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Dynamic Optimization of a Fed-Batch Microgel Synthesis ?

机译:分批补料微凝胶合成的动态优化

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Functional microgels are novel materials, which can potentially be used for diverse applications such as drug delivery. Among other material properties, the radial cross-linker profile is of special importance to ensure desired product functionality. However, in the system under investigation, only a high cross-linker fraction in the center and a low cross-linker fraction in the shell is obtained in batch synthesis due to the fast reaction kinetics of the cross-linker. Other radial cross-linker fraction profiles can be synthesized in fed-batch, yet the determination of the required feeding profiles is not intuitively obvious. Based on recently developed quantitative nonlinear process models, a fed-batch synthesis can be dynamically optimized under constraints set by product quality and process limitations. Here, we apply dynamic optimization to microgel synthesis to obtain large microgels under constraints posed by the radial cross-linker profile and conversion. We present three different case studies to show in silico that a wide range of different cross-linker fraction profiles is feasible. The results show that the specified constraints are met and that various cross-linker profiles can be achieved while maintaining the microgel size.
机译:功能性微凝胶是新型材料,可以潜在地用于多种应用,例如药物输送。在其他材料特性中,径向交联剂轮廓对于确保所需的产品功能特别重要。然而,在所研究的系统中,由于交联剂的快速反应动力学,在批料合成中仅获得了中心的高交联剂部分和壳中的低交联剂部分。可以在补料分批中合成其他径向交联剂馏分分布图,但是所需的进料分布图的确定在直观上并不明显。基于最近开发的定量非线性过程模型,可以在产品质量和过程限制所设置的约束下动态优化补料分批合成。在这里,我们将动态优化应用于微凝胶合成,以在径向交联剂谱和转化所构成的约束下获得大型微凝胶。我们提供了三个不同的案例研究,以计算机显示各种不同的交联剂馏分分布图是可行的。结果表明,满足了指定的约束条件,并且可以在保持微凝胶尺寸的同时实现各种交联剂分布。

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