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Preparation of Active MgO and High Purity Sintered Magnesia from Microcrystalline Magnesite
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作者 TIAN Xiaoli LI Zhixun +1 位作者 FENG Runtang YANG Shu 《China's Refractories》 CAS 2018年第4期6-12,共7页
In order to widen the application of microcrystalline magnesite,the thermal decomposition behavior of the microcrystalline magnesite in Sichuan and Tibet area was firstly studied by thermogravimetric analysis. Then th... In order to widen the application of microcrystalline magnesite,the thermal decomposition behavior of the microcrystalline magnesite in Sichuan and Tibet area was firstly studied by thermogravimetric analysis. Then the effects of the calcination temperature,calcination time and particle size on the preparation of active Mg O from microcrystalline magnesite were studied by orthogonal experimental design. At last,high purity sintered magnesia was prepared by two-step calcination,meanwhile the effects of the light burning temperature,particle size of the light-burned Mg O powder,molding pressure and the hydration rate of light-burned Mg O powder on the properties of high purity sintered magnesia were studied.The results show that:( 1) the calcination temperature has the greatest influence on the activity of light-burned MgO,followed by the holding time and the particle size;the optimal process of light burning for preparing active MgO is the microcrystalline magnesite with particle size of 1-0. 5 mm heat-treating at 700 ℃ for 2 h; under these conditions,the microcrystalline magnesite decomposes completely; the average grain size of the obtained product is about 21. 4 nm,and its activity of CAA is20. 16 s;( 2) the effect of the light burning temperature on the density of high purity sintered magnesia is not obvious; the fineness of the light burning Mg O powder and molding pressure help to increase the density of sintered magnesia; the lower the hydration rate of the lightburned Mg O, the higher the density of the sintered magnesia; the high-purity sintered magnesite withw( MgO) ≥98% and bulk density≥3. 40 g/cm;can be prepared by the two-step calcination; the grains are fine with size of 30-200 μm and the impurity at grain boundaries is little. 展开更多
关键词 microcrystalline magnesite active magnesia orthogonal experimental design two-step calcination high purity sintered magnesia
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抗水化型MgO-CaO材料烧结性研究 被引量:2
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作者 刘民生 肖国庆 马爱琼 《陶瓷科学与艺术》 CAS 2002年第4期9-11,25,共4页
研究低杂质高钙型菱镁矿在不同试验条件下的烧结情况,试验证明:煅烧温度以及粉料的细度对烧结性能有较明显影响,而同一煅烧温度下烧结活化剂对烧结性影响不大;烧结后的试样由于具有直接结合的稳定性和连续基体相的存在具有良好的抗水化性。
关键词 煅烧 烧结活化剂 细度 高钙菱镁矿 方镁石 耐火材料 抗水化型 MgO-CaO材料 烧结性 研究
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