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INREFF FUNDED PROJECTS cess to highly advanced process engineering tools and these are used to as- sist in achieving the core objective of continuously increasing the efficiency with which materials, energy and infrastructural resources are used. How- ever, the optimisation work carried out up until now has been restricted to very specific questions and applications and to tightly defined production facilities. What is missing is a more general, higher level modelling platform with which targets such as reducing greenhouse gas emissions or improving resource efficiency can be addressed in a more integrated and comprehen- sive framework. Form a methodological vantage point, this is clearly not a trivial exercise, as expert knowledge from a range of different fields and dis- ciplines and at different levels of detail need to be incorporated. Increasing the resource efficiency of a production system and the associat- ed reduction in environmental burdens and climate impact will be achieva- ble when the quantitative relationships between the measures to be imple- mented, the cost and effort associated with their implementation and their impact on the climate and the environment can be formulated. Is also es- sential that life cycle assessments are incorporated as early as possible into the conceptual engineering phase as this is the period in which key process design decisions are made (Heinzle & Hungerbühler, 1997). 3.12.2 Projektbeschreibung3 The goal of the InReff project was to develop an IT-based modelling and analysis environment that can provide comprehensive answers to a wide range of questions relating to resource efficiency and climate protection issues in the chemical industry. The key components of the project were developing and integrating existing concepts and methods, software pro- totyping, and case-study research and knowledge transfer. The work was carried out collaboratively among a consortium consisting of three indus- trial partners (H.C. Starck GmbH, Huntsman PA Germany, Worlée Chemie GmbH), two academic partners (Institute of Industrial Ecology at Pforzheim University of Applied Sciences and the Institute of Chemical and Thermal Process Engineering at Braunschweig University of Technology), a software solutions provider (ifu Hamburg GmbH) and a number of other companies as associate project members (including BASF SE and Chemstations Europe GmbH). To achieve its objectives, the project combined established methods of designing and developing processes, such as flow sheet simulation, heat integration analysis, material flow modelling, material flow cost account- 3 The first paragraph in this section was taken from the original project proposal. The remaining paragraphs are a slightly revised version of the publication (Viere et al. 2015) expanded to include Figure 106. 263PDF Image | Chemical Processes and Use of CO2
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