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    隔壁精餾塔分離醋酸乙烯酯模擬優化的研究

    Simulation and Optimization of Separation of Vinyl Acetate by Dividing Wall Distillation Column

    • 摘要: 隔壁精餾塔技術是一種優良的精餾節能與過程強化技術。與常規精餾技術相比,具有較高的熱力學效率,能耗低,減少了設備投資和數量。針對醋酸乙烯酯精製工藝,在對常規雙塔精餾分離流程分析基礎上,設計了醋酸乙烯酯隔壁精餾塔工藝方案,並采用Aspenplus進行模擬計算和優化,分析了隔壁塔塔內的氣相分配比🏮、回流比、液相分配比、溫度分布、氣相組成分布🏊🏻‍♀️🎙、液相組成分布對產品質量的影響👌🏽,確定了隔壁塔的回流比🛩、進料板位置和側線出料板的位置Ⓜ️。研究結果表明,在處理量和產品質量不變的條件下,與傳統的雙塔分離工藝相比,熱能耗由41200 kW降為22400 kW💧🤳,冷能耗由28300 kW降為18200 kW,熱耦合效果顯著,設備的投資和數量減少👨🏻‍🚀。

       

      Abstract: Distillation technology by dividing wall column was an excellent energy saving and process intensification technology. Compared with conventional distillation technology, it had lower equipment investment and quantity, higher thermodynamic efficiency, and lower energy consumption. Based on the analysis of the conventional two column distillation separation process, the separation process scheme of vinyl acetate partition tower was designed, calculated, and optimized by Aspenplus. The influence of gas phase distribution ratio, reflux ratio, liquid phase distribution ratio, temperature distribution, gas phase composition distribution and liquid phase composition distribution on the product quality was analyzed. The reflux ratio, the position of the feed plate and the position of the side discharge plate were determined. The results showed that: compared with the traditional double tower separation process, the treatment capacity and product quality remain unchanged, but the heat energy consumption was reduced from 41200 to 22400 kW, the cold energy consumption was reduced from 28300 to 18200 kW, the thermal coupling effect is remarkable, and the investment and number of equipment are reduced.

       

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