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Making Belite-Rich Cement Clinkers with Industrial Inorganic Sludges

机译:用工业无机污泥制作富含富含色带的水泥熟料

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Some industrial inorganic wastes are widely used as alternative materials for cement production in recent years. Belite, namely dicalcium silicate (Ca_2SiO_4), is an important constituent of cement and contributes the later-age strength of mortar and concrete. In this study the belite-rich cement clinkers were produced with electroplating sludge and water-treatment-plant sludge. The purpose of this study was to prevent the transformation of belite to γ phase by means of ionic substitution of heavy-metal ions. X-ray powder diffractometry and the reference intensity ratio (RTR) method were used to determine the crystalline phases in clinkers. The electroplating sludge contains Cu, Zn, Cr, and Ni at 2.48-7.24%. When heavy-metal ions are absent in raw meal, there is about 25% of γ-dicalcium silicate in the produced clinker. The belite in the clinker produced with >5% of the electroplating sludge is mainly β phase. It appears that the transformation from β- to γ-dicalcium silicate is disrupted when heavy-metal ions are present.
机译:一些工业无机废物被广泛用作近年来水泥生产的替代材料。贝丝特,即硅酸钠(CA_2SIO_4),是水泥的重要组成部分,有助于砂浆和混凝土的后续年龄强度。在这项研究中,用电镀污泥和水处理植物污泥制备了富含含糊的水泥熟料。本研究的目的是通过重金属离子的离子取代来防止贝丝塞对γ相的转化。 X射线粉衍射测定法和参考强度比(RTR)方法用于确定熟料中的结晶相。电镀污泥含有Cu,Zn,Cr和Ni,为2.48-7.24%。当原始膳食中不存在重金属离子时,在生产的熟料中有约25%的γ-二钙硅酸盐。用> 5%的电镀污泥生产的熟料中的脸部主要是β相。当存在重金属离子时,似乎从β-至γ-二巯基硅酸钠中断。

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