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ALKALI ACTIVATION OF ESTONIAN CA-RICH OIL SHALE ASHES: A SYNTHESIS

机译:碱活化爱沙尼亚CA的油页岩灰:合成

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This contribution reviews the geopolymeric potential of Ca-rich oil shale processing residues and aims at the characterization of the effects of different alkaline activator solutions on the polymerization of oil shale processing residues experimentally tested in recent-case studies. The analysis shows that the alkali activation of Estonian oil shale solid wastes is controlled by the presence and dissolution of reactive Ca-bearing phases. However, the geopolymeric potential of oil shale ashes is limited by the amount of available reactive Si and Al in the source material. Excess Ca in activated samples is precipitated as Ca-hydroxide showing Si deficiency in the system. To induce a substantial polymer formation, additional sources of readily available Si and Al must be introduced in the mix design. In addition, for industrial applications, further optimization of the mix design and curing conditions, including thermal curing, is needed to reduce dry shrinkage and microstructural cracking.
机译:该贡献评估Ca-Rich Sopale加工残留物的地质聚合物潜力,旨在表征不同碱性活化剂溶液对近期案例研究实验测试的油页岩加工残留物的聚合的表征。分析表明,爱沙尼亚油页岩固体废物的碱活化是通过反应性Ca轴承相的存在和溶解来控制。然而,油页岩灰的地质聚合物电位受到源材料中可用反应性Si和Al的量的限制。活化样品中过量的Ca沉淀为Ca-氢氧化物,显示系统中的Si缺乏症。为了诱导显着的聚合物形成,必须在混合设计中引入易于使用的Si和Al的附加源。此外,对于工业应用,需要进一步优化混合设计和固化条件,包括热固化,以减少干燥收缩和微观结构裂缝。

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