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Temperature and seeding effects on the precipitation of scorodite from sulfate solutions under atmospheric-pressure conditions

机译:温度和晶种对大气压条件下硫酸盐溶液中臭葱石沉淀的影响

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摘要

Arsenic is a major contaminant in the nonferrous extractive metallurgy. In the past 20 years, many studies have shown that it can be precipitated as relatively stable crystalline scorodite (FeAsO4·2H2O) by precipitation under ambient or elevated pressures. In the present study, an extensive program of scorodite precipitation tests under ambient pressure has shown that the rate of scorodite formation increases dramatically by a small increase in temperature from 85 °C to 100 °C. The beneficial effects of temperature are attributed to the higher thermodynamic stability of scorodite at elevated temperatures, but also to higher rates of secondary nuclei formation and crystal growth. In any case, irrespective of the precipitation temperature, the leachability of all scorodite precipitates observed in toxicity characterization leaching procedure (TCLP) tests is below 5 mg/L As. Another parameter examined in this study was seeding. It was observed that the higher the initial concentration of seed, the faster the precipitation. Precipitation of well-crystallized scorodite can be effected equally well on heterogeneous seed such as hematite (Fe2O3) or gypsum (CaSO4·2H2O) added externally or formed in situ.
机译:砷是有色金属冶炼中的主要污染物。在过去的20年中,许多研究表明,可以通过在常压或高压下沉淀而将其沉淀为相对稳定的结晶臭葱石(FeAsO4··2H2 )。在本研究中,环境压力下臭葱石沉淀试验的广泛程序表明,温度从85°C升高到100°C,臭葱石形成的速率会急剧增加。温度的有益影响归因于臭葱石在高温下的较高热力学稳定性,而且归因于次级核形成和晶体生长的较高速率。在任何情况下,无论沉淀温度如何,在毒性表征浸出程序(TCLP)测试中观察到的所有臭葱石沉淀物的浸出度均低于5 mg / L As。在这项研究中检查的另一个参数是播种。观察到种子的初始浓度越高,沉淀越快。在外部添加或形成的赤铁矿(Fe2 O3 )或石膏(CaSO4 ·2H2 O)等异质种子上,均能很好地结晶结晶臭葱石。原地。

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