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首页> 外文期刊>Journal of Cleaner Production >Reuse of construction waste to produce thermoluminescent sensor for use in highway traffic control
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Reuse of construction waste to produce thermoluminescent sensor for use in highway traffic control

机译:再利用建筑废料生产用于道路交通控制的热致发光传感器

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Brazil's construction industry contributes significantly to growth of the nation's gross domestic product, but it is also among the world's largest generators of construction waste (CW), which, if not properly disposed of, can have a significant impact on the environment. A proposal for the recycling and reduction of construction waste is presented in this paper. This work aimed to produce a traffic orientation sensor by reusing CW and demonstrate the economic and environmental viability of the process. A 2(2) factorial planning was done varied ceramic and masonry CW content (0-5.5%) and they were mixed with 5 M ZnO pure to obtain CW-ZnO sensor by sol-gel method. The CW-ZnO samples were irradiated in a sealed chamber equipped with a UV lamp and the TL reader was used to measure luminescence and set their glow curves. Results showed that the best condition for obtaining the CW-ZnO sensor was found using 1% ceramic ON and 1% masonry CW, which yielded 80% of the luminescence of pure ZnO. However, the CW blend that presented the lowest luminescence yield suggests that the material can be used as an alternative to obtaining a photovoltaic cell. The proposed sensor is three times cheaper than the luminescence standard with revenues by US$ 970 thousand and profits by US$ 242 thousand per month. Thus, this work demonstrates the possibility of reusing CW to produce a traffic sensor helps mitigate the environmental impact of construction waste disposal in an economically viable way. (C) 2018 Elsevier Ltd. All rights reserved.
机译:巴西的建筑业为该国的国内生产总值的增长做出了巨大贡献,但它也是世界上最大的建筑垃圾产生者之一,如果处理不当,会对环境产生重大影响。本文提出了回收和减少建筑垃圾的建议。这项工作旨在通过重复使用CW来生产交通方向传感器,并演示该过程的经济和环境可行性。进行了2(2)因子分解规划,以改变陶瓷和砖石的CW含量(0-5.5%),然后将它们与5 M ZnO混合,通过溶胶-凝胶法获得CW-ZnO传感器。将CW-ZnO样品辐照在配备有紫外线灯的密封室中,并使用TL阅读器测量发光并设置其发光曲线。结果表明,使用1%的陶瓷ON和1%的砖石CW可以找到获得CW-ZnO传感器的最佳条件,这产生了纯ZnO发光的80%。但是,呈现最低发光率的CW共混物表明该材料可用作获得光伏电池的替代方法。拟议的传感器比发光标准便宜三倍,每​​月收入为97万美元,利润为24.2万美元。因此,这项工作证明了重复利用CW生产交通传感器的可能性,以经济上可行的方式帮助减轻建筑垃圾处理对环境的影响。 (C)2018 Elsevier Ltd.保留所有权利。

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