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首页> 外文期刊>Journal of neurosurgical sciences >Leachability and Microstructural Analysis of Clay and Lime Stabilized/Solidified Polluted Sediment - Long-Term Performance
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Leachability and Microstructural Analysis of Clay and Lime Stabilized/Solidified Polluted Sediment - Long-Term Performance

机译:粘土和石灰稳定/固化污染沉积物的可浸出性和微观结构分析 - 长期性能

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The objective of this study is to enable a better understanding of the effectiveness of solidification/stabilization (S/S) technique in treating polluted sediment,and provide the much needed validation of the longevity of the technology. In this research kaolinite and montmorillonite, with a certain proportion of lime, were used for S/S treatment of sediment polluted with metals. Leachability of metals was examined using the toxicity characteristic leaching procedure (TCLP) and the German standard leaching test (DIN 3841-4 S4) prescribed in national legislative. Results indicated successful S/S treatment using both clays and lime, from the aspect of all leached metals even with pH variations over time and slight changes in structural integrity of specimens. X-ray diffraction (XRD), scanning electron microscope (SEM) analyses and porosity measurement were also performed on the prepared monolithic matrices. XRD qualitative and semi-quantitative analysis proved hydration and pozzolanic product formation with increase in their content and finer crystallites formation over time. SEM analysis confirmed the presence of morphologically dense and stable structures while pore size distribution indicated on mesoporous matrices with ongoing compaction over time. Generally, structural microanalysis indicated the formation of hardened matrices over time and hydration process has been fully completed and further carbonation took place. Unconfined compressive strength measurement gave the satisfying results and matured monolite with 30 % of montmorillonite and 10 % of lime can be considered potentially applicable as non-load-bearing material. In summary, all results indicated that this kind of S/S treatment can achieve satisfactory durability and represent reliable and economically feasible technique for long-term remediation of metal polluted sediment.
机译:本研究的目的是更好地理解凝固/稳定化(S / S)技术在治疗污染沉积物中的有效性,并提供了对技术寿命的依赖验证。在该研究中,具有一定比例的石灰和蒙脱石,用于用金属污染的沉积物的S / S处理。使用国家立法中规定的毒性特征浸出程序(TCLP)和德国标准浸出试验(DIN 3841-4 S4)检查金属的可浸水性。结果表明,在所有浸出金属的方面,即使在pH变化随时间和标本结构完整性的微小变化,也从所有浸出金属的方面使用粘土和石灰的成功S / S处理。还对制备的整体基质进行X射线衍射(XRD),扫描电子显微镜(SEM)分析和孔隙率测量。 XRD定性和半定量分析证明了水合和火山糊化产物形成,随着时间的推移而增加。 SEM分析证实了形态学致密且稳定的结构,而孔径分布在中孔矩阵上显示,随着时间的推移持续压实。通常,结构微观分析表明,随着时间的推移,完全完成的硬化基质的形成并发生了进一步的碳酸化。无束缚的抗压强度测量得到了满足的结果,并且具有30%的蒙脱石和10%的石灰可以认为可能适用于非承载材料。总之,所有结果表明,这种S / S治疗可以实现令人满意的耐用性,并代表金属污染沉积物的长期修复可靠和经济上可行的技术。

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