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首页> 外文期刊>Waste Management >Ultrasound-enhanced electrokinetic remediation for removal of Zn, Pb, Cu and Cd in municipal solid waste incineration fly ashes
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Ultrasound-enhanced electrokinetic remediation for removal of Zn, Pb, Cu and Cd in municipal solid waste incineration fly ashes

机译:超声强化电动修复去除城市垃圾焚烧飞灰中的Zn,Pb,Cu和Cd

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摘要

Low-frequency ultrasound generated by a transducer was investigated to activate the raw municipal solid waste incineration (MSWI) fly ashes in the electrokinetic process, aiming at enhancing heavy metal (HM) removal and achieving better remedial efficacy. The maximum removal efficiencies of 69.84%, 64.24%, 67.74% and 59.93% were obtained in the orthogonal tests of ultrasonication for Zn, Pb, Cu and Cd, respectively. The acoustic time of 30 min and controlling temperature of 45 °C in the operating parameters were quantitatively determined to optimize the ultrasonication of the MSWI fly ash matrices. The changes of acoustic time had a significant effect on the extraction efficiencies of all the four heavy metal elements in the sonication optimal experiments. The longer running time was preferred for the pretreatment of the fly ashes in according to the marginal mean removal results. The voltage gradient of 2 V/cm was most likely to improve the removals of four HMs during the electrokinetics in the range of 0.5–2 V/cm. The synergetic application of acidification and ultrasonication for the media treatment was demonstrated to be most effective in enhancing the remedial efficiencies in the further electrokinetic experiments compared with the other activation systems. Correspondingly, the leaching concentrations of Zn, Pb, Cu and Cd in the samples were reduced by 85.92%, 98.22%, 88.53% and 98.34%, respectively. The contaminants were continuously extracted from the solid grains of the fly ashes by the protonic attack and bubble implosion. The obtained risk-assessment-code values indicated the adoption of AUS-EKR system reduced the environmental toxicity for the fly ashes to the maximum extent.
机译:研究了由换能器产生的低频超声,以在电动过程中激活城市固体垃圾焚烧(MSWI)飞灰,以增强去除重金属(HM)的能力并达到更好的补救效果。在正交实验中,Zn,Pb,Cu和Cd的最大去除效率分别为69.84%,64.24%,67.74%和59.93%。定量确定了运行参数中30分钟的声学时间和45℃的控制温度,以优化MSWI粉煤灰基质的超声处理。在超声优化实验中,声波时间的变化对所有四种重金属元素的提取效率都有显着影响。根据边际平均去除结果,粉煤灰的预处理优选较长的运行时间。 2 V / cm的电压梯度最有可能在电动力学期间在0.5–2 V / cm的范围内改善四个HM的去除率。与其他活化系统相比,在进一步的电动实验中,酸化和超声协同处理介质的方法被证明在提高修复效率方面最有效。相应地,样品中锌,铅,铜和镉的浸出浓度分别降低了85.92%,98.22%,88.53%和98.34%。通过质子侵蚀和气泡内爆不断地从飞灰的固体颗粒中提取出污染物。所获得的风险评估代码值表明,采用AUS-EKR系统可最大程度地降低粉煤灰的环境毒性。

著录项

  • 来源
    《Waste Management》 |2018年第5期|226-235|共10页
  • 作者单位

    School of Chemistry and Materials Engineering, Changshu Institute of Technology,State Key Laboratory for Coal Mine Disaster Dynamics and Control, Chongqing University,School of Resource and Environmental Science, Chongqing University;

    School of Chemistry and Materials Engineering, Changshu Institute of Technology;

    School of Chemistry and Materials Engineering, Changshu Institute of Technology;

    State Key Laboratory for Coal Mine Disaster Dynamics and Control, Chongqing University,School of Resource and Environmental Science, Chongqing University;

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

    Low-frequency ultrasound; Electrokinetic; MSWI fly ashes; Heavy metals; Remedial efficiency;

    机译:低频超声;电动;MSWI飞灰;重金属;修复效率;

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