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Utilizing titanium-containing pickling sludge to prepare raw meal for clinker production

机译:利用含钛的酸洗污泥,为熟料生产制备原料餐

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The titanium-containing pickling sludge (TS sludge) was regarded as one hazardous waste due its Cu, Zn and Ni leaching pollution, and there were hardly any effective treatments on the TS sludge. The feasibility of utilizing TS sludge to prepare raw meal was discussed by a series of experiments. The results revealed that 1.0% addition of the TS sludge effectively improved the burnability of the calcined clinker, and forwarded the formation of alite with more amounts and smaller size, while 5.0% addition of the TS sludge led to more formation of interstitial phases, and further hindered the formation of alite and belite. The optimal workability of produced cement at different calcination temperatures was acquired as the addition reached 1.0%, and the highest unconfined compressive strength of produced mortars was attained as 49.37 MPa (28 days) when 1.0% addition of the TS sludge was incorporated at 1450 degrees C. Fluorine in TS sludge mainly distributed in the silicate phases, and mostly accumulated on the boundary of alite and belite phases. The preferential distribution of titanium was detected in the interstitial phases, but the distribution of Cu, Ni and Zn was stochastic. This had a positive effect on the prevention of corrosion of steel, by free fluorine ions, when used in reinforced concrete, and it provides a feasible direction for the comprehensive utilization of titanium-containing pickling sludge with limited proportions in cement raw materials. The immobilization ratios of F, Cu, Zn and Ni were higher than 99.50%, and the hazardous elements leaching under different leaching environments incorporating 5.0% addition of the TS sludge would not provoke the second leaching pollution. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由于其Cu,Zn和Ni浸出污染,含钛酸洗污泥(TS污泥)被认为是一种危险的废物,并且对TS污泥几乎没有任何有效的治疗方法。通过一系列实验讨论了利用TS污泥来制备生膳的可行性。结果表明,1.0%加入TS污泥有效提高了煅烧熟料的燃料性,并转发了较多量和较小尺寸的煤矿的形成,而5.0%加入TS污泥导致了更多的间质阶段的形成,并且进一步阻碍了煤矿和脸部的形成。获得不同煅烧温度的生产水泥的最佳可加工性作为加入达到1.0%,并且当1.0%加入TS污泥加入1450度时,获得了产生的砂浆的最高不整合压缩强度为49.37MPa(28天) C. TS污泥中的氟主要分布在硅酸盐阶段,并且大部分积累在Alite和Bellite阶段的边界上。在间质相中检测到钛的优先分布,但Cu,Ni和Zn的分布是随机的。这对钢筋混凝土中使用的游离氟离子预防钢腐蚀的积极影响,它提供了可行的方向,用于综合含钛的酸洗污泥,在水泥原料中具有有限的比例。 F,Cu,Zn和Ni的固定比率高于99.50%,并且在不同浸出环境下浸出的危险因素含有5.0%的TS污泥的添加污染不会引起第二种浸出污染。 (c)2020 elestvier有限公司保留所有权利。

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