首页> 外文期刊>Proceedings of the ASME Advanced Energy Systems Division >REGENERATION STRATEGIES OF AIR-PURIFICATION TSA PROCESS FOR CRYOGENIC AIR DISTILLATION PLANT
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REGENERATION STRATEGIES OF AIR-PURIFICATION TSA PROCESS FOR CRYOGENIC AIR DISTILLATION PLANT

机译:低温空气蒸馏厂空气净化TSA过程的再生策略

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Since the regeneration step in the Temperature Swing Adsorption (TSA) process requires time enough to heat and cool the bed, it is often the time-limiting step in the TSA cycle and it consumes a huge amount of energy for regeneration. Therefore, a valid management of the regeneration process can minimize the energy consumption of the TSA process which is involved with regeneration time, purge gas requirements, and heat load. Simulation software was developed for industrial scale bed of TSA. A new isotherm equation which performs well in predicting experiment data was extended to multi-component form and then used to interpret the adsorption equilibria of water vapor and carbon dioxide on adsorbents. Preliminary linear drive force mass transfer coefficients and the heat transfer coefficients were calculated by empirical equations and then refined by matching breakthrough curves obtained from industrial field process monitoring to theoretical curves. Under a wide range of regeneration conditions, the temperature effluence and breakthrough were drawn and studied. With the application of this simulation software, the performance and operation data of the TSA beds under various conditions can be obtained conveniently. This enables the manager to minimize their TSA's heat consumption.
机译:由于温度波动吸附(TSA)过程中的再生步骤需要足够的时间来加热和冷却床,因此通常是TSA循环中的时间限制步骤,并且它消耗大量的能量进行再生。因此,对再生过程的有效管理可以使TSA过程的能耗最小化,这涉及再生时​​间,净化气体需求和热负荷。开发了用于TSA工业规模床的仿真软件。新的等温方程在实验数据预测中表现良好,扩展为多组分形式,然后用于解释水蒸气和二氧化碳在吸附剂上的吸附平衡。通过经验方程式计算出初步的线性驱动力传质系数和传热系数,然后通过将工业现场过程监控获得的突破曲线与理论曲线进行匹配来进行精炼。在广泛的再生条件下,得出了温度影响和突破。使用该仿真软件,可以方便地获得各种条件下TSA床的性能和运行数据。这使管理人员可以最大程度地减少TSA的热量消耗。

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