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Concept Mapping of Food Waste Management Alternatives within the Food-Energy-Water Nexus

机译:食物-能源-水联盟中的食物垃圾管理替代方案的概念图

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There are currently many knowledge gaps related to the role of food waste within the food-energy-water (FEW) nexus. Wasted food is a high-magnitude, energy- and nutrient-rich waste stream. Energy and water are consumed or contaminated both during production of wasted food and management of disposed food. Further, carbon and nutrients from landfilled food are potentially persistent and problematic contaminants that require intensive energy to treat, and/or large volumes of water to assimilate. Better understanding of potential water and energy costs underlying various alternative food waste treatments are necessary, for example, to inform decision making as communities implement 'zero waste' or the USEPA/USDA goal to halve food waste by 2030. Our approach towards FEW research is integrated through the energy and water footprints of wasted food, with particular attention to the uncharted and highly coupled water and energy impacts of food waste management. Herein, we present an approach to compare costs through the integrated FEW system related to several alternative pathways for food waste in the post-consumer phase. We consider food waste disposed in landfills, incinerated, digested for energy production, or composted. Our methods encompasses a conceptual methodology for characterizing interrelated water and energy impacts related to various alternative treatments for wasted food, evaluating potential magnitudes and directions of energy, water and nutrient transfer related to food waste, and feedbacks of human behavior. Through this approach, gaps in fundamental knowledge related to energy and water impacts of food waste are clearly identified.
机译:目前,在食物-能源-水(FEW)关系中,与食物垃圾的作用相关的知识差距很多。浪费的食物是大量的,富含能量和营养的废物流。在浪费食品的生产和处置食品的管理过程中,能源和水都被消耗或污染。此外,来自填埋食品的碳和养分是潜在的持久性和有问题的污染物,需要大量的能量进行处理和/或吸收大量的水。有必要更好地了解各种替代性食物垃圾处理方法潜在的水和能源成本,例如,以便在社区实施“零垃圾”或USEPA / USDA目标到2030年将食物垃圾减半的决策时为决策提供依据。我们开展FEW研究的方法是通过浪费食物的能源和水足迹进行整合,特别关注食物垃圾管理对水和能源的未知和高度耦合的影响。在本文中,我们提出了一种通过集成式FEW系统比较成本的方法,该系统与消费后阶段食品浪费的几种替代途径相关。我们考虑将食物垃圾丢弃到垃圾掩埋场,进行焚化,消化以生产能源或堆肥。我们的方法包括一种概念方法,用于表征与浪费食品的各种替代处理有关的相互关联的水和能源影响,评估与食物浪费相关的能量,水和营养物质转移的潜在幅度和方向,以及人类行为的反馈。通过这种方法,可以清楚地发现与食物垃圾的能源和水影响有关的基础知识方面的差距。

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