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Optimization of semi-permeable membrane systems for biogas upgrading

机译:用于沼气升级半透膜系统的优化

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This work focuses on the optimization of a biogas upgrading process consisting of three CO2-permeable membranes.A 1-D membrane model, capable of handling multi-component gas mixtures, is formulated as a set of differential algebraic equations and validated against experimental data.The model is used within a sequential algorithm to solve the simulation of the three-stage system.The key design variables (i.e., areas of each membrane module, stream pressures and recycle mass flow rates) are optimized using the recently developed MO-MCS algorithm, a derivative-free optimizer suitable for multi-objective problems.Results show that the Pareto-optimal solutions have a total plant cost in the range 720-770 €/(Nm~3/h of feed) and an energy efficiency of 87.7-89.2%.
机译:该工作侧重于优化由三种CO 2可渗透膜组成的沼气升级过程。一种能够处理多组分气体混合物的1-D膜模型,其配制为一组差分代数方程并针对实验数据验证。该模型用于序列算法以解决三级系统的仿真。使用最近开发的MO-MCS算法优化了键设计变量(即,每个膜组件,流压力和回收质量流量率的区域) ,一种适用于多目标问题的无衍生优化器。结果表明,静态最佳解决方案在720-770欧元/(饲料Nm〜3 / h)的总植物成本和87.7的能量效率。 89.2%。

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