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Adsorption Mechanisms and Transport Behavior between Selenate and Selenite on Different Sorbents

机译:硒酸盐与亚硒酸盐在不同吸附剂上的吸附机理及迁移行为

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Adsorption of different oxidation species of selenium (Se), selenate (SeO4 2-) and selenite (SeO32-), with varying pHs (2-10) and ionic strengths (I=0.01 M, 0.1 M and 1.0 M NaNO3) was measured on quartz, aluminum oxide, and synthetic iron oxide (ferrihydrite) using batch reactors to obtain a more detailed understanding of the adsorption mechanisms (e.g., inner- and outer-sphere complex). In addition to the batch experiments with single minerals contained in native Hanford Site sediment, additional batch adsorption studies were conducted with native Hanford Site sediment and groundwater as a function of 1) total Se concentration (from 0.01 to 10 mg L-1) and 2) soil to solution ratios (1:20 and 1:2 grams per mL). Results from these batch studies were compared to a set of saturated column experiments that were conducted with natural Hanford sediment and groundwater spiked with either selenite or selenate to observe the transport behavior of these species. Both batch and column results indicated that selenite adsorption was consistently higher than that of selenate in all experimental conditions used. These different adsorption mechanisms between selenite and selenate result in the varying mobility of Se in the subsurface environment and explain the dependence on the oxidation species.
机译:测量了不同pH(2-10)和离子强度(I = 0.01 M,0.1 M和1.0 M NaNO3)对硒,硒酸盐(SeO4 2-)和亚硒酸盐(SeO32-)不同氧化物种的吸附使用间歇反应器在石英,氧化铝和合成氧化铁(三水铁矿)上进行吸附,以更详细地了解吸附机理(例如,内球和外球络合物)。除了使用汉福德遗址天然沉积物中的单一矿物质进行分批实验外,还对汉福德遗址天然沉积物和地下水进行了额外的分批吸附研究,该研究取决于1)总硒浓度(0.01至10 mg L-1)和2 )土壤与溶液的比例(每毫升1:20和1:2克)。将这些批处理研究的结果与一组饱和柱实验进行了比较,该饱和柱实验是使用天然汉福德沉积物和掺有亚硒酸盐或硒酸盐的地下水进行的,以观察这些物质的运输行为。批处理和色谱柱结果均表明,在所有使用的实验条件下,亚硒酸盐的吸附始终高于硒酸盐。亚硒酸盐和硒酸盐之间的这些不同吸附机理导致硒在地下环境中的迁移率发生变化,并解释了对氧化物种的依赖性。

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