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Structures and Metal Leachability of Sintered Sludge-Clay Ceramsite Affected by Raw Material Basicity

机译:原料碱度对污泥黏土陶粒结构和金属浸出性能的影响

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摘要

To solve the disposal problem of wastewater treatment sludge (WWTS), WWTS was mixed with clay and water glass (sodium silicate) for the production of lightweight ceramsite. The effect of mass ratio of CaO=SiO2 (defined as basicity) on physicochemical characteristics of ceramsite and stabilization of heavy metals was investigated. It was found that the optimal basicity for making ceramsite ranges was 0.024–0.069. The main thermal changes (≤ 1;000 °C) are phase transformations, which are caused by the evaporation and volatilization of water and carbonous matters and, finally, by the oxidation and decomposition of inorganic matters and minerals. Anorthite [Ca(Al_2Si_2O_8)] and amorphous silica (SiO_2) increase as the basicity increases. The formation of more multiple crystalline phases is the main reason for the decrease in the compressive strength of the ceramsite with higher basicity. Leaching contents of Cd, Cu, Cr, and Pb decrease as the basicity increases. The stable compounds of heavy metals in ceramsite are PbCrO_4, Cr_2O_3, CdSiO_3, and CuO, which prove that strong chemical bonds are formed and the leachability of these heavy metals is greatly reduced by the crystallization and chemical incorporation process. Results indicate that basicity can be used as an important parameter for controlling the properties of ceramsite.
机译:为了解决废水处理污泥(WWTS)的处置问题,将WWTS与粘土和水玻璃(硅酸钠)混合以生产轻质陶粒。研究了CaO = SiO2质量比(定义为碱度)对陶粒的物理化学特性和重金属稳定化的影响。研究发现,制作陶粒范围的最佳碱度为0.024-0.069。主要的热变化(≤1,000°C)是相变,这是由于水和碳质物质的蒸发和挥发,最后是由于无机物和矿物的氧化和分解而引起的。钙长石[Ca(Al_2Si_2O_8)]和无定形二氧化硅(SiO_2)随着碱度的增加而增加。形成更多的结晶相是碱度较高的陶粒抗压强度降低的主要原因。 Cd,Cu,Cr和Pb的浸出量随着碱度的增加而降低。陶粒中重金属的稳定化合物为PbCrO_4,Cr_2O_3,CdSiO_3和CuO,证明形成了牢固的化学键,并且通过结晶和化学结合过程大大降低了这些重金属的浸出性。结果表明,碱度可以用作控制陶粒特性的重要参数。

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