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Process-oriented life cycle assessment modelling in EASETECH

机译:Easetech面向过程的生命周期评估模型

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Life cycle assessment (LCA) modelling of resource-related technologies can be challenging in the context of circular economy, bioeconomy, recycling and integrated waste management, where materials are recirculated within processes and undergo chemical-physical transformations. This implies redefinition of physical flows within the LCA model. Additionally, physical flows may have non-linear responses to changes in model parameters and background processes, involve activities such as extraction of materials and chemical substances, and directly affect emissions. However, these non-linear responses and links between physical flows within technologies are often neglected. In this study, four novel LCA modelling features are provided: ⅰ) mixing and/or redefinition of physical flows; ⅱ) substance recirculation within physical flows; ⅲ) integration of physical flows from background processes into foreground processes; and iv) (multi)-conditional sequence flows, while maintaining substance and material balances throughout the system. As an expansion of EASETECH, an existing user-friendly LCA software tool for modelling of environmental technologies, a "process editor" (EASETECH+) allows implementation of these four features into EASETECH. The modelling features are implemented into EASETECH as seven individual processes "modules" and applied in an illustrative case-study focusing on anaerobic digestion of source-segregated organic household waste. The case-study demonstrated that the new modelling approach for physical flows, including recirculation, links between flows from background to foreground processes and conditional flows, considerably affected both results and interpretation of the LCA modelling. The recommendation is that process-oriented LCA modelling as presented here can provide critical new insight into the environmental performance of waste technologies and systems.
机译:资源相关技术的生命周期评估(LCA)建模可能在循环经济,生物经济,回收和综合废物管理的背景下具有挑战性,其中材料在过程中再循环并进行化学物理转化。这意味着在LCA模型中重新定义物理流。另外,物理流量可能对模型参数和背景过程的变化具有非线性响应,涉及诸如提取材料和化学物质的活动,并直接影响排放。然而,这些非线性响应和技术在技术内的物理流程之间的链接通常被忽略。在本研究中,提供了四种新型LCA建模特征:Ⅰ)混合和/或重新定义物理流动; Ⅱ)物理流量内的物质再循环; ⅲ)物理流从背景过程中的整合到前景过程中;和IV)(多种) - 条件序列流动,同时在整个系统中保持物质和材料余额。作为Easetech的扩展,现有的用于环境技术建模的现有用户友好的LCA软件工具,“过程编辑器”(Easetech +)允许将这四个功能的实现进入Easetech。建模特征在Easetech中实施到七个单独的过程“模块”,并应用于专注于源隔离有机家庭废物的厌氧消化的说明性案例研究。案例研究表明,物理流量的新建模方法,包括再循环,流波之间的流程与前景进程和条件流程之间的链接,显着影响了LCA建模的结果和解释。该建议是此处提出的以过程为导向的LCA建模可以为废物技术和系统的环境性能提供关键的新洞察力。

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