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首页> 外文期刊>Cement and Concrete Research >Calcium sulfoaluminate cement blended with OPC: A potential binder to encapsulate low-level radioactive slurries of complex chemistry
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Calcium sulfoaluminate cement blended with OPC: A potential binder to encapsulate low-level radioactive slurries of complex chemistry

机译:硫铝酸钙水泥与OPC的掺混物:一种潜在的粘合剂,用于封装复杂化学反应的低放射性浆液

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Investigations were carried out in order to solidify in cement a low-level radioactive waste of complex chemistry obtained by mixing two process streams, a slurry produced by ultra-filtration and an evaporator concentrate with a salinity of 600 gxL~(-1). Direct cementation with Portland cement (OPC) was not possible due to a very long setting time of cement resulting from borates and phosphates contained in the waste. According to a classical approach, this difficulty could be solved by pre-treating the waste to reduce adverse cement-waste interactions. A two-stage process was defined, including precipitation of phosphates and sulfates at 60 deg C by adding calcium and barium hydroxide to the waste stream, and encapsulation with a blend of OPC and calcium aluminate cement (CAC) to convert borates into calcium quadriboroaluminate. The material obtained with a 30 percent waste loading complied with specifications. However, the pre-treatment step made the process complex and costly. A new alternative was then developed: the direct encapsulation of the waste with a blend of OPC and calcium sulfoaluminate cement (CSA) at room temperature. Setting inhibition was suppressed, which probably resulted from the fact that when hydrating, CSA cement formed significant amounts of ettringite and calcium monosulfoaluminate hydrate which incorporated borates into their structure. As a consequence, the waste loading could be increased to 56 percent while keeping acceptable properties at the laboratory scale.
机译:为了在水泥中固化通过混合两种工艺流,超滤产生的浆液和盐度为600 gxL〜(-1)的蒸发浓缩液获得的复杂化学的低放射性废料,已进行了研究。由于废物中所含的硼酸盐和磷酸盐会导致水泥凝固时间过长,因此无法使用波特兰水泥(OPC)直接粘结。根据经典方法,可以通过预处理废物以减少不利的水泥与废物相互作用来解决此难题。定义了两个阶段的过程,包括在60摄氏度下通过向废物流中加入氢氧化钙和氢氧化钡沉淀磷酸盐和硫酸盐,并用OPC和铝酸钙水泥(CAC)的混合物进行封装以将硼酸盐转化为四硼铝酸钙。废料装载量达到30%的材料符合规范。但是,预处理步骤使该过程复杂且昂贵。然后开发了一种新的替代方法:在室温下用OPC和硫铝铝酸钙水泥(CSA)的混合物直接封装废物。凝结抑制得到抑制,这可能是由于在水合时CSA水泥形成了大量的钙矾石和单硫酸铝钙水合物,并在其结构中掺入了硼酸盐。结果,废物量可以增加到56%,同时在实验室范围内保持可接受的性能。

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