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评估采用 PHDVPSS 方法处理的稳定化 Zn 污染疏浚泥沙泥浆的长期性能。

Assessing long-term performance of stabilized Zn-contaminated dredged sediment slurry treated with the PHDVPSS method.

机构信息

Institute of Geotechnical and Underground Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China.

Department of Civil Engineering, Quaid-E-Awam University of Engineering, Sciences and Technology, Nawabshah, 67450, Sindh, Pakistan.

出版信息

Environ Sci Pollut Res Int. 2022 Mar;29(13):19262-19272. doi: 10.1007/s11356-021-17155-5. Epub 2021 Oct 29.

Abstract

Solidification/stabilization (S/S) has been widely used for effective treatment of dredged sediment (DS) for many years, with the objective of improving the mechanical properties of DS through the addition of inorganic cementitious materials. Most previous studies have reported the short-term performance of S/S. However, long-term effectiveness is critical, as contaminants remain underground and are subjected to a variety of environmental stresses that can degrade S/S materials. In this regard, this experimental work investigated the long-term efficacy of solidification/stabilization of dredged contaminated sediments (DCS) treated with a new integrated method, namely PHDVPSS, which uses a prefabricated horizontal drain (PHD) assisted by vacuum pressure (VP) as well as solidification/stabilization. The DCS were treated with Portland cement (PC) as binder in the PHDVPSS method (abbreviated as VP-PC) at different zinc (Zn) concentration levels and compared with the traditional cement-based solidification/stabilization method (abbreviated as SS-PC). A series of experimental tests such as unconfined compressive strength (UCS), toxicity characteristics leaching procedure (TCLP), X-ray diffraction (XRD) and scanning electron microscopy in conjunction with energy-dispersive spectroscopy (SEM-EDS) were performed to assess the long-term strength, leaching and microstructural characteristics of high-water-content DCS, respectively. The UCS test results indicated that the strength of VP-PC mixes increased significantly with curing time compared to the limited strength development of SS-PC mixes. After 180-day curing, VP-PC mixes exhibited 3.5-5.5 times higher UCS values than the SS-PC mixes. Furthermore, when compared to the SS-PC mixes, the VP-PC mixes had 14.7-36.4% lower leached Zn concentrations at different Zn levels. This is attributed to an increase in the least reactive F4 (residual) fraction and a decrease in the most mobile F1 (acid-soluble) fraction as confirmed by the BCR method. Microstructural tests including XRD and SEM-EDS revealed that calcium silicate hydrate-like compounds were identified as the main hydration products of both the VP-PC and SS-PC mixes. However, portlandite, a major hydration product of PC, was not detected in either case, which is attributed to the retardant effect of Zn on cement hydration. Overall, the experimental results showed that the PHDVPSS method, when compared to the conventional solidification/stabilization method, is a viable choice for treating high-water-content DCS at different Zn concentration levels with low cement content.

摘要

固化/稳定化(S/S)多年来一直被广泛用于有效处理疏浚沉积物(DS),其目的是通过添加无机胶凝材料来改善 DS 的力学性能。大多数先前的研究都报告了 S/S 的短期性能。然而,长期效果至关重要,因为污染物仍在地下,并受到各种环境压力的影响,这些压力会降解 S/S 材料。在这方面,这项实验工作研究了使用一种新的综合方法——预制水平排水(PHD)辅助真空压力(VP)以及固化/稳定化的处理对疏浚污染沉积物(DCS)的长期效果,该方法称为 PHDVPSS。DCS 采用波特兰水泥(PC)作为胶凝材料,在不同锌(Zn)浓度水平下采用 PHDVPSS 方法进行处理(简称 VP-PC),并与传统的基于水泥的固化/稳定化方法(简称 SS-PC)进行比较。进行了一系列实验测试,例如无侧限抗压强度(UCS)、毒性特征浸出程序(TCLP)、X 射线衍射(XRD)和扫描电子显微镜结合能量色散光谱(SEM-EDS),分别评估高含水率 DCS 的长期强度、浸出和微观结构特征。UCS 测试结果表明,与 SS-PC 混合物的强度发展有限相比,VP-PC 混合物的强度随着养护时间的增加而显著提高。在 180 天的养护后,VP-PC 混合物的 UCS 值比 SS-PC 混合物高 3.5-5.5 倍。此外,与 SS-PC 混合物相比,VP-PC 混合物在不同 Zn 水平下的浸出 Zn 浓度低 14.7-36.4%。这归因于 BCR 法确认的最不反应的 F4(残余)分数增加和最易移动的 F1(酸可溶)分数减少。微观结构测试,包括 XRD 和 SEM-EDS,表明钙硅水合物样化合物被确定为 VP-PC 和 SS-PC 混合物的主要水化产物。然而,在这两种情况下都没有检测到 PC 的主要水化产物氢氧化钙,这归因于 Zn 对水泥水化的缓凝作用。总的来说,实验结果表明,与传统的固化/稳定化方法相比,PHDVPSS 方法是一种可行的选择,可用于处理不同 Zn 浓度水平和低水泥含量的高含水率 DCS。

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