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Waste Recycling in Thermoelectric Materials

机译:在热电材料中回收废物

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Thermoelectric (TE) technology enables the efficient conversion of waste heat generated in homes, transport, and industry into promptly accessible electrical energy. Such technology is thus finding increasing applications given the focus on alternative sources of energy. However, the synthesis of TE materials relies on costly and scarce elements, which are also environmentally damaging to extract. Moreover, spent TE modules lead to a waste of resources and cause severe pollution. To address these issues, many laboratory studies have explored the synthesis of TE materials using wastes and the recovery of scarce elements from spent modules, e.g., utilization of Si slurry as starting materials, development of biodegradable TE papers, and bacterial recovery and recycling of tellurium from spent TE modules. Yet, the outcomes of such work have not triggered sustainable industrial practices to the extent needed. This paper provides a systematic overview of the state of the art with a view to uncovering the opportunities and challenges for expanded application. Based on this overview, it explores a framework for synthesizing TE materials from waste sources with efficiencies comparable to those made from raw materials.
机译:热电(TE)技术能够在房屋,运输和工业中产生的废热能力转化为及时可访问的电能。因此,这种技术在鉴于备注替代的能量来源,找到了越来越多的应用。然而,TE材料的合成依赖于昂贵和稀缺的元素,这也是对提取物的环境损害。此外,花费模块导致资源浪费并导致严重的污染。为了解决这些问题,许多实验室研究已经探索了利用废物的稀土元素的合成,从花样中恢复稀缺的元素,例如将Si浆料的利用作为起始材料,可生物降解的滤皮纸的发展,以及碲的细菌回收和再循环从花费模块。然而,这些工作的结果并没有在所需的程度上引发可持续的工业实践。本文提供了最先进的系统概述,以揭示扩展申请的机会和挑战。基于此概述,它探讨了一种框架,用于将TE材料从废料源合成,效率与由原料制成的效率相当。

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