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Moving beyond recycling: Examining steps for local government to integrate sustainable materials management

机译:超越回收:审查当地政府融合可持续材料管理的步骤

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摘要

Recently, local governments experienced unprecedented challenges to their recycling programs and are looking to alternative forms to meet their sustainability goals. Traditionally, waste management policies focus on using a mass-based recycling rate to promote and measure sustainability, however that metric inadvertently promotes recycling over source reduction. Here, we present a metric which measures a community's greenhouse gas (GHG) and energy use footprints for their consumed and end-of-life material streams. Using materials and waste statistics for Florida as an example, we estimated the consumed and discarded masses of 24 materials in 2018. We developed methods and used existing (i.e., WARM, literature) lifecycle assessment data to measure upstream and end-of-life environmental footprints of these materials. The total upstream footprints were approximately 12 and 10 times larger than the end-of-life GHG emissions and energy use footprints, respectively, indicating the need for sustainable materials management application. Mixed paper, cardboard, mixed construction and demolition (C&D) materials had the largest lifecycle footprints. We then use these data to illustrate a method for local governments to apply the alternative metric referred to as the lifecycle footprint reduction target. We demonstrate this target's application in Florida using a hypothetical 20% footprint reduction and provide approaches which focus on increasing the source reduction and recycling potentials of key materials to meet the target. The approaches included a junk mail ban, food donation mandate, cardboard takeback mandate, and building deconstruction mandate and were evaluated for their feasibility in meeting the target; the building deconstruction and the food donation mandate resulted in the greatest and least progress, respectively, toward meeting the target. These approaches provide local government a baseline for continued progress toward SMM application. Implications: Consumer consumption of manufactured products - the packaging for our food and beverages, the products in our homes and offices, the vehicles we drive, and the buildings we live and work in - ultimately must be discarded at the end of their useful life. It is through the management of residential and commercial solid waste that local governments face the consequences of society's materials consumption. Thus, not surprisingly, materials conservation efforts at the government level focus primarily on efforts to recycle waste and divert these materials from landfill disposal. Here we examine a concept whereby local governments - normally charged with collecting and managing residential and commercial waste, and thus setting waste recycling targets - expand their thinking to include all life cycle phases for the materials consumed and discarded in their jurisdiction. In doing so, local governments can now shift from a waste management to a lifecycle-oriented perspective and expand beyond just managing waste to managing materials.
机译:最近,地方政府对他们的回收方案持前所未有的挑战,并希望旨在满足其可持续发展目标的替代形式。传统上,废物管理政策专注于利用基于群众的回收率来促进和衡量可持续性,但是,公制无意中促进了对源减少来源的回收。在这里,我们提出了一种测量社区温室气体(GHG)和能量使用足迹的指标,用于其消耗和寿命最终的材料流。使用佛罗里达州的材料和废物统计数据作为一个例子,我们估计了2018年的24种材料的消耗和丢弃的群体。我们开发了现有的方法和使用现有的(即温暖,文学)生命周期评估数据,以测量上游和生命结束环境这些材料的脚印。总上游占地面积分别大约比寿命终止的温室气体排放和能量使用足迹大约12分,表明需要可持续材料管理应用。混合纸,纸板,混合建筑和拆除(C&D)材料具有最大的生命周期占地面积。然后,我们使用这些数据来说明本地政府的方法,以将所谓的替代度量应用于生命周期占地面积减少目标。我们展示了该目标在佛罗里达州的应用程序使用假设的20%的占地面积减少,并提供了关注增加关键材料的源减少和回收潜力以满足目标的方法。该方法包括垃圾邮件禁令,粮食捐赠授权,纸板收购授权和建设解构规范授权,并在满足目标方面进行了评估;建筑解构和粮食捐赠授权分别导致最大,最不进展,分别达到目标。这些方法为地方政府提供了一个基线,以便继续进入SMM申请。含义:制造产品消费消费消费 - 我们的食品和饮料的包装,我们的家园和办公室的产品,我们开车的车辆,以及我们生活和工作的建筑物必须在他们使用的生活结束时丢弃。通过管理居民和商业固体废物的管理,即地方政府面临社会材料消费的后果。因此,毫不奇怪,政府层面的材料保护努力主要关注回收废物的努力,并将这些材料从垃圾填埋场处置转移。在这里,我们研究了一个概念,即地方政府 - 通常被指控收集和管理住宅和商业浪费,从而设定废物回收目标 - 扩大他们的思维,包括所消耗和丢弃的材料的所有生命周期阶段。在这样做时,地方政府现在可以从废物管理转向生命周期的视角,并扩大超越只是管理垃圾到管理材料。

著录项

  • 来源
    《Journal of the Air & Waste Management Association》 |2021年第8期|1039-1052|共14页
  • 作者单位

    Department of Environmental Engineering Sciences University of Florida Gainesville FL USA;

    Department of Environmental Engineering Sciences University of Florida Gainesville FL USA;

    Department of Environmental Engineering Sciences University of Florida Gainesville FL USA;

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  • 正文语种 eng
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