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LEACHING CHARACTERISTICS OF SOLIDIFICATION SYSTEM OF C(3)A/CUO

机译:C(3)A / Cup凝固系统的浸出特性

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This study was to evaluate the leaching characteristics of a solidification/stabilization system, using a static-renewal leaching test in which the leachant was renewed periodically after intervals of static leaching. Tricalcium aluminate was selected as a solidification agent and CuO as a contaminant to simplify the solidified waste. The model solidified waste matrix was vulnerable to the renewable acetic acid (1 N) solutions. The release of Ca was rapid; in about 10 extractions, the amount of Ca released had reached the maximum. Similarly, the leaching of Al was significant; about 90% of the total Al solidified was transferred to the acetic acid solution after 10 extractions. The proton promoted surface reaction is hypothesized to be the controlling process in dissolving the calcium compounds. The dissolution reactions would enlarge the capillary pores and produce new voids in the matrix that enhance solute leaching. Since both Ca and Al hydration compounds were rapidly leached out of the solid matrix, C(3)A eventually played an insignificant role in immobilizing the CuO constituent. [References: 9]
机译:这项研究旨在通过使用静态更新浸出测试来评估凝固/稳定化系统的浸出特性,该测试中的浸出液在经过静态浸出间隔后定期进行更新。选择铝酸三钙作为固化剂,选择CuO作为污染物,以简化固化废料。模型固化的废物基质易受可再生乙酸(1 N)溶液的影响。 Ca的释放迅速。在大约10次提取中,Ca的释放量达到了最大值。同样,铝的浸出也很重要。 10次​​萃取后,约90%固化的总Al转移到乙酸溶液中。质子促进的表面反应被认为是溶解钙化合物的控制过程。溶解反应将扩大毛细孔并在基质中产生新的空隙,从而增加溶质的浸出。由于Ca和Al的水合化合物都迅速从固体基质中浸出,C(3)A最终在固定CuO成分中起着微不足道的作用。 [参考:9]

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