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首页> 外文期刊>Waste Management >Performance and mechanism of mold-pressing alkali-activated material from MSWI fly ash for its heavy metals solidification
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Performance and mechanism of mold-pressing alkali-activated material from MSWI fly ash for its heavy metals solidification

机译:MSWI粉煤灰模具压制碱活化材料的性能和机制,其重金属凝固

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摘要

The safe disposal of municipal solid waste incineration fly ash (MSWIFA) has become the weakest link of the circular economy of MSW due to its hazardous nature. In this study, we focused on the heavy metals solidification of MSWIFA by using alkali-activation technology and introducing a mold-pressing method. The influence of alkaline activator (AA) including alkali concentration and dosage of sodium silicate solution were well designed and studied. MSWIFA before and after alkali-activation, as well as the sample treated by commercial chelating agent (CA), were contrastively studied the performance of heavy metals solidification. The results show that the alkali-activated MSWIFA exhibits superior solidification for heavy metals than the blank control and the CA treated ones. With mold-pressing technology, the alkali-activated MSWIFA shows a core-shell structure, in which a thin layer that is composed of mainly N-A-S-H gel is as the shell and acts as a protective layer to inhibit the leaching of heavy metals. Besides, the introduced mold-pressing technology is beneficial for the improvement of materials strength and the reduction of AA dosage. The optimal AA composition is that the net concentration of NaOH is ~4 M and sodium silicate dosage is ~65 wt% in alkaline activator, and the total alkaline activator requirement is only 32 wt% of MSWIFA, yielding 7.9 MPa compressive strength at 10.2 MPa molding pressure. In summary, this work paves a potential new way for safe and recycling use of hazardous MSWIFA, which will be of great significance to environmental sustainability.
机译:由于其危险性,市政固体废物焚烧飞灰(Mswifa)的安全处置已成为MSW循环经济的最薄弱环节。在这项研究中,我们专注于使用碱活化技术并引入模压方法Mswifa的重金属凝固。碱性活化剂(AA)的影响包括碱浓度和硅酸钠溶液剂量的良好设计和研究。在碱活化之前和之后的Mswifa以及商业螯合剂(CA)处理的样品,对着重金属凝固的性能进行了对比研究。结果表明,碱活化的Mswifa对重金属的优异凝固具有比空白对照和Ca处理的稳定性。通过模具压制技术,碱活化的Mswifa示出了一种芯壳结构,其中主要由N-A-S-H凝胶组成的薄层是壳体,并用作保护层以抑制重金属的浸出。此外,引入的模具压力技术有利于提高材料强度和减少AA剂量。最佳AA组合物是NaOH的净浓度为〜4m,硅酸钠剂量为约65wt%,总碱性活化剂要求仅为32重量%的Mswifa,得到7.9MPa抗压强度为10.2MPa模塑压力。总之,这项工作为安全和回收利用危险的Mswifa提供了一种潜在的新方法,这对环境可持续性具有重要意义。

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  • 来源
    《Waste Management》 |2021年第5期|747-753|共7页
  • 作者单位

    Institute of Technology for Marine Civil Engineering. Shenzhen Institute of Information Technology Shenzhen 518172 PR China;

    School of Environmental Science and Engineering Southern University of Science and Technology (SUSTech) Shenzhen 518055 PR China;

    Institute of Technology for Marine Civil Engineering. Shenzhen Institute of Information Technology Shenzhen 518172 PR China;

    Institute of Technology for Marine Civil Engineering. Shenzhen Institute of Information Technology Shenzhen 518172 PR China;

    School of Environmental Science and Engineering Southern University of Science and Technology (SUSTech) Shenzhen 518055 PR China;

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

    MSWIFA; Alkali-activation; Mold-pressing; Alkaline activator; Heavy metal;

    机译:Mswifa;碱活化;模压;碱性活化剂;重金属;

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