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首页> 外文期刊>Journal of Hazardous Materials >Preparation, characterization, and application of an eco-friendly sand-fixing material largely utilizing coal-based solid waste
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Preparation, characterization, and application of an eco-friendly sand-fixing material largely utilizing coal-based solid waste

机译:一种主要利用煤基固体废物的环保固沙材料的制备,表征和应用

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摘要

The resource utilization of coal-based solid waste (CBSW) is an urgent problem needed to be addressed. This study was based on the principle of intermediate-calcium system to prepare a self-degradable eco-friendly sand-fixing material (SFM) by using CBSW and aeolian sand as main raw materials, and its hydration mechanism and environmental characteristics were investigated. The hydration products of SFM were characterized by XRD, TG-DSC, FTIR, and SEM, and the environmental friendly performances were discussed by leaching test. The results show that the compressive strength of SFM reached 12.4 MPa after 28d when the (CaO + MgO)/(SiO2+ Al2O3) was 0.75. After 150 freeze-thaw cycles, the recorded strength was 8.82 MPa which met the international standards but it get completely degraded into powders after 200 freeze-thaw cycles. The leaching test results indicated that the heavy metals in raw materials were solidified; the SFM before and after complete degradation were all eco-friendly. The main hydration products of SFM were ettringite, C-S-H and C-A-S-H, which play an important effect in strength development and solidification of heavy metals. At the same time, the pilot-scale test would reach the similar results. This work provides an effective solution of resource utilization of CBSW and improving the eco-environment of the desert.
机译:煤基固体废物(CBSW)的资源利用是一个亟待解决的问题。本研究基于中钙系统原理,以CBSW和风沙为主要原料,制备了可自降解的环保型固沙材料,研究了其水合机理和环境特性。通过XRD,TG-DSC,FTIR和SEM对SFM的水合产物进行了表征,并通过浸出试验探讨了其环保性能。结果表明,当(CaO + MgO)/(SiO2 + Al2O3)为0.75时,SFM的抗压强度在28d后达到12.4MPa。经过150次冻融循环,记录的强度为8.82 MPa,达到国际标准,但经过200次冻融循环后,其完全降解为粉末。浸出试验结果表明,原料中的重金属已固化。完全降解前后的SFM都是环保的。 SFM的主要水合产物为钙矾石,C-S-H和C-A-S-H,它们对重金属的强度发展和凝固起重要作用。同时,中试规模的测试将达到类似的结果。这项工作为CBSW的资源利用和改善沙漠的生态环境提供了有效的解决方案。

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