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首页> 外文期刊>Journal of the Serbian Chemical Society >Mechanochemical treatment of Serbian kaolin clay to obtain high reactive pozzolana
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Mechanochemical treatment of Serbian kaolin clay to obtain high reactive pozzolana

机译:塞尔维亚高岭土的机械化学处理以获得高活性火山灰

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Mechanochemical treatment of Serbian kaolin clay was carried out in a planetary ball mill using two different milling media, hardened steel or zirconia vials and balls. The samples obtained with various milling times were characterized by the particle size laser diffraction (PSLD), X-ray diffraction (XRD), differential scanning calorimetry/thermogravimetry (DTA/TGA) and Fourier-transform infrared (FTIR) analyses. Mechanochemical treatment induced amorphization of the kaolinite phase accompanied by dehydroxylation. It was found that for the given milling parameters, amorphization mainly took place in the milling period up to 15 min, and was completed after about 30 min of milling for both milling media used. The pozzolanic activities were determined by the Chapelle method. Milling in the hardened steel milling medium had no significant influence on pozzolanic activity, even though there was accumulated iron contamination. For both milling media, pozzolanic activity of 0.79 was obtained for the samples milled for 15 min and it remained almost unchanged with prolonged milling. The determined pozzolanic activity values are close to these of commercial metakaolinite or metakaolinite obtained by the calcination of the same clay, therefore, indicating possibility for obtaining high reactive pozzolana by mechanochemical treatment of Serbian kaoline clay. [Projekat Ministarstva nauke Republike Srbije, br. TR 36017 and 45001]
机译:塞尔维亚高岭土的机械化学处理是在行星式球磨机中使用两种不同的研磨介质,硬化的钢或氧化锆小瓶和球进行的。通过不同的研磨时间获得的样品通过粒度激光衍射(PSLD),X射线衍射(XRD),差示扫描量热/热重分析(DTA / TGA)和傅立叶变换红外(FTIR)分析进行了表征。机械化学处理引起高岭石相的非晶化并伴随脱羟基。已经发现,对于给定的研磨参数,非晶化主要发生在长达15分钟的研磨阶段,并且对于所使用的两种研磨介质,在约30分钟的研磨之后就完成了非晶化。火山灰活性通过Chapelle方法测定。即使在铁中积累了污染物,在硬化的钢制研磨介质中进行研磨对火山灰活性也没有显着影响。对于两种研磨介质,研磨15分钟的样品的火山灰活性均为0.79,长时间研磨几乎保持不变。所确定的火山灰活性值接近于商业偏高岭石或通过煅烧相同粘土而获得的偏高岭石,因此,表明通过机械化学处理塞尔维亚高岭土获得高活性火山灰的可能性。 [Projekat Ministarstva nauke Republike Srbije,br。 TR 36017和45001]

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