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Innovative Synergistic Valorization of Lignite Fly Ash and Steel Industry Scrap-soil as Secondary Resources for Compacted Ceramics

机译:褐煤粉煤灰和钢铁工业废弃土壤的创新协同算法作为压实陶瓷的二级资源

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In the present research, the combined utilization of fly ash (FA), derived from a lignite-fed power station, along with scrap-soil (SS), a steel industry by-product, is investigated, for the development of eco-friendly ceramics, thus enhancing innovation and sustainability. The valorization of these low price and largely available industrial secondary resources as 100% the raw materials mixture in ceramic industry arises interesting technological, environmental and economical benefits. FA and SS were mixed in various proportions (0-70%wt. in SS), cold compacted at 20 tn load using an automated hydraulic press to form a series of 5 cm diameter discshaped specimens, and finally sintered at three different peak temperatures (1000°C, 1100°C and 1140°C) for 3h. Then, the specimen microstructure and physico-mechanical properties were characterized. According to the experimental results, a sintering temperature increase from 1000°C up to 1140°C significantly improves specimen densification, thus sharply enhancing the diametral tensile strength (DTS), from 0.5 MPa up to 12.8 MPa respectively for a 50-50%wt. FA-SS mixture. Mechanical strength also varies with the SS percentage in the raw materials. Physico-mechanical properties seem to be constant for specimens containing SS up to 60% at 1140°C.
机译:在目前的研究中,研究了从褐煤电站的粉煤灰(FA)的合并利用,以及钢铁土(SS),钢铁工业副产业,用于生态友好的发展陶瓷,从而提高创新和可持续性。这些低价和大部分可用的工业二级资源为100%陶瓷工业的原料混合物的算法出现了有趣的技术,环境和经济效益。 FA和SS以各种比例混合(0-70%wt。SS),使用自动液压机在20 TN负载下冷却,以形成一系列5cm直径的盘状样本,最后在三个不同的峰值温度下烧结( 1000°C,1100°C和1140°C)3小时。然后,表征样品微观结构和物理机械性能。根据实验结果,从1000℃的烧结温度增加至1140℃显着改善了样品致密化,从而分别急剧增强0.5MPa的直径抗拉强度(DTS),分别为50-50%wt 。 FA-SS混合物。机械强度也随着原料中的SS百分比而变化。含有在1140℃下含有高达60%的样品的物理机械性能似乎是恒定的。

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