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Vitrification for reclaiming spent alkaline batteries

机译:玻璃化回收废旧碱性电池

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摘要

The object of this study is to stabilize spent alkaline batteries and to recover useful metals. A blend of dolomite, limestone, and cullet was added to act as a reductant and a glass matrix former in vitrification. Specimens were vitrified using an electrical heating furnace at 1400 ℃ and the output products included slag, ingot, flue gas, and fly ash. The major constituents of the slag were Ca, Mn, and Si, and the results of the toxicity leaching characteristics met the standards in Taiwan. The ingot was a good material for use in production of stainless steel, due to being mainly composed of Fe and Mn. For the fly ash, the high level of Zn makes it economical to recover. The distribution of metals indicated that most of Co, Cr, Cu, Fe, Mn, and Ni moved to the ingot, while Al, Ca, Mg, and Si stayed in the slag; Hg vaporized as gas phase into the flue gas; and Cd, Pb, and Zn were predominately in the fly ash. Recovery efficiency for Fe and Zn was >90% and the results show that vitrification is a promising technology for reclaiming spent alkaline batteries.
机译:这项研究的目的是稳定用过的碱性电池并回收有用的金属。加入白云石,石灰石和碎玻璃的混合物以在玻璃化中用作还原剂和玻璃基质形成剂。使用电加热炉在1400℃对样品进行玻璃化,输出产物包括矿渣,铸锭,烟气和粉煤灰。炉渣的主要成分是钙,锰和硅,其毒性浸出特性的结果符合台湾的标准。由于主要由Fe和Mn组成,该铸锭是用于生产不锈钢的良好材料。对于粉煤灰,高含量的锌使其经济回收。金属的分布表明,大部分Co,Cr,Cu,Fe,Mn和Ni移至铸锭,而Al,Ca,Mg和Si留在炉渣中。汞以气相蒸发进入烟道气;粉煤灰中的Cd,Pb和Zn占主导地位。铁和锌的回收率> 90%,结果表明,玻璃化是回收废旧碱性电池的有前途的技术。

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  • 来源
    《Waste Management》 |2009年第7期|2132-2139|共8页
  • 作者单位

    Department of Safety Health and Environmental Engineering, Chung Hwa University of Medical Technology, 89, Wenhwa 1st St., Rende Shiang, Tainan County 71703, Taiwan, ROC;

    Department of Environmental Engineering, National Cheng Kung University, 1 University Road, Tainan 70101, Taiwan, ROC Sustainable Environment Research Center, National Cheng Kung University, 500, Sec. 3 An-Ming Rd., Tainan 709, Taiwan, ROC;

    Department of Environmental Engineering, National Cheng Kung University, 1 University Road, Tainan 70101, Taiwan, ROC;

    Department of Environmental Engineering, National Cheng Kung University, 1 University Road, Tainan 70101, Taiwan, ROC;

    Department of Chemical and Materials Engineering, Cheng Shiu University, 840, Cheng-Ching Rd., Niaosong Township, Kaohsiung County 833, Taiwan, ROC;

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