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长期反复冻融循环对复合固化/稳定化 Pb 污染土工程性质的影响:劣化特性与机理。

Effects of Long-Term Repeated Freeze-Thaw Cycles on the Engineering Properties of Compound Solidified/Stabilized Pb-Contaminated Soil: Deterioration Characteristics and Mechanisms.

机构信息

College of Civil Engineering, Chongqing University, Chongqing 400045, China.

Key Laboratory of New Technology for Construction of Cities in Mountain Area (Chongqing University), Ministry of Education, Chongqing 400045, China.

出版信息

Int J Environ Res Public Health. 2020 Mar 10;17(5):1798. doi: 10.3390/ijerph17051798.

Abstract

The effects of long-term repeated freeze-thaw cycles and pollution levels on the engineering properties ( and ) of Pb-contaminated soils were investigated in various laboratory tests. These soils were solidified/stabilized (S/S) with three types of cement-based combined binders (C2.5S5F5, C5S2.5F2.5, and C5S5, cement, lime, and fly ash, mixed in different proportions; these materials are widely used in S/S technology). The strength and permeability coefficient of compound solidified/stabilized Pb-contaminated soils (Pb-CSCSs) were determined based on measurements of unconfined compressive strength (UCS), direct shear, and permeability. CT scanning, scanning electron microscopy (SEM), and Fourier transform infrared spectroscopy (FTIR) tests were employed to analyse the deterioration mechanisms under various repetitions of freeze-thaw cycles. The results showed that, under repeated freeze-thaw cycles, the engineering properties of Pb-CSCSs all degraded to varying degrees, though degradation tended to stabilise after 30 days of freeze-thaw cycles. The study also found that the pollutants obstruct hydration and other favourable reactions within the soil structure (such as ion exchanges and agglomerations and pozzolanic reactions). The activation of hydration reactions and the rearrangement of soil particles by freeze-thaw cycles thus caused the engineering properties to fluctuate, and soils exhibited different deterioration characteristics with changes in Pb content.

摘要

研究了长期反复冻融循环和污染水平对受 Pb 污染土壤工程特性(和)的影响。这些土壤采用三种水泥基复合胶凝材料(C2.5S5F5、C5S2.5F2.5 和 C5S5,水泥、石灰和粉煤灰按不同比例混合;这些材料广泛应用于 S/S 技术)进行固化/稳定化(S/S)。根据无侧限抗压强度(UCS)、直剪和渗透试验,确定了复合固化/稳定化 Pb 污染土(Pb-CSCSs)的强度和渗透系数。采用 CT 扫描、扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)测试分析了在不同冻融循环次数下的劣化机理。结果表明,在反复冻融循环下,Pb-CSCSs 的工程特性均有不同程度的劣化,但经过 30 天的冻融循环后,劣化趋势趋于稳定。研究还发现,污染物阻碍了土壤结构内的水化和其他有利反应(如离子交换、团聚和火山灰反应)。因此,水化反应的激活和冻融循环引起的土壤颗粒重排导致工程特性波动,并且随着 Pb 含量的变化,土壤表现出不同的劣化特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b514/7084238/d5586c3df9e7/ijerph-17-01798-g001.jpg

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