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Antiviral Activities of Heated Dolomite Powder

机译:加热的白云石粉的抗病毒活性

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The effect of the heating conditions of dolomite powder on its antiviral activity was studied against the H5N3 avian influenza virus. Calcium oxide (CaO) and magnesium oxide (MgO), obtained by the thermal decomposition of dolomite above 800 degree C, were shown to have strong antiviral activity, but the effect was lessened when the heating temperature exceeded 1400 degree C. Simultaneous measurement of the crystallite size suggested that the weakening of the activity was due to the considerable grain growth of the oxides. It was found that the presence of Mg in dolomite contributed to the deterrence of grain growth of the oxides during the heat-Ing process. Although both CaO and MgO exhibited strong antiviral activity, CaO had the stronger activity but quickly hydrated In the presence of water. On the other hand, the hydration of MgO took place gradually under the same conditions. Separate measurements using MgO and Mg(OH) sub(2) revealed that MgO had a higher antiviral effect than Mg(OH) sub(2). From the overall experiments, it was suggested that the strong antiviral activity of dolomite was related to the hyd ration reaction of CaO.
机译:研究了白云石粉的加热条件对其抗H5N3禽流感病毒的抗病毒活性的影响。通过在高于800摄氏度的温度下热分解白云石获得的氧化钙(CaO)和氧化镁(MgO)具有很强的抗病毒活性,但是当加热温度超过1400℃时,效果减弱。微晶尺寸表明,活性的减弱是由于氧化物的大量晶粒生长。发现白云石中Mg的存在有助于抑制热Ing过程中氧化物晶粒的生长。尽管CaO和MgO均显示出很强的抗病毒活性,但CaO的活性更强,但在有水的情况下会迅速水合。另一方面,MgO的水合在相同条件下逐渐发生。使用MgO和Mg(OH)sub(2)的单独测量显示,MgO具有比Mg(OH)sub(2)更高的抗病毒作用。从整体实验中可以看出,白云石的强抗病毒活性与CaO的水合反应有关。

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