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Synthesis, characterization and relevant mechanisms of one-part geopolymeric cement by calcining low-quality illite clay with alkali

机译:碱法煅烧劣质伊利石黏土制备单组分地质聚合物的合成,表征及相关机理

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Precursors synthesized through thermal activation of low-quality illite clay with alkali (NaOH or Na2CO3) were hydrated by only adding water to synthesize one-part geopolymer pastes, and the strength and the microstructures of relevant specimens were characterized. An acceptable compressive strength was obtained when the hydrated specimens were cured at 80 °C for 3 d. Thermal decomposition of the clay is distinctly altered by adding alkali, and the octahedral-coordinatedAl turns into tetrahedralAl after calcination according to IR analysis. Besides illite,most of the quartz in the clay is converted to X-ray amorphous geopolymer precursors. The nepheline formed during calcination disappears at elevated temperature 950 °C. It is found that the compressive strength of one-part geopolymers is positively related to the content of nepheline in the clinkers. Partial dissolution of clinker particles in water facilitates cementing property. No crystal hydrate is found during hydration so the cementing mechanism is proposed to be X-ray amorphous zeolite-like gel as what in two-part geopolymers.
机译:通过仅添加水就可将低质量伊利石粘土(用NaOH或Na2CO3)热活化合成的前驱物水合,以合成一部分地质聚合物浆料,并表征了相关试样的强度和微观结构。当水合试样在80°C固化3 d时,可获得可接受的抗压强度。通过添加碱明显改变了粘土的热分解,并且根据IR分析,煅烧后八面体配位的Al变成四面体Al。除伊利石外,粘土中的大多数石英都转化为X射线非晶态地质聚合物的前体。煅烧过程中形成的霞石在950°C的高温下消失。发现单组分地质聚合物的抗压强度与熟料中霞石的含量成正相关。熟料颗粒在水中的部分溶解有助于固井性能。在水合过程中未发现结晶水合物,因此,胶结机理被认为是X射线无定形沸石状凝胶,就像两部分地质聚合物中的凝胶一样。

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