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Factors affecting Hg (II) adsorption in soils from the Rio Negro basin (Amazon)

机译:影响里约内格罗河流域土壤中汞(II)吸附的因素(亚马逊)

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Mercury (II) adsorption studies in top soils (top 10 cm) from the Rio Negro basin show this process depends strongly on some selected parameters of the aqueous phase in contact with the soils. Maximum adsorption occurred in the pH range 3.0-5.0 (90%). Dissolved organic matter shows an inhibitory effect on the availability of Hg (II) to be adsorbed by the soils, whereas a higher chloride content of the solution resulted in a lower adsorption of Hg (II) at pH 5.0. Soils with higher organic matter content were less affected by changes in the salinity. An increase in the initial Hg (II) concentration increased the amount of Hg (II) adsorbed by the soil and decreased the time needed to reach equilibrium. A Freundlich isotherm provided a good model for Hg (II) adsorption in the two types of soil studied. The kinetics of Hg (II) adsorption on Amazonian soils showed to be very fast and followed pseudo-second order kinetics. An environmental implication of these results is discussed under the real scenario present in the Negro River basin, where acidic waters are in contact with a soil naturally rich in mercury.
机译:里约内格罗河盆地顶部土壤(顶部10厘米)对汞(II)的吸附研究表明,这一过程在很大程度上取决于与土壤接触的水相的某些选定参数。最大吸附发生在pH范围3.0-5.0(> 90%)中。溶解的有机物显示出对土壤吸附Hg(II)的有效性的抑制作用,而溶液中较高的氯化物含量导致pH 5.0时Hg(II)的吸附降低。有机质含量较高的土壤受盐度变化的影响较小。初始汞(II)浓度的增加增加了土壤吸附的汞(II)的量,并减少了达到平衡所需的时间。 Freundlich等温线为研究的两种土壤中的Hg(II)吸附提供了一个很好的模型。 Hg(II)在亚马孙土壤上的吸附动力学非常快,并且遵循伪二级动力学。在内格罗河流域的实际情况下讨论了这些结果对环境的影响,那里的酸性水与天然富含汞的土壤接触。

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