首页> 外文会议>International Symposium on Process Systems Engineering >Optimal Operation of a Membrane Reactor Network
【24h】

Optimal Operation of a Membrane Reactor Network

机译:膜反应器网络的最佳运行

获取原文

摘要

in this work, a two-dimensional model for a conventional packed-bed membrane reactor (CPBMR) is developed for the oxidative coupling of methane, which uses a nonselective porous membrane to continuously feed oxygen to the catalytic bed. The model incorporates radial diffusion and thermal conduction and assumes convective transport for the axial direction. In addition, two 1 Ocm long cooling segments for the CPBMR were implemented based on the idea of a fixed cooling temperature outside the reactor shell. The resulting model is discretized using two-dimensional orthogonal collocation on finite elements with a combination of Hermite polynomials for the radial and Lagrangian polynomials for the axial coordinate. The simulation study shows that it is necessary to make all transport coefficients dependent on local temperatures and compositions. This leads to a simulation with roughly 130,000 variables, which is then used to generate initial points for the optimization of the CPBMR stand-alone operation. In addition, inequality constraints and variable bounds are introduced so as to avoid potentially hazardous mixtures of methane and oxygen in both shell and tube as well as to keep the temperatures below levels stressing reactor materials (< 1,100°C). Moreover, membrane thickness, feed compositions, temperatures at the reactor inlet and for the cooling segments, diameters of tube and shell, and finally the amount of inert packing in the reactor are considered as decision variables. The optimization procedure uses IPOPT as a solver. Afterwards, the 2D model is integrated into a membrane reactor network (MRN) proposed by H. Godini et al. in 2010 which is simulated. Finally, attempts are made to optimize its operation.
机译:在这项工作中,为甲烷的氧化偶联而开发了一种用于传统填充床膜反应器(CPBMR)的二维模型,其使用非选择性多孔膜连续向催化床饲喂氧气。该模型包括径向扩散和热传导,并承担轴向的对流传输。此外,基于反应器外壳外固定冷却温度的思想来实现用于CPBMR的两个1个OCM长冷却段。所得到的模型在有限元上使用二维正交搭配离散化,其具有用于轴向坐标的径向和拉格朗日多项式的Hermite多项式的组合。仿真研究表明,有必要使所有运输系数取决于局部温度和组成。这导致具有大约130,000个变量的模拟,然后用于生成用于优化CPBMR独立操作的初始点。此外,还引入了不等式约束和可变界面,以避免壳体和管中甲烷和氧气的潜在危险混合物,以及将低于水平的温度低于反应器材料(<1,100℃)。此外,膜厚,饲料组合物,反应器入口处的温度和用于冷却段,管和壳的直径,最后将反应器中的惰性包装量被认为是决策变量。优化过程使用IPOPT作为求解器。然后,将2D模型集成到H.Godini等人提出的膜反应器网络(MRN)中。 2010年被模拟。最后,尝试优化其操作。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号