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Strength Properties and Microstructural Characteristics of Stabilized Dredged Materials at High Water Contents

机译:高水含量稳定疏浚材料的强度性能和微观结构特征

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摘要

Dredged materials (DMs) with high initial water content are often generated during construction projects of ports and waterways, as well as during the dredging of rivers and lakes in China. The cement mixing method is commonly introduced to render these waste materials sustainable earthwork resources. In this study, phosphogypsum is used as a water reducing agent together with cement to stabilize the DMs at high water content. An unconfined compressive strength test, a scanning electron microscopy test (SEM), and a mercury intrusion porosimetry (MIP) test were used in combination to investigate the strength properties and microstructural characteristics of the stabilized dredged material (SDM). It is found that there exists an optimal phosphogypsum content when it is used to stabilize the DMs together with cement. SEM results showed that the strength of the SDM originates from the cementitious bonding and pore-filling of hydration products. MIP results further clarified that total pore volume, average entrance pore diameter, and D-p50 were suppressed with an increase in cementing material content and curing period. The strength properties and microstructural characteristics show a high consistency.
机译:在港口和水道的建设项目中,通常会产生具有高初始含水量的疏浚材料(DMS),以及在中国河流和湖泊的疏浚过程中。通常引入水泥混合方法,以使这些废料可持续的土工资源。在该研究中,磷酸缺口用作水还原剂以及水泥,以在高含水量下稳定DMS。用于组合使用不包含扫描的压缩强度试验,扫描电子显微镜测试(SEM)和汞侵入孔隙瘤(MIP)试验,以研究稳定的疏浚物(SDM)的强度性能和微观结构特性。发现当它用于将DMS与水泥一起稳定时,存在最佳的磷酸缺口含量。 SEM结果表明,SDM的强度起源于水泥粘接和水合产物的孔隙填充。 MIP结果进一步阐明了全孔体积,平均入口孔径和D-P50,随着固井材料含量和固化期的增加。强度性质和微观结构特性显示出高一致性。

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