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太赫兹技术在建筑和拆除废物管理方面的挑战与机遇。

Challenges and opportunities of terahertz technology in construction and demolition waste management.

机构信息

Jožef Stefan International Postgraduate School, Jamova cesta 39, SI-1000, Ljubljana, Slovenia.

Jožef Stefan International Postgraduate School, Jamova cesta 39, SI-1000, Ljubljana, Slovenia.

出版信息

J Environ Manage. 2022 Aug 1;315:115118. doi: 10.1016/j.jenvman.2022.115118. Epub 2022 Apr 25.

Abstract

Construction and demolition waste are one of the largest waste streams generated in the EU by volume. They consist of materials such as concrete, bricks, gypsum, wood, glass, metals, foams, plastics, solvents, asbestos, asphalt, and excavated soil. Nowadays, many of them can be recycled, some even endlessly. This research attempts to contribute to the non-destructive characterization of such a waste with a novel method using terahertz radiation. By combining terahertz imaging and spectroscopy, we performed analytical characterization of selected building materials. The results demonstrate that terahertz technology allows an inside view into some of the non-conducting building materials. THz imaging can detect and visualize the organic solvents in the insulation material, which are often disposed of together with construction and demolition waste. It can also visualize the content of foreign objects or hazardous and toxic substances, which is important for their separation in the recyclate according to the type of the material. Furthermore, THz spectra reveal some spectral lines that can differentiate between different plastics and polymers within the frequency range of 1.0-4.5 THz due to different material structures and chemical compositions. Such results significantly contribute to the decision of which product meets all the standards, which can be returned to the production process due to irregularities or may be disposed of as waste. The only way to reduce construction and demolition waste in the future is to encourage the adoption of innovative technologies like terahertz spectroscopy in combination with traditional methods. This approach can bring some changes also to the construction design philosophy toward more sustainable buildings with minimum end-of-life demolition.

摘要

建筑和拆除垃圾是欧盟按体积计算产生的最大垃圾流之一。它们由混凝土、砖块、石膏、木材、玻璃、金属、泡沫、塑料、溶剂、石棉、沥青和挖掘土壤等材料组成。如今,其中许多材料可以回收利用,有些甚至可以无限期回收。本研究试图通过使用太赫兹辐射的新方法为这种废物的无损特性描述做出贡献。通过太赫兹成像和光谱学的结合,我们对选定的建筑材料进行了分析特性描述。结果表明,太赫兹技术允许对一些非导电建筑材料进行内部观察。THz 成像可以检测和可视化绝缘材料中的有机溶剂,这些有机溶剂通常与建筑和拆除垃圾一起处理。它还可以可视化异物或有害物质的含量,这对于根据材料类型在回收物中进行分离非常重要。此外,THz 光谱揭示了一些由于不同材料结构和化学成分而在 1.0-4.5 THz 频率范围内可以区分不同塑料和聚合物的谱线。这些结果对决定哪些产品符合所有标准有重要意义,这些产品由于不规则而可以返回生产过程,或者可能作为废物处理。未来减少建筑和拆除垃圾的唯一方法是鼓励采用太赫兹光谱等创新技术与传统方法相结合。这种方法还可以为建筑设计理念带来一些变化,朝着具有最小寿命结束拆除的更可持续建筑发展。

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