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Copper stabilization in beneficial use of waterworks sludge and copper-laden electroplating sludge for ceramic materials

机译:铜稳定化,可有效利用用于陶瓷材料的水厂污泥和载铜电镀污泥

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摘要

A promising strategy for effectively incorporating metal-containing waste materials into a variety of ceramic products was devised in this study. Elemental analysis confirmed that copper was the predominant metal component in the collected electroplating sludge, and aluminum was the predominant constituent of waterworks sludge collected in Hong Kong. The use of waterworks sludge as an aluminum-rich precursor material to facilitate copper stabilization under thermal conditions provides a promising waste-to-resource strategy. When sintering the mixture of copper sludge and the 900 ℃ calcined waterworks sludge, the CuAl_2O_4 spinel phase was first detected at 650 ℃ and became the predominant product phase at temperatures higher than 850 ℃. Quantification of the XRD pattern using the Rietveld refinement method revealed that the weight of the CuAl_2O_4 spinel phase reached over 50% at 850 ℃. The strong signals of the CuAl_2O_4 phase continued until the temperature reached 1150℃, and further sintering initiated the generation of the other copper-hosting phases (CuAlO_2, Cu_2O, and CuO). The copper stabilization effect was evaluated by the copper teachability of the CuAl_2O_4 and CuO via the prolonged leaching experiments at a pH value of 4.9. The leaching results showed that the CuAl_2O_4 phase was superior to the CuAlO_2 and CuO phases for immobilizing hazardous copper over longer leaching periods. The findings clearly indicate that spinel formation is the most crucial metal stabilization mechanism when sintering multiphase copper sludge with aluminum-rich waterworks sludge, and suggest a promising and reliable technique for reusing both types of sludge waste for ceramic materials.
机译:在这项研究中,提出了一种有效地将含金属的废料有效地掺入各种陶瓷产品的策略。元素分析证实,铜是收集的电镀污泥中的主要金属成分,而铝是香港收集的水厂污泥的主要成分。使用水厂污泥作为富含铝的前体材料来促进热条件下的铜稳定化提供了一种有前途的废物资源化策略。烧结铜污泥和900℃煅烧的水厂污泥的混合物时,首先在650℃时检测到CuAl_2O_4尖晶石相,并在高于850℃的温度下成为主要的产物相。用Rietveld精制法对XRD图谱进行定量分析表明,在850℃,CuAl_2O_4尖晶石相的重量达到了50%以上。 CuAl_2O_4相的强信号一直持续到温度达到1150℃,并且进一步的烧结引发了其他铜固溶相(CuAlO_2,Cu_2O和CuO)的生成。通过在4.9的pH值下进行的长时间浸出实验,通过CuAl_2O_4和CuO的铜可教导性来评估铜的稳定效果。浸出结果表明,在更长的浸出时间内,CuAl_2O_4相在固定有害铜方面优于CuAlO_2和CuO相。这些发现清楚地表明,在将多相铜污泥与富含铝的水厂污泥烧结时,尖晶石的形成是最关键的金属稳定机制,并提出了一种有前途且可靠的技术,可将两种污泥废料再用于陶瓷材料。

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  • 来源
    《Waste Management》 |2014年第6期|1085-1091|共7页
  • 作者单位

    Department of Civil Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong, Hong Kong Special Administrative Region;

    Department of Applied Physics and Applied Mathematics, Henry Krumb School of Mines, Columbia University, New York, NY 10027, USA;

    Department of Civil Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong, Hong Kong Special Administrative Region;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electroplating sludge; Waterworks sludge; Ceramic materials; Rietveld refinement; Leaching;

    机译:电镀污泥;水厂污泥;陶瓷材料;Rietveld精致;浸出;

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