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A life cycle assessment and process system engineering integrated approach for sustainability : application to environmental evaluation of biofuel production

机译:生命周期评估和过程系统工程集成方法实现可持续性:在生物燃料生产环境评估中的应用

摘要

With the rise of global warming issues due to the increase of the greenhouse gas emission and more generally with growing importance granted to sustainable development, process system engineering (PSE) has turned to think more and more environmentally. Indeed, the chemical engineer has now taken into account not only the economic criteria of the process, but also its environmental and social performances. On the other hand LCA is a method used to evaluate the potential impacts on the environment of a product, process, or activity throughout its life cycle. The research here focused on coupling of PSE domain with the environmental analysis of agricultural and chemical activities and abatement strategies for agro-processes with the help of computer aided tools and models. Among many approaches, the coupling of PSE and LCA is investigated here because it is viewed as a good instrument to evaluate the environmental performance of different unitary processes and whole process. The coupling can be of different nature depending on the focus of the study. The main objective is to define an innovative LCA based on approach for a deep integration of product, process and system perspectives. We selected a PSE embedded LCA and proposed a framework that would lead to an improved eco-analysis, eco-design and eco-decision of business processes and resulted products for researchers and engineers. In the first place we evaluate biodiesel for environmental analysis with the help of field data, background data and impact methodologies. Through this environmental evaluation, we identify the hotspot in the whole production system. To complement the experimental data this hotspot (i.e. transesterification) is selected for further modeling and simulation. For results validation, we also implement LCA in a dedicated tool (SimaPro) and simulation in a PSE simulation tool (Prosim Plus). Finally we develop a tool (SimLCA) dedicated to the LCA by using PSE tools and methodologies. This development of SimLCA framework can serve as a step forward for determination of sustainability and eco-efficient designing.
机译:随着由于温室气体排放量增加而引起的全球变暖问题的增加,以及更普遍地越来越重视可持续发展,过程系统工程(PSE)越来越重视环境。实际上,化学工程师现在不仅考虑了该方法的经济标准,还考虑了其​​环境和社会绩效。另一方面,LCA是一种用于评估产品,过程或活动在其整个生命周期中对环境的潜在影响的方法。这里的研究集中在PSE领域与农业和化学活动的环境分析以及借助计算机辅助工具和模型的农业过程的减排策略的结合上。在许多方法中,这里研究了PSE和LCA的耦合,因为它被视为评估不同的单一过程和整个过程的环境绩效的良好工具。取决于研究重点,耦合可以具有不同的性质。主要目标是基于一种方法来定义创新的LCA,以深度集成产品,过程和系统的观点。我们选择了PSE嵌入式LCA,并提出了一个框架,该框架将导致改进业务流程的生态分析,生态设计和生态决策,并为研究人员和工程师提供产品。首先,我们借助现场数据,背景数据和影响方法对用于环境分析的生物柴油进行评估。通过这次环境评估,我们确定了整个生产系统中的热点。为了补充实验数据,选择该热点(即酯交换反应)进行进一步的建模和仿真。为了验证结果,我们还在专用工具(SimaPro)中实施了LCA,并在PSE仿真工具(Prosim Plus)中进行了仿真。最后,我们使用PSE工具和方法开发了专用于LCA的工具(SimLCA)。 SimLCA框架的这一发展可以为确定可持续性和生态高效设计迈出一步。

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    Gillani Sayed Tamizuddin;

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  • 年度 2013
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