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Defining Sustainability: Critical Factors in Sustainable Material Selection

机译:定义可持续性:可持续材料选择中的关键因素

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The designer is faced often with questions of material selection. To answer these, functional requirements must always be met, and second the cost constraints of the project must not be exceeded, and preferably they are minimized. Sadly, once the functional requirements are met, and the costs minimized, the selection process usually ends. By taking a life cycle analysis approach, the environmental impacts of a particular material can be assessed properly. If this were the third criterion, one could expect that environmental impacts like carbon emissions, energy requirements, and toxic emissions would all be minimized. But will these efforts result in sustainable material use? In this article we postulate that the additional question of whether a material can be recycled repeatedly without degradation, or cycled at a sustainable rate through nature (for example, by composting), is the most significant question to ask when assessing the sustainability of a particular material. Because economic considerations are often held paramount, it is common to select non-recyclable materials that are eventually discarded. These non-recyclable materials must be acquired as primary resources, and all the technologies required to obtain, process, and use these materials must be developed. When finally scarcity renders it economically prohibitive to extract, the effort and energy put into developing its use will have been wasted. This paper considers the long term life cycle cost of non-recyclable and recyclable materials. The results suggest that future designers avoid the use of non-recyclable materials in order to minimize environmental and economic cost over the long term.
机译:设计师经常面临材料选择的问题。为了回答这些,必须始终满足功能要求,并且第二次项目的成本约束不得超过,并且优选地,它们被最小化。可悲的是,一旦满足功能要求,并且成本最小化,选择过程通常会结束。通过采取生命周期分析方法,可以适当地评估特定材料的环境影响。如果这是第三个标准,人们可以预期碳排放,能量要求和有毒排放等环境影响将全部减少。但这些努力会导致可持续的材料使用吗?在这篇文章中,我们推测,无论是材料的附加问题可以反复回收利用,而不会降低,或通过自然在可持续的速度循环(例如,通过堆肥),是最显著问题评估特定的可持续性时问材料。因为经济考虑往往是至关重要的,所以常常选择最终丢弃的不可再循环材料。这些不可回收的材料必须作为主要资源获得,并且必须开发所需的所有技术所需的技术。当最终稀缺时,呈现出经济上禁止提取,努力和能源将被浪费在发展中。本文考虑了不可再循环和可回收材料的长期生命周期成本。结果表明,未来的设计人员避免使用不可再循环的材料,以便在长期内尽量减少环境和经济成本。

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