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AlO添加剂对1.13纳米雪硅钙石合成动力学及其结晶度和形态的影响。

Influence of AlO Additive on the Synthesis Kinetics of 1.13 nm Tobermorite, and Its Crystallinity and Morphology.

作者信息

Siauciunas Raimundas, Steponaityte Liveta, Dzvinka Marius, Kareiva Aivaras

机构信息

Department of Silicate Technology, Kaunas University of Technology, Radvilenu 19, LT-50254 Kaunas, Lithuania.

Faculty of Chemistry and Geosciences, Vilnius University, Naugarduko 24, LT-03225 Vilnius, Lithuania.

出版信息

Materials (Basel). 2025 Jun 29;18(13):3086. doi: 10.3390/ma18133086.

Abstract

One of the effective types of heat-resistant insulating products with an operating temperature of 1050 °C is made from calcium silicates or their hydrates. These materials are made from synthetic xonotlite and 1.13 nm tobermorite. Various wastes and by-products from other industries can be used for the synthesis of the latter compound. However, such raw materials often contain various impurities, especially Al-containing compounds, which strongly influence the kinetics of 1.13 nm tobermorite formation and its properties. Using XRD, DSC, TG, and SEM/EDX methods, it was found that at the beginning of the hydrothermal synthesis, the AlO additive promotes the formation of 1.13 nm tobermorite; however, it later begins to inhibit the recrystallization of semi-crystalline C-S-H(I)-type calcium silicate hydrate and pure, high-crystallinity 1.13 nm tobermorite is more easily formed in mixtures without the aluminum additive. Aluminum oxide also influence the morphology of 1.13 nm tobermorite. When hydrothermally curing the CaO-SiO mixture, long, thin fibers (needles) are formed within 24 h. Later, they thicken and form rectangular parallelepiped crystals. After adding alumina, the product produced by 24 h synthesis is dominated by agglomerates, the surface of which is partially covered with crystal plates. By extending the synthesis duration, amorphous aggregates are absent and the crystal shape becomes increasingly square.

摘要

一种工作温度为1050℃的高效耐热绝缘产品由硅酸钙或其水合物制成。这些材料由合成硬硅钙石和1.13纳米的雪硅钙石制成。其他行业的各种废料和副产品可用于合成后一种化合物。然而,此类原材料通常含有各种杂质,尤其是含铝化合物,这会强烈影响1.13纳米雪硅钙石的形成动力学及其性能。使用XRD、DSC、TG和SEM/EDX方法发现,在水热合成开始时,AlO添加剂促进1.13纳米雪硅钙石的形成;然而,随后它开始抑制半结晶C-S-H(I)型硅酸钙水合物的重结晶,并且在没有铝添加剂的混合物中更容易形成纯的、高结晶度的1.13纳米雪硅钙石。氧化铝也会影响1.13纳米雪硅钙石的形态。对CaO-SiO混合物进行水热养护时,24小时内会形成长而细的纤维(针状)。随后,它们变粗并形成长方体晶体。添加氧化铝后,24小时合成产生的产物以团聚体为主,其表面部分覆盖有晶板。通过延长合成时间,无定形聚集体消失,晶体形状变得越来越方正。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4318/12251054/80c71d3be94b/materials-18-03086-g001.jpg

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