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Reductive Processes Controlling Arsenic Retention: Revealing The Relative Importance Of Iron And Arsenic Reduction

机译:控制砷保留的还原过程:揭示铁和砷还原的相对重要性

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The fate and transport of arsenic is regulated, in part, by its strong affinity for iron (hydr)oxides.A transition from aerobic to anaerobic conditions resulting in concomitant reduction of both As(V) and iron (hydr)oxides can thus have a pronounced influence on As partitioning.However, it is presently unclear whether As desorption under anaerobic conditions results predominantly from a transformation from As(V) to As(III) or from mineralogical changes as a consequence of iron and manganese reduction.Here, we examine desorption of both As(III) and As(V) from ferrihydrite-, goethite-, and hematite-coated sand under hydrodynamic conditions.Furthermore, to resolve the relative role of Fe(III) and/or As(V) reduction in regulating dissolved As concentrations, we also examined As desorption from ferrihydrite- and goethite-coated sands presorbed with As(V) using wild type or mutants of Shewanella sp.ANA-3, capable of Fe(III)- and/or As(V)-reduction.We reveal substantial differences in As(III) and As(V) desorption from ferrihydrite, goethite, and hematite.Despite being adsorbed to a greater extent than As(V), As(III) is desorbed more rapidly and extensively from all oxides, suggesting weaker binding of As(III) than As(V).When As(V) and Fe(III) reduction are decoupled, As(V) reduction appears to be the dominant process controlling As release.Our results also suggest the importance of appreciating physical properties of specific Fe (hydr)oxides when predicting the potential for As desorption.
机译:砷的命运和运输在一定程度上受到其对(氢氧化铁)氧化物的强烈亲和力的调节。从有氧到厌氧条件的转变会导致砷(V)和氧化铁(氢氧化物)的同时还原。然而,目前尚不清楚在厌氧条件下As的解吸主要是由As(V)转变为As(III)还是铁和锰还原导致的矿物学变化而引起的。在水动力条件下从三水铁矿,针铁矿和赤铁矿覆盖的砂中解吸As(III)和As(V),进一步解决Fe(III)和/或As(V)还原在调节中的相对作用溶解的As浓度,我们还使用野生型或Shewanella sp.ANA-3突变体(具有Fe(III)-和/或As(V))从As(V)预吸附的水铁矿和针铁矿涂层砂中解吸了As -还原。我们揭示了As(III)的实质差异尽管As(V)的吸附程度高于As(V),但As(III)从所有氧化物中的吸附速度更快,范围更广,这表明As(III)的结合力弱于As(III)。 As(V).As(V)和Fe(III)还原反应解耦时,As(V)还原似乎是控制As释放的主要过程。我们的结果还表明了认识特定Fe(水合物)的物理性质的重要性预测砷解吸的可能性时会氧化。

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