首页> 外文会议>International symposium on iron control in hydrometallurgy >MECHANISM OF SCORODITE FORMATION AT AMBIENT TEMPERATURE AS DETERMINED BY TEM ANALYSIS
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MECHANISM OF SCORODITE FORMATION AT AMBIENT TEMPERATURE AS DETERMINED BY TEM ANALYSIS

机译:由TEM分析确定的环境温度下焦岩形成的机制

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A mechanism of scorodite formation at ambient pressure was investigated using transmission electron microscopy (TEM). Several types of iron arsenate were obtained from Fe/As solutions (Fe/As = 1.0 and 1.5) at pH values of 1.0, 1.25 and 1.5 at 95 deg C. Amorphous FeAsO_4 centre dot xH_2O was precipitated from solutions having a higher mole ratio of Fe/As at pH 1.5, even after 9 hours. A few micron sized particles were observed by SEM, but these proved to be agglomerates of 10-50 nm amorphous FeAsO_4-xH_2O particles when observed by TEM. This means that supersaturation of the solution causes the acceleration of nucleation of iron arsenate hydrate. Crystalline scorodite was obtained from a solution in which the Fe/As mole ratio was unity, at pH 1.0 and pH 1.5, after 3 hours. Almond-type crystalline scorodite particles were observed by TEM and most of them showed high crystallinity. The addition of scorodite seed material enhanced the crystallization. Amorphous FeAsO_4 centre dot H_2O, however, was observed at the surface of the seeds during the early stages of precipitation. It is postulated that crystalline scorodite is not directly precipitated even on crystalline scorodite seeds, but requires a certain time to crystallize on the seed material.
机译:使用透射电子显微镜(TEM)研究了在环境压力下在环境压力下进行的机制。从Fe /作为溶液(Fe / As = 1.0和1.5)获得的几种类型的铁砷在1.0,1.25和1.5的pH值下,在95℃下的溶液中沉淀出无定形FEASO_4中心点XH_2O,从具有更高摩尔比的溶液中沉淀出来Fe / as ph 1.5,即使在9小时后。通过SEM观察几个微米尺寸的颗粒,但是通过TEM观察,这些粒子被证明是10-50nm非晶FEASO_4-XH_2O颗粒的凝聚。这意味着溶液的过饱和导致铁砷酸盐水合物的加速度。从其中Fe /作为摩尔比在pH 1.0和pH 1.5的溶液中获得结晶焦芯,在3小时后,在pH 1.0和pH 1.5中。通过TEM观察杏仁型结晶焦狄岩颗粒,并且它们中的大部分显示出高结晶度。加入克罗狄狄蒂种子材料增强了结晶。然而,在沉淀早期阶段期间,在种子表面观察到无定形FEASO_4中心点H_2O。假设即使在晶体焦点种子上也没有直接沉淀的结晶焦岩,但需要一定时间以在种子材料上结晶。

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