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Effect Of Precipitation Route On The Properties Of Antimony Trioxide

机译:沉淀途径对三氧化二锑性能的影响

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Antimony trioxide was prepared, using antimony potassium tartarate as starting material, via forward and reverse precipitation technique. The characteristics of the resulting antimony oxides were determined by BET surface area method, differential thermogravimetry analysis (DTG), X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FT-IR) and SEM. The DTG curves for all uncalcined samples showed only a single endothermic peak which indicated that the sample is antimony trioxide. Unlike forward precipitation technique which resulted in a single antimony trioxide phase which is senarmontite, reverse precipitation technique produced antimony trioxide with both senarmontite and valentinite phase. Upon calcinations at 723 K, a small amount of Sb_2O_4 with cervantite phase was formed at the expense of Sb_2O_3 senarmontite phase as detected from the XRD pattern and infrared spectrum of RSb. The effect of preparation route on the properties of the antimony trioxide produced was clearly demonstrated.
机译:以酒石酸锑钾为原料,经正向和反向沉淀技术制备了三氧化二锑。通过BET表面积法,差示热重分析(DTG),X射线衍射(XRD),傅里叶变换红外光谱(FT-IR)和SEM来确定所得锑氧化物的特性。所有未煅烧样品的DTG曲线仅显示一个吸热峰,表明该样品为三氧化二锑。正向沉淀技术产生的是三氧化二锑单一相,即三氧化二锑,而反向沉淀技术则产生了三氧化二锑和白云母相。从X射线衍射图谱和RSb的红外光谱图可知,在723 K煅烧后,形成了少量的具有铈辉石相的Sb_2O_4,但牺牲了Sb_2O_3蒙脱石相。清楚地证明了制备路线对所产生的三氧化二锑的性能的影响。

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