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Dual role of coal fly ash in copper ion adsorption followed by thermal stabilization in a spinel solid solution

机译:煤粉粉煤灰在铜离子吸附中的双重作用,然后在尖晶石固溶下热稳定

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摘要

Coal fly ash is usually used as a cost-effective adsorbent for heavy metal removal, accumulating large amounts of spent coal fly ash that requires further disposal. In this study, fly ash that adsorbs copper with a maximum copper adsorption capacity of 48.8 mg g(-1) was further sintered at 900-1050 degrees C, and it was found that the copper is thermally incorporated in a spinel structure in aluminum- and iron-containing ceramic matrices provided by the fly ash. To further explore the immobilization mechanisms of copper in both aluminum- and iron-containing ceramic matrices like those in fly ash, two systems were prepared from CuO + Fe2O3 + kaolinite and CuO + Fe2O3 + Al2O3. A CuAlxFe2-xO4 spinel solid solution was formed, the peak intensity of which was found to increase upon an increase in the sintering temperature until a maximum amount was reached at 1150 degrees C. In the CuO + Fe2O3 + Al2O3 system, the 2 value of the CuAlxFe2-xO4 peaks was found to increase due to the continuous engagement of aluminum in the spinel structure. However, iron was found to be more likely to react with the copper in CuO + Fe2O3 + kaolinite during the formation of CuAlxFe2-xO4. Through effective adsorption of copper on coal fly ash and the subsequent copper stabilization in the spinel, this study found a dual role for fly ash in copper immobilization and further confirmed the potential to recycle waste coal fly ash as a marketable ceramic material.
机译:粉煤灰通常用作重金属去除具有成本效益的吸附剂,积累大量的废煤飞灰需要进一步处置。在这项研究中,飞灰吸附铜具有最大铜吸附容量48.8毫克克(-1)在900-1050摄氏度下进一步烧结,并且发现,该铜在尖晶石结构热并入铝和铁 - 含有由飞灰提供陶瓷基质。为了进一步探索在两个铝和陶瓷基质如那些在飞灰含铁,从氧化铜+的Fe2O3 +高岭石和CuO +的Fe2O3 +氧化铝制备的两种系统铜的固定机制。形成甲CuAlxFe2-xO4的尖晶石固溶体的峰强度,其中被发现时的增加烧结温度增加,直到最大量在1150℃。在CuO的+ Fe2O3的+ Al2O3系达到的2值所述CuAlxFe2-xO4的峰,发现增加由于铝在尖晶石结构的连续接合。然而,铁被认为是更可能CuAlxFe2-xO4的形成过程中与以CuO +的Fe2O3 +高岭石铜反应。通过有效的吸附铜离子对粉煤灰和尖晶石随后的铜稳定,这项研究发现,在铜的固定粉煤灰的双重作用,进一步确认为销售陶瓷材料回收废料粉煤灰的潜力。

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  • 来源
    《RSC Advances》 |2018年第16期|共8页
  • 作者单位

    Southern Univ Sci &

    Technol Sch Environm Sci &

    Engn 1088 Xueyuan Blvd Shenzhen 518055 Peoples R China;

    Southern Univ Sci &

    Technol Sch Environm Sci &

    Engn 1088 Xueyuan Blvd Shenzhen 518055 Peoples R China;

    Hong Kong Baptist Univ Dept Chem State Key Lab Environm &

    Biol Anal Hong Kong Hong Kong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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