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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >A combined experimental study of vivianite and As (V) reactivity in the pH range 2-11
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A combined experimental study of vivianite and As (V) reactivity in the pH range 2-11

机译:在2-11的pH范围内,Vivianite和As(V)反应性的联合实验研究

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Four different sets of experiments were completed in order to constrain vivianite [Fe-3(PO4)(2) center dot 8H(2)O] reactivity under conditions pertinent to As(V)-bearing groundwater systems. Firstly, titration experiments were undertaken in the pH range 4-9 to determine the zero point of charge (ZPC) of vivianite; showing that the ZPC lies at a pH of approximately 5.3. Secondly, the steady state dissolution rates of vivianite far from equilibrium were measured in aqueous solutions in the pH range 2-10 at 18.5 degrees C (+/- 3 degrees C) using a fluidized bed reactor. The rate of vivianite dissolution, R, is given by R (moles s(-1) cm(-2)) = 1.18 x 10(-10) a(H+)(0.77) + 1 x 10(-15) + 6.92 x 10(-24) a(H+)(-1) (1) The dissolution rate exhibits an exponential increase with increase in the activity of the H+ ion in solution at 2 < pH < 5, is apparently pH independent at 5 < pH < 8, and increases with increasing pH at pH > 8. Thirdly, the sorption of arsenate [As(V)] onto natural well-crystallized vivianite in the pH range 3-11 under static flow conditions was determined. 25-40% of As(V) from a starting concentration (C-0) of 100 mu M was adsorbed onto vivianite. Static adsorption experiments were also completed at two lower As(V) concentrations (C-0 = 10 and 1 mu M). Sorption was determined to be only weakly dependent on pH. Fourthly, the final part of this study investigated the sorption of As(V) onto vivianite at pH 9 under dynamic flow conditions. An input solution of 4 mM As(V) was applied to water saturated columns, followed by leaching with deionised water (DIW). Breakthrough curves show that the retention and exchangeability of As within the column is enhanced with vivianite present. consistent with solid phase analysis of unreacted and reacted solid materials. A simple calculation based on a model shallow Bengal sediment having about 0.2 wt% of vivianite and total initial dissolved As concentrations of 100 mu M showed that under such conditions 88% of dissolved As(V) could potentially be adsorbed onto vivianite. These results will help to better understand As mobility in the presence of the Fe(H) mineral phase vivianite, thus providing better prediction of As mobility in partially reduced environments. (C) 2008 Elsevier Ltd. All rights reserved.
机译:为了限制在与含砷(V)的地下水系统有关的条件下约束堇青石[Fe-3(PO4)(2)中心点8H(2)O]的反应性,完成了四组不同的实验。首先,在4-9的pH范围内进行滴定实验,以确定堇青石的零电荷(ZPC)。表明ZPC的pH值约为5.3。其次,使用流化床反应器,在18.5摄氏度(+/- 3摄氏度)的pH范围为2-10的水溶液中,测定了不平衡的堇青石的稳态溶解速率。堇青石溶解速率R由R(摩尔s(-1)cm(-2))= 1.18 x 10(-10)a(H +)(0.77)+ 1 x 10(-15)+ 6.92 x 10(-24)a(H +)(-1)(1)在2 H <5时,溶液中H +离子的活性随溶解度的增加而呈指数增加,在5 H <8,并在pH> 8时随pH的增加而增加。第三,确定了在静态流动条件下,在3-11的pH范围内,砷酸盐[As(V)]在天然结晶良好的堇青石上的吸附。起始浓度(C-0)为100μM时,有25-40%的As(V)吸附在堇青石上。在两个较低的As(V)浓度(C-0 = 10和1μM)下也完成了静态吸附实验。吸附被确定为仅弱依赖于pH。第四,本研究的最后一部分研究了在动态流动条件下,pH为9时As(V)在堇青石上的吸附。将4 mM As(V)的输入溶液应用于水饱和柱,然后用去离子水(DIW)浸提。突破曲线表明,存在的Vivianite增强了柱内As的保留和交换能力。与未反应和反应的固体材料的固相分析相一致。根据模型浅孟加拉沉积物的简单计算,该沉积物具有约0.2 wt%的Vivianite和总初始溶解As浓度为100μM,在这种条件下,有88%的溶解As(V)可能吸附在Vivianite上。这些结果将有助于更好地理解在Fe(H)矿物相堇青石存在下的As迁移率,从而更好地预测部分还原环境中As的迁移率。 (C)2008 Elsevier Ltd.保留所有权利。

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