Digitalization in Catalysis and Reaction Engineering: Automatizing Work Flows

Rinu Chacko, H. Gossler, Johannes Riedel, S. Schunk, Olaf Deutschmann
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Abstract

Digitalization and surrounding efforts fostered by the advent of Industry 4.0 have been a development topic in the fields of chemistry and chemical engineering for several years – so timing may be right to look back and to question what the impact of efforts made, and to judge the impact of workflows and technologies developed. First and foremost, the first two key principle of Industry 4.0, namely Interconnectivity and Information Transparency play the crucial role in the context of Digitalization as only a seamless flow of data based on standardized formats remains key to enabling Decentralized Decisions and Technical Assistance. Digitization and digital tools play a key role in the acceleration data transfer and development efforts, the automation and autonomation of technical equipment employed, and the digital transformation of “classical” chemical reaction engineering processes towards an ideal originally projected by the high-tech agenda of Industry 4.0. In this presentation we will start our journey with fully integrated environments on a laboratory level where data are not only made available in data warehouses but can be used to drive feedback loops to autonomously drive experimental devices.
催化和反应工程中的数字化:自动化工作流程
数字化和工业4.0的出现所带来的相关努力已经成为化学和化学工程领域的一个发展主题好几年了,所以现在可能是时候回顾并质疑所做努力的影响,并判断工作流程和开发的技术的影响。首先,工业4.0的前两个关键原则,即互联性和信息透明度,在数字化背景下发挥着至关重要的作用,因为只有基于标准化格式的数据无缝流动才是实现分散决策和技术援助的关键。数字化和数字化工具在加速数据传输和开发工作、所使用技术设备的自动化和自动化以及“经典”化学反应工程过程的数字化转型方面发挥着关键作用,这些过程最初是由工业4.0的高科技议程所预测的。在本次演讲中,我们将从实验室级别的完全集成环境开始我们的旅程,其中数据不仅可以在数据仓库中使用,还可以用于驱动反馈回路以自动驱动实验设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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