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Preliminary Investigation into the Effects of Carbonation on Cement-Solidified Hazardous Wastes

机译:碳酸化对水泥固溶危险废物影响的初步研究

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This paper reports results from a preliminary investigation into the effects of carbonation on a cement-solidified waste material. The waste, which is a commercially blended product, was solidified using different amounts of ordinary Portland cement (OPC) and cured in three different environments: nitrogen, air, and carbon dioxide. After 28 days, the samples were investigated for leachate metals fixation, strength, and microstructural development. Carbonation was found to play an important role in "accelerating" the apparent hydration of binder within the solidified waste forms. Carbonated solidified products were characterized by enhanced calcite contents, higher strength values, and a significant reduction in leach-able metals extracted compared to air-cured samples. Samples cured under a nitrogen atmosphere showed significant retardation of hydration, resulting in low strength values but improved fixation of leachable metals.
机译:本文报告了对碳化对水泥固化废料的影响的初步调查结果。使用不同量的普通硅酸盐水泥(OPC)固化作为商业混合产品的废物,并在三种不同的环境中进行固化:氮气,空气和二氧化碳。 28天后,对样品进行渗滤液金属固定,强度和微结构发展的研究。发现碳酸化在“加速”固化废物形式中粘合剂的表观水合中起重要作用。与空气固化样品相比,碳酸固化产物的特征在于方解石含量增加,强度值更高,并且提取的可浸出金属显着减少。在氮气氛下固化的样品显示出明显的水合作用阻滞,导致强度值较低,但可浸出金属的固定性得到改善。

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