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Preparation and pore-forming mechanism of MgO–Al2O3–CaO-based porous ceramics using phosphorus tailings

尾矿 材料科学 烧结 铝酸盐 原材料 多孔性 陶瓷 抗压强度 尖晶石 冶金 碳纤维 复合材料 水泥 化学 复合数 有机化学
作者
Yang Huang,Nanyan Hu,Yicheng Ye,Zhibing Ou,Xin Shi
出处
期刊:Ceramics International [Elsevier BV]
卷期号:48 (20): 29882-29891 被引量:36
标识
DOI:10.1016/j.ceramint.2022.06.253
摘要

A simple strategy for preparing MgO–Al 2 O 3 –CaO-based porous ceramics (MACPC) with high strength and ultralow thermal conductivity has been proposed in this work based on the raw material of phosphorus tailings. The effects of phosphorus tailings content, carbon black addition and heat treatment temperature on the properties of MACPC were studied, and their pore-forming mechanism during sintering was revealed. The results showed that the main phase composition of MACPC was magnesia alumina spinel and calcium aluminate after sintering at 1225 °C. Furthermore, the MACPC exhibited excellent comprehensive properties when 60 wt% phosphorus tailings and 40 wt% alumina were added, whose apparent porosity was 62.8%, cold compressive strength was 14.8 MPa, and the thermal conductivity was 0.106 W/(m·K) at 800 °C. The synchronously enhanced strength and thermal insulation properties of MACPC were related to the formation of uniformly distributed micropores (<2 μm) and passages in the matrix, which originated from the decomposition of phosphorus tailings and the burnt out of carbon black during the sintering process. The preparation of MACPC with high temperature resistance and excellent mechanical and thermal insulation properties with the raw material of phosphorus tailings provided an effective method for the high-value utilization of phosphorus tailings.
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