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Hydrogen PSA process product purity control method and controller

机译:PSA制氢产品纯度控制方法及控制器

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It is well known in the industry that a primary means for controlling the pressure swing adsorption (PSA) process product gas purity is the adjustment of PSA feed time or adsorption time. If the product impurity is too high, the feed time is shortened and if the impurity level is below the target the feed time is increased. Conventionally, the plant operator monitors the product purity and manually adjusts the feed time. Several control methodologies such as classical feedback and feedforward systems were suggested to automate this task with limited success. A novel control methodology based on the measurement of impurity fronts within the adsorber bed was developed by the Praxair Adsorption R&D team. The response of the concentration measurements inside the adsorber vessel to the process upsets and changes in feed time is more rapid than in the product stream. Consequently, closed loop control performance can be made much more effective and the operating impurity set points for product gas can be more aggressive resulting in longer PSA feed times, higher bed utilization and thus higher hydrogen recovery. The control methodology will be discussed in greater detail along with the advantages it has to offer such as improved process performance, disturbance rejection capability and improved process robustness. The control methodology will be illustrated using the hydrogen PSA process as an example.
机译:在工业中众所周知,控制变压吸附(PSA)过程产物气体纯度的主要手段是调节PSA进料时间或吸附时间。如果产品杂质过高,则会缩短进料时间,如果杂质水平低于目标水平,则进料时间会增加。通常,工厂操作员会监控产品的纯度并手动调整进料时间。建议使用几种控制方法,例如经典反馈和前馈系统,以自动完成此任务,但效果有限。普莱克斯吸附技术研发团队开发了一种基于吸附床内杂质前沿测量的新型控制方法。吸附器容器内的浓度测量值对工艺失常和进料时间变化的响应比产物流中的响应更快。因此,可以使闭环控制性能更加有效,并且用于产物气的操作杂质设定点可以更具攻击性,从而导致更长的PSA进料时间,更高的床利用率以及更高的氢气回收率。将对控制方法论及其带来的优势进行更详细的讨论,例如改进的过程性能,干扰抑制能力和改进的过程鲁棒性。将以氢PSA工艺为例说明控制方法。

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