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Effects of Nickel on Properties of Cement Mortar Derived from the Coburning of Industrial Waste and Its Leaching Behavior

机译:镍对水泥砂浆性能的影响源于工业废弃物的CONCURING及其浸出行为

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Burning of hazardous waste in cement kiln is the new technology based on waste derived and alternative fuels. Besides being the alternative way to destroy hazardous waste, this method provides alternative material as raw material or the fuel in the cement production process. This disposal method can be applied if the contaminant either does not appear in the emission or leach from cement to environment. This work focused on properties and the leaching behavior of nickel from cement. The resulting clinker was analyzed for the content of free lime and X-ray diffraction (XRD) analysis was done. The identification of MgNiO_2 peaks in XRD pattern was found in all clinkers with nickel addition in the range of 0.5-2.0 wt.%. Results obtained from this part suggested that nickel incorporated in the clinker phase and may combine with magnesium to form the new compound as MgNiO_2 during the burning process. To study the leaching behavior, M3051A, NEN:7341 and pH static leach test were used. Results showed that approximately 3% of nickel can be leached to environment. From the pH static leach test, nickel was effectively leached at pH 4 and the reachability of its decreased when the pH increased. In this work, Toxicity characteristic leaching procedure (TCLP) was also used to identify the cement as hazardous waste or nonhazardous waste. The results showed that raw material doped with nickel up to 2 wt.%, the cement was not classified as hazardous waste.
机译:水泥窑中的危险废物是基于废物衍生和替代燃料的新技术。除了作为破坏危险废物的替代方法之外,该方法还提供替代材料作为水泥生产过程中的原料或燃料。如果污染物未出现在水泥到环境中的排放或浸出中,可以应用这种处理方法。这项工作侧重于水泥中镍的性质和浸出行为。分析所得熟料以进行自由石灰的含量,并进行X射线衍射(XRD)分析。在所有熟料中发现XRD图案中的MgNiO_2峰的鉴定在0.5-2.0重量%的镍加法中。从该部分获得的结果表明,在熟料过程中掺入熟料相中的镍,可以与镁合并,以在燃烧过程中以MgNiO_2形成新化合物。为了研究浸出行为,使用M3051A,NEN:7341和pH静态浸出试验。结果表明,约3%的镍可以浸出到环境中。从pH静态浸出试验中,在pH 4下有效地浸出镍,并且当pH增加时,其可达性降低。在这项工作中,毒性特征浸出程序(TCLP)也用于鉴定水泥作为危险废物或非危害废物。结果表明,掺杂镍的原料高达2重量%。%,水泥未被归类为危险废物。

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