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首页> 外文期刊>Journal of materials in civil engineering >Low Environmental Impact Cement Produced Entirely from Industrial and Mining Waste
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Low Environmental Impact Cement Produced Entirely from Industrial and Mining Waste

机译:完全由工业和采矿废物生产的低环境影响水泥

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Proper disposal of industrial waste, the need to conserve nonrenewable resources, and high CO2 emissions are the major environmental issues at the present time. A significant portion of emissions from portland cement production is related to the energy required to maintain the clinker kiln at a temperature of approximately 1,450 degrees C, which is necessary for alite formation. The alternative belite phase, however, requires lower temperatures for its formation (below 1,250 degrees C). Although belite is less reactive than alite, it is equally efficient at higher hydration times. Thus, a belitic cement produced entirely with industrial waste (grits from the pulp and paper industry, steel slag, and quartzite mining tailings) is presented in this research. The raw meal was proportioned based on Bogue calculation and the firing was performed in a muffle furnace at a temperature of 1,250 degrees C. A reference belitic cement was produced with limestone and clay under the same conditions. The results showed that both cements presented high belite contents and expected technological performance. The reference belitic cement revealed a higher reactivity, whereas the waste cement proved to be a technically feasible low-impact alternative.
机译:正确处理工业废物,保存不可再生资源的需要以及高二氧化碳排放量是当前的主要环境问题。硅酸盐水泥生产中的很大一部分排放与将熟料窑保持在约1,450摄氏度的温度所需的能量有关,这是形成胶凝石所必需的。但是,另一种贝利特相需要较低的形成温度(低于1,250摄氏度)。尽管珍珠岩的反应性不如珍珠岩,但在更长的水合时间同样有效。因此,本研究提出了一种完全由工业废料(纸浆和造纸工业的废渣,钢渣和石英岩采矿尾矿)生产的贝利特水泥。基于Bogue计算对生料进行配比,并且在马弗炉中在1,250℃的温度下进行烧成。在相同条件下用石灰石和粘土制备参考贝利特水泥。结果表明,两种水泥均具有较高的珍珠岩含量和预期的技术性能。参比的贝利特水泥显示出更高的反应性,而废水泥被证明是技术上可行的低冲击替代品。

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