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天然氣還原熱解硫酸鎂制備高純氧化鎂

Preparation of high-purity magnesia from magnesium sulfate by natural gas reduction pyrolysis

  • 摘要: 利用鹽湖氯化鎂和硫酸制備七水硫酸鎂,將七水硫酸鎂脫水得到無水硫酸鎂.采用天然氣還原熱解無水硫酸鎂得到高純氧化鎂.通過單因素實驗考察了還原熱解溫度、熱解時間、硫酸鎂的粒徑和天然氣氣體流量對硫酸鎂轉化率的影響,通過正交試驗優化了還原熱解的條件.采用X射線衍射和掃描電鏡對還原熱解產物進行分析和表征.氧化鎂的最佳制備條件:熱解溫度為1000℃,熱解時間為30min,硫酸鎂粒徑為75μm,天然氣氣體流量為25mL·min-1.溫度是影響硫酸鎂轉化率的主要因素.在最佳制備條件下,硫酸鎂的轉化率達到99.27%,氧化鎂的純度達到99.5%,制取的氧化鎂單分子均勻,表面為多孔蓬松,具有高比表面積.

     

    Abstract: Magnesium sulfate heptahydrate was made from salt lake magnesium chloride and sulfuric acid, then anhydrous magnesium sulfate was obtained from magnesium sulfate heptahydrate by dehydration, and finally high-purity magnesia was prepared from anhydrous magnesium sulfate by natural gas reduction pyrolysis. The effects of pyrolysis temperature, pyrolysis time, particle size, and gas flow rate on the conversion rate of magnesium sulfate were investigated by single factor experiment. These experimental parameters were optimized by orthogonal experiment. The reduction pyrolysis product was analyzed and characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM). The optimal experimental parameters are as follows:the pyrolysis temperature is 1000℃, the pyrolysis time is 30 min, the particle size of anhydrous magnesium sulfate is 75 μm, and the flow rate of natural gas is 25 mL·min-1. The pyrolysis temperature is the main factor which influences the conversion rate. Under the optimal condition, the conversion rate of magnesium sulfate reaches 99.27%, and the purity of magnesia is 99.5%. The unimolecular MgO features well-distributed particle size, porous and fluffy surfaces, and high specific surface area.

     

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