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Characterisation of Ba(OH)(2)-Na2SO4-blast furnace slag cement-like composites for the immobilisation of sulfate bearing nuclear wastes

机译:表征Ba(OH)(2)-Na2sO4-高炉矿渣水泥状复合材料固定含硫酸盐的核废料

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摘要

Soluble sulfate ions in nuclear waste can have detrimental effects on cementitious wasteforms and disposal facilities based on Portland cement. As an alternative, Ba(OH)2–Na2SO4–blast furnace slag composites are studied for immobilisation of sulfate-bearing nuclear wastes. Calcium aluminosilicate hydrate (C–A–S–H) with some barium substitution is the main binder phase, with barium also present in the low solubility salts BaSO4 and BaCO3, along with Ba-substituted calcium sulfoaluminate hydrates, and a hydrotalcite-type layered double hydroxide. This reaction product assemblage indicates that Ba(OH)2 and Na2SO4 act as alkaline activators and control the reaction of the slag in addition to forming insoluble BaSO4, and this restricts sulfate availability for further reaction as long as sufficient Ba(OH)2 is added. An increased content of Ba(OH)2 promotes a higher degree of reaction, and the formation of a highly cross-linked C–A–S–H gel. These Ba(OH)2–Na2SO4–blast furnace slag composite binders could be effective in the immobilisation of sulfate-bearing nuclear wastes.
机译:核废料中的可溶性硫酸根离子可能会对水泥废料和基于波特兰水泥的处置设施产生不利影响。作为替代方案,对Ba(OH)2-Na2SO4-高炉矿渣复合材料进行了研究,以固定含硫酸盐的核废料。水合的硅铝酸钙钙(C–A–S–H)是主要的粘结相,钡也存在于低溶解度盐BaSO4和BaCO3中,以及Ba取代的硫铝酸钙水合物和水滑石型层状双氢氧化物。该反应产物的组装表明,Ba(OH)2和Na2SO4充当碱性活化剂,除形成不溶性BaSO4外,还控制炉渣的反应,只要添加足够的Ba(OH)2,这就限制了硫酸盐进一步反应的可利用性。 。 Ba(OH)2含量的增加促进了更高程度的反应,并形成了高度交联的C–A–S–H凝胶。这些Ba(OH)2-Na2SO4-高炉矿渣复合粘结剂可有效固定含硫酸盐的核废料。

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