重金属污泥陶砂环保型高强胶凝基质的性能及生态评价

IF 6.5 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
Hongrui Ma , Qicheng Shi , Lei Wang , Jianming He , Lijiong Shen , Mingfang Ba
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引用次数: 0

摘要

该研究使用来自重金属污泥的陶砂来缓解高强胶凝基质(HSCM)的高收缩率,同时也解决了环境问题。结果表明,粗砂和细砂都能有效地降低HSCM的自收缩。当粗陶砂替换率为47.5% %时,90 d龄期自缩水率可降低73.2 %。随着养护龄期的增加,陶砂的强度优势逐渐显现,粗陶砂的高替代率可使28 d龄期HSCM强度提高56 %。水化热试验和内部温湿度试验结果表明,加入陶砂有利于延缓水化高峰,提高中后期的湿度。SEM-BSE和X-CT还显示,陶砂的掺入有利于改善孔隙结构,强化界面过渡区,表明陶砂可以有效地作为HSCM的内部固化剂,从而提高HSCM的性能。浸出试验结果表明,HSCM对重金属的固结效果良好,浸出浓度低于规定限值。该成果可为重金属污泥资源化利用提供有效的技术支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance and ecological assessment of eco-friendly high-strength cementitious matrix incorporating pottery sand derived from heavy metal sludge
This study used pottery sand from heavy metal sludge to mitigate high shrinkage in the high-strength cementitious matrix (HSCM), which simultaneously serves as a solution to environmental concerns. The results show that both coarse and fine pottery sand can effectively reduce the autogenous shrinkage of HSCM. When the replacement rate of coarse pottery sand is 47.5 %, the autogenous shrinkage can be reduced by 73.2 % at the age of 90 days. The strength advantage of pottery sand gradually manifests as curing age increases, and the high replacement rate of coarse pottery sand can increase the strength of HSCM by 56 % at the age of 28 days. The results of the hydration heat test and the internal temperature and humidity test showed that adding pottery sand is beneficial in delaying the hydration peak and increasing the humidity in the middle and late stages. SEM-BSE and X-CT also revealed that the incorporation of pottery sand was beneficial in improving the pore structure and strengthening the interfacial transition zone, which indicates that pottery sand can effectively be utilized as an internal curing agent in HSCM, thereby enhancing the performance of HSCM. The leaching test results demonstrate the effective consolidation of heavy metals by the HSCM, with leaching concentration below regulatory limits. This achievement can provide effective technical support for the high-value resource utilization of heavy metal sludge.
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来源期刊
CiteScore
7.60
自引率
19.40%
发文量
842
审稿时长
63 days
期刊介绍: Case Studies in Construction Materials provides a forum for the rapid publication of short, structured Case Studies on construction materials. In addition, the journal also publishes related Short Communications, Full length research article and Comprehensive review papers (by invitation). The journal will provide an essential compendium of case studies for practicing engineers, designers, researchers and other practitioners who are interested in all aspects construction materials. The journal will publish new and novel case studies, but will also provide a forum for the publication of high quality descriptions of classic construction material problems and solutions.
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