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From laboratory to industrial scale: a scale-up framework for chemical processes in life cycle assessment studies

机译:从实验室到工业规模:生命周期评估研究中化学过程的放大框架

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Life cycle assessments (LCA) of an early research state reaction process only have laboratory experiments data available. While this is helpful in understanding the laboratory process from an environmental perspective, it gives only limited indication on the possible environmental impact of that same material or process at industrial production. Therefore, a comparative LCA study with materials that are already produced at industrial scales is not very meaningful. The scale-up of chemical processes is not such a trivial process and requires a certain understanding of the involved steps. In this paper, we elaborated a framework that helps to scale up chemical production processes for LCA studies when only data from laboratory experiments are available. Focusing on heated liquid phase batch reactions, we identified and simplified the most important calculations for the reaction step's energy use as well as for certain purification and isolation steps. For other LCA in- and output values, we provide estimations and important qualitative considerations to be able to perform such a scale-up study. Being an engineering-based approach mainly, it does not include systematically collected empirical data which would give a better picture about the uncertainty. However, it is a first approach to predict the environmental impact for certain chemical processes at an industrial production already during early laboratory research stage. It is designed to be used by LCA practitioners with limited knowledge in the field of chemistry or chemical engineering and help to perform such a scale-up based on a logical and systematic procedure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:早期研究状态反应过程的生命周期评估(LCA)仅提供实验室实验数据。虽然这有助于从环境角度了解实验室过程,但仅提供了有限的指示,说明同一材料或过程在工业生产中可能对环境造成的影响。因此,使用已经工业规模生产的材料进行的LCA比较研究意义不大。化学过程的规模化并不是一个琐碎的过程,需要对所涉及的步骤有一定的了解。在本文中,我们精心设计了一个框架,当只有来自实验室实验的数据可用时,该框架有助于扩大LCA研究的化学生产过程。着重于加热的液相间歇反应,我们确定并简化了反应步骤能源使用以及某些纯化和分离步骤的最重要计算。对于其他LCA输入和输出值,我们提供了估计和重要的定性考虑因素,以便能够进行此类放大研究。主要是基于工程的方法,它不包括系统收集的经验数据,这些数据可以更好地说明不确定性。但是,这是在实验室研究初期就已经预测工业生产中某些化学过程对环境的影响的第一种方法。它旨在供在化学或化学工程领域知识有限的LCA从业人员使用,并有助于基于逻辑和系统的过程进行此类放大。 (C)2016 Elsevier Ltd.保留所有权利。

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