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Combining Eco-Efficiency and Eco-Effectiveness for Continuous Loop Beverage Packaging Systems Lessons from the Carlsberg Circular Community

机译:与Carsberg循环社区的连续环饮料包装系统课程相结合生态效率和生态效率

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Eco-efficiency (i.e., increasing value while reducing resource use and pollution) can with advantage be combined with eco-effectiveness (i.e., maximizing the benefits to ecological and economical systems) to address the challenges posed by the circular economy in the design of circular industrial systems. We present a framework combining life cycle assessment (LCA) and the Cradle to Cradle (R) (C2C) certification program for the development of continuous loop packaging systems, which was conceived for aluminum cans in the context of the Carlsberg Circular Community. As a first step, the environmentally optimal beverage packaging life cycle scenario is identified, both in terms of defined use and reuse. Second, the limiting factors are identified for the continuous use of materials in multiple loops, meeting the two requirements in the C2C certification process that address the material level (i.e., "material health" and "material reutilization" criteria) and the "renewable energy" criterion. Then, alternative scenarios are built to meet C2C certification criteria, and LCA is used to quantify the environmental impacts of the resulting improvement strategies, for example, change in material composition, in order to guide the identification of the optimal scenario from an eco-efficiency point of view. Finally, the business perspective is addressed by assessing the potential for a green value network business model for a closed-loop supply. The outcome is a list of prioritized actions needed to implement the most efficient and effective "upcycling" strategy for the beverage packaging, both from an environmental and an economic point of view. In the case of the aluminum cans, the main recommendation from both the LCA and C2C perspective is to ensure a system that enables can-to-can recycling.
机译:ECO效率(即,在减少资源使用和污染的同时增加价值)可以利用生态效率(即,最大化生态和经济系统的益处)来解决循环设计中循环经济构成的挑战。工业系统。我们介绍了一个结合生命周期评估(LCA)和摇篮的架构(R)(C2C)认证计划的框架,用于开发连续环包装系统,该系统在卡尔斯伯格循环界的背景下构思了铝罐。作为第一步,在定义的使用和重用方面,识别环境最佳饮料包装生命周期场景。其次,鉴定了限制因素,以持续使用多循环中的材料,满足C2C认证过程中的两个要求,这些过程解决了材料水平(即“物质健康”和“物质再利用”标准)和“可再生能源” “标准。然后,建立替代方案以满足C2C认证标准,LCA用于量化所产生的改进策略的环境影响,例如,材料组合物的变化,以指导从生态效率的识别最佳场景观点看法。最后,通过评估用于闭环电源的绿色价网业务模型的潜力来解决业务透视。结果是为实施饮料包装的最有效和有效的“升高”战略而要求的优先行动,无论是来自环境和经济的观点,都是所需的优先措施。在铝罐的情况下,LCA和C2C透视的主要推荐是确保能够致力于可以回收的系统。

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