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Microstructural study of carbonated cement-solidified synthetic heavy metal waste

机译:碳化水泥固化合成重金属废物的微观结构研究

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Synthetic wastes have been widely employed to help elucidate the complex interactions between real wastes and hydraulic binders during solidification. In this work, a laboratory produced metal waste mixed with Portland cement and immediately carbonated it using an accelerated method. The microstructures of carbonated and non-carbonated control samples were distinct despite both being dominated by unusually large phenograins derived from the waste. In the carbonated sample waste phenograins remained unaltered, whereas cement grains were largely decalcified. As a consequence ot decalcification, observable porosity was significantly reduced by the formation of precipitated carbonates.
机译:合成废料已被广泛用于帮助阐明固化过程中实际废料与水硬性粘结剂之间的复杂相互作用。在这项工作中,实验室产生了与波特兰水泥混合的金属废料,并立即采用加速方法将其碳酸盐化。碳酸化和非碳酸化对照样品的微观结构都不同,尽管它们均由源自废物的异常大的酚醛树脂占据主导地位。在含碳的样品中,废弃的酚醛树脂保持不变,而水泥颗粒则大大脱钙。作为脱钙的结果,可观察到的孔隙度通过沉淀碳酸盐的形成而显着降低。

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