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In the frame of globalization and sustainability, process intensification, a path to the future of chemical and process engineering (molecules into money)

机译:在全球化和可持续性的框架中,过程集约化是通往化学和过程工程(分子成货币)未来的道路

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In today's economy, chemical and process engineering must respond to the changing needs of the chemical processes and related industries in order to satisfy both the increasing market requirements for specific end-use properties of the product required by the customer, and the social, and the raw material and energy savings, and environmental constraints of the industrial-scale process. In such a context of globalization and sustainability and amongst several tracks, it is shown that process intensification is a path for the future of chemical and process engineering demands. Process intensification concerns the design of novel equipment based on scientific principles and new production methods and is obtained in using either multifunctional reactors, or new operating modes, or microengineering and microtechnology for both high throughput and formulation screening, and for chemical production. Thus process intensification leads to more or less complex technologies that replace large, expensive, energy-intensive equipment or processes with ones that are smaller, less costly, more efficient plants, minimizing environmental impact, increasing safety and improving remote control and automation, or that combine multiple operations into a single apparatus or into fewer devices. With the help of the multidisciplinary and multiscale approach of the chemical engineering applied from the scale of the microreaction technology up to the scale of multifunctional macroreactors or equipment, process intensification offers new opportunities for chemical engineering, e.g., in concurrent product/process or microprocess engineering which can offer strategic competitive advantage in speed to market, cost, and also production innovation. It is thus involved in the trend "molecules into money" which is based on the premise that chemical engineering drives today economy development and is fundamental to wealth creation.
机译:在当今的经济中,化学和过程工程必须响应化学过程和相关行业不断变化的需求,以便满足客户对产品特定最终用途特性不断增长的市场需求以及社会和节省原材料和能源,以及工业规模过程的环境限制。在这样的全球化和可持续性的背景下,在多个方面中,表明了过程强化是化学和过程工程需求的未来之路。流程强化涉及基于科学原理和新生产方法的新型设备的设计,可以通过使用多功能反应器或新的运行模式,或通过微工程和微技术实现高通量和配方筛选以及化学生产来实现。因此,过程集约化导致或多或少的复杂技术用较小,成本更低,效率更高的工厂代替大型,昂贵,能源密集型的设备或过程,从而将对环境的影响降至最低,增加安全性并改善远程控制和自动化,或者将多种操作组合到一个设备或更少的设备中。借助从微反应技术规模到多功能大型反应器或设备规模的化学工程的多学科和多尺度方法,过程强化为化学工程提供了新的机遇,例如在并行产品/过程或微过程工程中这可以在加快产品上市速度,降低成本以及进行生产创新方面提供战略竞争优势。因此,它参与了“分子转化为货币”的趋势,该趋势基于化学工程推动当今经济发展且对创造财富至关重要的前提。

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