Ab'/> An <ce:italic>in-situ</ce:italic> synchrotron XAS study on the evolution of aqueous arsenic species in acid pressure leaching
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An in-situ synchrotron XAS study on the evolution of aqueous arsenic species in acid pressure leaching

机译:AN 原位同步> XAS关于酸性压力浸出中砷物种的演变研究

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AbstractThe evolution of oxidation state of aqueous arsenic (As) under the condition of acid pressure leaching was investigated for the first time byin-situsynchrotron X-ray absorption spectroscopy (XAS). At an oxygen pressure of 28bar, the dissolved As in leaching solutions (0.5M H2SO4coexisting with arsenopyrite) existed as As(V) at room temperature. As(III) appeared increasingly with temperature rising from 100°C and eventually, at temperatures greater than 200°C, only As(III) was detected. The process was reversible in that the arsenic in solution was re-oxidized to As(V) during cooling. The addition of Fe3+favored the presence of As(V) in solution. Higher initial ferric concentration required a higher temperature for the formation of As(III) and profoundly reduced the reduction rate of As(V) and enhanced the re-oxidation rate of As(III). Compared to pure oxygen, As(III) was more readily stabilized in leaching solutions using compressed air. The EXAFS data show that the As(V) in solution was coordinated with 4.1 oxygen atoms in the first shell with an average distance of 1.71?, which indicates the presence of H3AsO4or its deprotonated forms. Meanwhile As(III) in solution (at 225°C) was coordinated with 3.1 oxygen atoms in the first shell with an average distance of 1.80?, suggesting the presence of H3AsO3. It is concluded that the identified As(III) species in the leaching solution at elevated temperature has a significant impact on the reaction chemistry of acid pressure leaching for As-bearing sulfide.Highlights?In-situsynchrotron X-ray absorption spectroscopy (XAS) revealed the evolution of arsenic species in acid pressure leaching.?At room temperature, the dissolved As in leaching solutions existed as As(V).?The As(III) fraction increased at temperatures above 100°C and eventually only As(III) was detected at 200°C.?As(III) was re-oxidized to As(V) during cooling process.]]>
机译:<![cdata [ 抽象 在酸性压力浸出条件下研究了氧化砷水溶液的氧化状态的演变时间由原位同步>同步x射线吸收光谱(xas)。在28bar的氧气压力下,溶解如浸出溶液(0.5mh 2 so 4 与亚苯甲酸甲磺酸盐共存)在室温下存在于(v)。由于(iii)越来越多地出现温度从100°C上升并且最终,在大于200℃的温度下,仅检测到(iii)。该方法是可逆的,因为在冷却期间将溶液中的砷重新氧化成(V)。添加Fe 3 + 赞成在溶液中存在(v)。初始初始浓度较高,需要较高的温度,形成为(III),并且深刻地降低了AS(V)的还原率,并提高了(III)的再氧化率。与纯氧相比,使用压缩空气更容易地稳定(III)。 EXAFS数据表明,溶液中的AS(v)与第一个壳体中的4.1氧原子配位,平均距离为1.71Ω,这表明H 3 ASO 4 或其去质子形式。同时,如溶液(在225℃)中,在第一个壳中与3.1氧原子配位,平均距离为1.80Ω,表明H 3 ASO 3 。得出结论,浸出温度下浸出溶液中的鉴定为(III)种类对耐硫化硫化物的反应化学物质产生显着影响。 亮点 In-situ 同步>同步>同步>同步>同步X射线吸收光谱学(XAs)揭示了酸性压力浸出中砷物种的演变。 在室温下,如浸出溶液中的溶解存在为(v)。 AS(III)分数增加在高于100℃的温度下,最终仅在200℃下检测到(III)。 在冷却过程中被重新氧化为(v)。 ]]>

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