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Improved Lime Method to Prepare High-Purity Magnesium Hydroxide and Light Magnesia from Bischofite

机译:改进的石灰法制备高纯度氢氧化镁和双壳镁和胶质镁

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摘要

Precipitation of magnesium hydroxide [Mg(OH)2] from bischofite (MgCl2·6H2O) using lime milk, i.e., the traditional lime milk method, features a low cost. However, insoluble impurities such as CaO in the lime limit the purity of the magnesium hydroxide product. For this reason, a new method has been developed, using saturated lime supernatant instead of lime milk. The insoluble impurities in lime cannot dissolve in saturated lime supernatant, thus improving the purity of the produced magnesium hydroxide. This improved lime method, which achieves high Mg(OH)2 purity of 99% with CaO content of 0.094%, offers better performance in comparison with the traditional lime milk method. Besides, the optimum processing parameters including pH, crystal seed amount, agitation speed, reaction temperature, MgCl2 concentration, reaction time, aging time, and polyacrylamide (PAM) addition are reported. High-purity light magnesia (MgO) is obtained from magnesium hydroxide by carbonation and calcination, with quality fulfilling the HG1-324-77 standard. This improved lime method represents a promising approach for production of high-purity magnesium hydroxide and light magnesia from bischofite.
机译:使用石灰酸钠(MgCl2·6H2O)析出氢氧化镁[Mg(OH)2],使用石灰牛奶,即传统的石灰牛奶法,具有低成本。然而,石灰中的诸如CaO的不溶性杂质限制了氢氧化镁产品的纯度。因此,已经开发了一种新方法,使用饱和石灰上清液而不是石灰牛奶。石灰中不溶性杂质不能溶解在饱和石灰上清液中,从而改善所生产的氢氧化镁的纯度。这种改进的石灰方法,其达到高镁(OH)2纯度为99%的CaO含量为0.094%,与传统的石灰牛奶法相比提供了更好的性能。此外,还报道了最佳处理参数,包括pH,晶体种子量,搅拌速度,反应温度,MgCl 2浓度,反应时间,老化时间和聚丙烯酰胺(PAM)添加。高纯度光氧化镁(MgO)由碳化和煅烧从氢氧化镁获得,质量满足HG1-324-77标准。这种改进的石灰方法代表了一种有望的方法,用于生产高纯度氢氧化镁和来自双螺杆石的光氧化镁。

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