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首页> 外文期刊>Waste Management >Stabilization-solidification-utilization of MSWI fly ash coupling CO_2 mineralization using a high-gravity rotating packed bed
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Stabilization-solidification-utilization of MSWI fly ash coupling CO_2 mineralization using a high-gravity rotating packed bed

机译:使用高重旋转堆叠床的MSWI飞灰耦合CO_2矿化的稳定 - 凝固利用

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摘要

Municipal solid waste incineration fly ash (MSWI-FA) has been regulated as a hazardous waste that needs to treat with stabilization, solidification and landfill due to its amount of heavy metals, chlorides, sulfates and dioxin. While the proper treated MSWI-FA can be utilized as pozzolanic material to reduce the usage of Portland cement. The present article aims to develop an integrated wet-extraction and carbonation process for MSWI-FA stabilization, solidification and utilization via the high-gravity technology. A bench-top experiment demonstrated the dechlorination and CO_2 sequestration of MSWI-FA and the carbonated product was applied as a supplementary cementitious material (SCM) in the cement mortar. Physical, chemical and thermal characteristics of raw, wet-extracted, and carbonated MSWI-FA were addressed in terms of the mean diameter, micropore area, micropore volume, chemical compositions, mineralogy and morphology. The effects of the liquid-to-solid ratio and high gravity factor were evaluated. Overall, a chloride extraction ratio of 36.35% and a CO_2 capture capacity of 258.5 g-CO_2 kg-FA~(-1) were achieved in the batch experiment. The results of water-energy consumption of chloride removal and CO_2 fixation provided a novel insight into the future process criterion. In addition, the carbonated FA was found as binder to partially substitute Portland cement due to its large content of calcium carbonate. The workability and mechanical strength of cement mortar with partial substitution of stabilized FA were evaluated to determine the potential FA utilization pathway. Finally, the continuous process tests determined the key operation indexes for future process scale-up.
机译:城市固体废物焚烧粉煤灰(MSWI-FA)被调节为危险废物,需要通过其重金属,氯化物,硫酸盐和二恶英的量来治疗稳定性,凝固和垃圾填埋场。虽然适当的经过处理的MSWI-FA可以用作火山灰材料,以减少波特兰水泥的使用。本文旨在通过高重力技术开发用于MSWI-FA稳定,凝固和利用的综合湿式提取和碳化过程。台面实验证明了MSWI-FA的脱氯和CO_2封存,并且在水泥砂浆中将碳酸产物施用为辅助水泥材料(SCM)。在平均直径,微孔面积,微孔体积,化学成分,矿物学和形态方面,解决了原料,湿式提取和碳酸化的MSWI-FA的物理,化学和热特性。评价液体与固体比和高重力因子的影响。总体而言,在分批实验中,氯化物提取比为36.35%的36.35%和258.5g-CO_2KG-FA〜(-1)的CO_2捕获容量。氯化物去除和CO_2固定的水 - 能量消耗结果提供了对未来过程标准的新颖洞察力。此外,由于其碳酸钙含量大,碳酸盐作为粘合剂被发现为粘合剂,以部分替代波特兰水泥。评价水泥砂浆的可加工性和机械强度,稳定的FA部分取代,确定潜在的FA利用途径。最后,连续的过程测试确定了未来流程缩放的关键操作索引。

著录项

  • 来源
    《Waste Management》 |2021年第2期|412-421|共10页
  • 作者单位

    Graduate Institute of Environmental Engineering National Taiwan University 71 Chou-Shan Road Da-an District Taipei City 10673 Taiwan;

    Department of Chemical Engineering and Biotechnology National Taipei University of Technology No. 1 Section 3 Zhongxiao E. Road Taipei City 10608 Taiwan;

    Graduate Institute of Environmental Engineering National Taiwan University 71 Chou-Shan Road Da-an District Taipei City 10673 Taiwan;

    Graduate Institute of Environmental Engineering National Taiwan University 71 Chou-Shan Road Da-an District Taipei City 10673 Taiwan;

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

    High-gravity rotating packed bed; MSWI-fly ash dechlorination; CO_2 mineralization; Supplementary cementitious material;

    机译:高重力旋转包装床;MSWI-粉煤灰脱氯;CO_2矿化;补充水泥材料;

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