首页> 外文期刊>Journal of the Air & Waste Management Association >Stabilization of heavy metals in municipal sewage sludge by freeze-thaw treatment with a blend of diatomite, FeSO_4, and Ca(OH)_2
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Stabilization of heavy metals in municipal sewage sludge by freeze-thaw treatment with a blend of diatomite, FeSO_4, and Ca(OH)_2

机译:硅藻土,FeSO_4和Ca(OH)_2的掺混物冻融处理可稳定城市污水污泥中的重金属

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摘要

In this work, the effects of diatomite with 15% FeSO_4•7H_2O and 7.5% Ca(OH)_2 on sludge stabilization were investigated using batch leaching tests. The influence of cell rupture caused by freezing and thawing on stabilization was also evaluated. The results indicated that the optimal diatomite percentage was 2%. Cell rupture by freezing and thawing reduced heavy metal leachability, followed by cell death and decrease of organic groups. The concentration of heavy metals in sludge leachate increased after cell rupture, indicating that the heavy metal leachability was reduced after freezing and thawings. Moreover, the stabilization effects were generally improved after freezing and thawing. As compared with the stabilization of the original sludge, the unstable fractions decreased and the residual fractions of the heavy metals increased in the stabilized sludge after cell rupture. Implications: This study developed a method to stabilize heavy metals in municipal sewage sludge. Diatomite combined with FeSO_4·7H_2O and Ca(OH)_2 improved the treatment of sewage sludge contaminated by heavy metals. Cell lysis by freeze-thaw treatment reduced the risk of leaching heavy metals caused by cell death and decreased major organic groups in the sludge.
机译:在这项工作中,使用分批浸出试验研究了含15%FeSO_4•7H_2O和7.5%Ca(OH)_2的硅藻土对污泥稳定性的影响。还评估了由冷冻和解冻引起的细胞破裂对稳定性的影响。结果表明,最佳的硅藻土百分比为2%。冷冻和解冻会使细胞破裂,从而降低重金属的浸出能力,继而导致细胞死亡和有机基团减少。细胞破裂后,污泥渗滤液中重金属的浓度增加,这表明冷冻和解冻后重金属的浸出性降低。此外,冷冻和解冻后的稳定效果通常得到改善。与稳定原始污泥相比,细胞破裂后,稳定污泥中的不稳定部分减少,重金属残留部分增加。启示:这项研究开发了一种稳定市政污水污泥中重金属的方法。硅藻土与FeSO_4·7H_2O和Ca(OH)_2的结合改善了对重金属污染的污泥的处理。通过冻融处理的细胞裂解降低了由细胞死亡引起的重金属浸出的风险,并减少了污泥中的主要有机基团。

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  • 作者

    Wang Jing; Fu Rongbing; Xu Zhen;

  • 作者单位

    Shanghai Academy of Environmental Sciences, Shanghai, China;

    College of Environmental Science and Engineering, Tongji University, Shanghai, China;

    Shanghai Academy of Environmental Sciences, Shanghai, China;

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