二元蒸馏塔的过程和控制器配置

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This paper reports the systematic selection of process and controller configurations of four distillation columns operated at purification stage in an olefin petrochemical plant. These columns were demethanizer, deethanizer, depropanizer #1 and depropanizer #2 columns, which separated ethane (C_2H_6) and propane (C_3H_8) from methane (CH_4) and other heavier components (i.e. C_(4+)). The interconnection of these unit processes propagate the noise and cause severe instabilities towards the final unit process. Therefore, the decision about the choice of the process and control configuration is important in order to ensure the process stability. Such a decision includes the pairing of the manipulated and the controlled variables, the control rules and the inclusion of surge tanks to buffer the disturbances that caused the mentioned instabilities. In particular, the assessment selected three out of six control pairings available for distillation columns. A Proportional - Integral (PI) controller was utilized for all control pairs, and tuned by the Ziegler-Nichols method. In addition, two surge tanks were added as buffers between the demethanizer, the deethanizer and the depropanizer columns. This approach yields the process configuration that was capable of absorbing the disturbance, ensuring a 98-99% product purity and keeping a bias under 2%
机译:本文报道了在烯烃石化厂纯化阶段在纯化阶段操作的四个蒸馏塔的过程和控制器配置的系统选择。这些柱是脱甲烷化器,脱六变化剂#1和脱敏#2柱,其分离乙烷(C_2H_6)和丙烷(C_3H_8)与甲烷(CH_4)和其它较重成分(即C_(4+))。这些单元过程的互连传播噪声并导致最终的单元过程对抗稳定性。因此,关于过程和控制配置选择的决定是重要的,以确保过程稳定性。这样的决定包括操纵和受控变量的配对,控制规则和浪涌罐的包含,以缓冲导致提到的不稳定性的干扰。特别是,评估选定了蒸馏塔可用的六配对中的三种。用于所有对照对的比例 - 积分(PI)控制器,并由Ziegler-Nichols方法调谐。此外,将两个浪涌罐作为缓冲液作为缓冲液加入到脱甲烷,脱六烷烃和脱镝柱之间。这种方法产生了能够吸收干扰的过程配置,确保98-99%的产品纯度并保持下降2%以下

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