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Safe and economic disposal of water treatment residuals by reusing it as a substitution layer in roads construction (spectroscopic and geotechnical study)

机译:通过将其作为道路建设中的替代层(光谱和岩土学学研究)将其作为替代层进行安全和经济处理水处理残留物

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摘要

Cost-effective construction techniques, such as reusing waste materials, play important role in dramatically reduce costs. In recent years, sludges have gained considerable attention as a geotechnical material. Increase in the demand of drinking water from purification plants produces a huge amount of water treatment residuals (WTRs). The disposal of such residues can be considered problematic issue. In this study, innovate and economic method to disposal of WTRs was presented. Comprehensive experimental investigations have been done to determine the effect of utilizing WTRs as a substitution layer in collapsing soil through roads construction processes. The investigations extended to the geotechnical and spectroscopic properties. Tests were carried out on the soil sample mixing with 0, 4, 8, 12, and 16% of WTRs. The samples morphology and composition are characterized by scanning electron microscopy (SEM) and the energy dispersive spectroscope analyzer (EDS). The microstructure and organic constituents are analyzed by X-ray diffraction (XRD) and the Fourier transform infrared (FTIR). The geotechnical measurements include particle size distribution (PSD), single odometer test (SOT), modified proctor test, and the California bearing ratio (CBR). The microstructure analysis confirms that WTRs acted as a pore filler to decrease in porosity and create a denser and solidified structure which reduces the suction and maximum collapse potential. Mineralogical analyses implied that the soil with WTRs turns into a rich medium with metal cations and organic matters that react with minerals to form binding materials. From the geotechnical point of view, WTRs can be safely deposed by mixing with collapsing soil as a subgrade of road construction up to a value of 10% without any impact or reduction on CBR values. The reduction in the required amount of subgrade required by 10% effectively decreases the cost of road construction. Moreover, the results illustrate the remarkable improvement in the collapse potential of the soil, which is reduced by about 24.7% by mixing it with 10% WTRs.
机译:经济高效的施工技术,例如重用废料,在大大降低成本中起着重要作用。近年来,污泥是作为岩土材料的大量关注。从净化植物的饮用水需求增加产生大量的水处理残留物(WTR)。这些残留物的处置可以被认为是有问题的问题。在本研究中,提出了创新和经济方法处理WTR。已经进行了综合实验研究以确定利用WTR作为通过道路施工过程折叠土壤的替代层的效果。调查扩展到岩土和光谱性质。在与0,4,8,12和16%的WTR的土壤样品混合上进行试验。样品形态和组合物的特征在于扫描电子显微镜(SEM)和能量分散光谱分析仪(EDS)。通过X射线衍射(XRD)和傅里叶变换红外(FTIR)分析微观结构和有机成分。岩土测量包括粒度分布(PSD),单个内径仪测试(SOT),改进的PRECTOR测试和加州轴承比(CBR)。微观结构分析证实,充当孔填料WTRS到孔隙率降低和产生更致密的和固化的结构从而降低吸入管和最大潜在崩塌。矿物学分析暗示,具有WTR的土壤变成富含金属阳离子和有机物的富含介质,与矿物质反应形成结合材料。从岩土的角度来看,可以通过将坍塌的土壤混合作为道路施工的路基的折叠土壤来安全地吸引,其值为10%,而不会对CBR值进行任何影响或减少。 10%所需的所需路基的降低有效地降低了道路建设的成本。此外,结果说明了土壤塌陷电位的显着改善,通过用10%WTR将其混合,降低了约24.7%。

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