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首页> 外文期刊>Journal of materials in civil engineering >Development of a Novel Binder Using Lime and Incinerated Sewage Sludge Ash to Stabilize and Solidify Contaminated Marine Sediments with High Water Content as a Fill Material
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Development of a Novel Binder Using Lime and Incinerated Sewage Sludge Ash to Stabilize and Solidify Contaminated Marine Sediments with High Water Content as a Fill Material

机译:使用石灰和焚化的污水污泥灰稳定和固化高含水量的污染海洋沉积物的新型粘合剂的开发

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In this study, incinerated sewage sludge ash (ISSA) was applied to replace ordinary portland cement (OPC) and quick (unhydrated) lime at different ratios of 0%, 20%, and 50% for improving the properties of marine sediments with high water content by solidification/stabilization (S/S) method. Then, the effects of different binders and curing time (7 and 28 days) on sediment properties, including unconfined compressive strength (UCS), shear strength, durability, and leachability of metals were investigated. Test results indicated that lime-ISSA binder had several advantages over OPC-ISSA binder owing to its lower cost, lower environmental footprints, and better strength gains. The UCS, deformation resistance, and shear strength of the specimens prepared using lime as the binder were improved with the increasing addition of ISSA, and the water permeability was also effectively reduced. The results of environmental impact assessment (in particular leaching characteristics) indicated that the leachability of heavy metals in the lime-ISSA stabilized sediments was effectively mitigated. The proposed fill material complied with the acceptance criteria for engineering fills applications. A series of spectroscopic/microscopic laboratory tests including mercury intrusion porosimetry (MIP), thermogravimetric analysis (TGA), scanning electron microscopy (SEM), and X-ray diffraction (XRD) were performed to investigate the mechanisms controlling strength development and metals immobilization. The chemical reactions between the sediments, ISSA, and lime resulted in the formation of hydrated cementitious compounds that facilitated the decrease in pore volume and increase in strength and stabilization of heavy metals. On the whole, the lime-ISSA system could replace the OPC-ISSA binder to particularly improve the geotechnical and environmental properties of the contaminated sediments.
机译:在这项研究中,采用焚化的污水污泥灰(ISSA)替代普通硅酸盐水泥(OPC)和速溶(无水)石灰,其不同比例分别为0%,20%和50%,以改善高含水量海洋沉积物的性能。固化/稳定化(S / S)方法测定含量。然后,研究了不同的粘合剂和固化时间(7天和28天)对沉积物特性的影响,包括无侧限抗压强度(UCS),抗剪强度,耐久性和金属的浸出性。测试结果表明,石灰-ISSA粘合剂比OPC-ISSA粘合剂具有多个优势,因为它具有成本低,环境足迹小和强度提高的优点。随着加入ISSA的增加,使用石灰作为粘结剂制备的试样的UCS,抗变形性和剪切强度得到了改善,水渗透率也得到了有效降低。环境影响评估的结果(特别是浸出特性)表明,石灰-ISSA稳定沉积物中重金属的浸出性得到有效降低。建议的填充材料符合工程填充应用的验收标准。进行了一系列光谱/显微镜实验室测试,包括压汞法(MIP),热重分析(TGA),扫描电子显微镜(SEM)和X射线衍射(XRD),以研究控制强度发展和金属固定化的机制。沉积物,ISSA和石灰之间的化学反应导致形成水合胶结化合物,这些化合物促进了孔体积的减少,强度的增加和重金属的稳定化。总体而言,石灰-ISSA系统可以代替OPC-ISSA粘合剂,从而特别改善受污染沉积物的岩土和环境特性。

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