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Development of new materials from waste electrical and electronic equipment: Characterization and catalytic application

机译:废弃电气电子设备中新材料的开发:表征和催化应用

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摘要

Wastes of electrical and electronic equipment (WEEE) represent an important environmental problem, since its composition includes heavy metals and organic compounds used as flame-retardants. Thermal treatments have been considered efficient processes on removal of these compounds, producing carbonaceous structures, which, together with the ceramic components of the WEEE (i.e. silica and alumina), works as support material for the metals. This mixture, associated with the metals present in WEEE, represents promising systems with potential for catalytic application. In this work, WEEE was thermally modified to generate materials that were extensively characterized. Raman spectrum for WEEE after thermal treatment showed two carbon associated bands. SEM images showed a metal nanoparticles distribution over a polymeric and ceramic support. After characterization, WEEE materials were applied in ethanol steam reforming reaction. The system obtained at higher temperature (800 ℃) exhibited the best activity, since it leads to high conversions (85%), hydrogen yield (30%) and H_2/CO ratio (3,6) at 750 ℃.
机译:电气和电子设备(WEEE)的废物代表了一个重要的环境问题,因为其成分包括用作阻燃剂的重金属和有机化合物。热处理被认为是去除这些化合物,产生碳质结构的有效方法,该碳质结构与WEEE的陶瓷成分(即二氧化硅和氧化铝)一起用作金属的载体材料。这种混合物与WEEE中存在的金属有关,代表了具有催化应用潜力的有前途的系统。在这项工作中,对WEEE进行了热改性,以生成被广泛表征的材料。热处理后WEEE的拉曼光谱显示了两个碳缔合带。 SEM图像显示金属纳米颗粒分布在聚合物和陶瓷载体上。表征后,将WEEE材料应用于乙醇蒸汽重整反应。在较高温度(800℃)下获得的系统表现出最佳的活性,因为它在750℃下具有较高的转化率(85%),氢气产率(30%)和H_2 / CO比(3,6)。

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