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From Process Miniaturization to Structured Multiscale Design: The Innovative, High-Performance Chemical Reactors of Tomorrow

机译:从过程小型化到结构化多尺度设计:明天的创新型高性能化学反应器

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The increasing use in recent years of microstructured components and devices for chemical analysis and laboratory applications has led to the development of a large number of miniaturized reactor systems of proven performance and interest for the chemical industries. The primary objective of these small-scale devices has been to generate chemical information, and for such applications 'smaller' is very often 'better' since smaller devices allow for use of smaller reactant volumes. Contrary to chemical information, however, chemical production (even for mini-plants) implies the use of significant volumes of reactants, and the motivations for employing microstructured systems in such cases require therefore closer examination. Upon reflection, one concludes that the potential advantages of microstructured devices and components are not limited solely to process miniaturization. On the contrary, incorporation of appropriately designed and targeted microstructured components within large-scale macrodevices can provide novel, innovative design concepts for performance enhancement, resulting in safer, cleaner and more efficient reactors and process units for production plants of all sizes.
机译:近年来,越来越多的用于化学分析和实验室应用的微结构部件和设备的使用,导致了许多小型化反应器系统的开发,这些系统已被证明对化学工业具有良好的性能和兴趣。这些小型设备的主要目标是生成化学信息,并且对于此类应用,“较小”通常是“更好”的,因为较小的设备允许使用较小的反应物体积。但是,与化学信息相反,化学生产(即使是小型工厂)也意味着要使用大量的反应物,因此在这种情况下采用微结构化系统的动机需要进一步研究。反思后,得出的结论是,微结构化器件和组件的潜在优势并不仅仅局限于工艺的小型化。相反,在大型宏设备中并入经过适当设计和针对性的微结构化组件,可以提供新颖,创新的设计概念来提高性能,从而为各种规模的生产工厂提供更安全,更清洁,更高效的反应器和工艺单元。

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