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Effect of Fe/Al oxides on desorption of Cd2+ from soils and minerals as related to diffuse layer overlapping

机译:Fe / Al氧化物对Cd2 +从土壤和矿物中解吸的影响与扩散层重叠的关系

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摘要

Cadmium is a toxic metal with high reactivity in acid variable charge soils. Adsorption and desorption of Cd2+ in soil and mineral particles can be affected by the interaction between the electrical double layers on oppositely charged particles, because the interaction can decrease the surface-charge density of the particles. We studied the effect of Fe/Al oxides on desorption of Cd2+ from soils and minerals and proposed the desorption mechanisms based on the overlapping of diffuse layers between negatively charged soils and mineral particles and positively charged Fe/Al oxide particles. Our results indicate that the overlapping of diffuse layers of electrical double layers between positively charged Fe/Al oxides [crystalline and amorphous Al(OH)(3) and amorphous Fe(OH)(3)] and negatively charged Ultisol, Alfisol, kaolinite, and bentonite caused the effective negative surface-charge density on the soils and minerals to become less negative, and thus the adsorption affinity of these negatively charged surfaces for Cd2+ declined as a result of the incorporation of the Fe/Al oxides. Consequently, the release of exchangeable Cd2+ from the surfaces of the soils and minerals increased with the amount of Fe/Al oxides added. The more positive the charge on the surfaces of the Fe/Al oxides, the stronger the interaction of the electrical double layers between the oxides and soils and minerals, and thus the greater the release of Cd2+ from the soils and minerals. A decrease in pH led to an increase in the positive surface charge on the Fe/Al oxides and enhancement of the interaction of the electrical double layers between the oxides and soils and minerals. As a result, more Cd2+ was desorbed from the soils and minerals. This study suggests that the interaction between oppositely charged particles of variable charge soils can enhance the mobility of cadmium in the soils and thus increase its environmental risk.
机译:镉是一种有毒金属,在酸性可变电荷土壤中具有高反应活性。土壤和矿物颗粒中Cd2 +的吸附和解吸会受到带相反电荷的颗粒上双电荷层之间相互作用的影响,因为这种相互作用会降低颗粒的表面电荷密度。我们研究了Fe / Al氧化物对Cd2 +从土壤和矿物中解吸的影响,并基于带负电的土壤与矿物颗粒和带正电的Fe / Al氧化物颗粒之间的扩散层重叠,提出了解吸机理。我们的结果表明,带正电的Fe / Al氧化物[晶体和无定形的Al(OH)(3)和无定形的Fe(OH)(3)]和带负电的Ultisol,Alfisol,高岭石,膨润土使土壤和矿物上的有效负表面电荷密度降低为负,​​因此,由于掺入Fe / Al氧化物,这些带负电荷的表面对Cd2 +的吸附亲和力下降。因此,可交换的Cd2 +从土壤和矿物表面的释放随所添加的Fe / Al氧化物的量而增加。 Fe / Al氧化物表面上的电荷越正,氧化物与土壤和矿物质之间的电双层相互作用越强,因此从土壤和矿物质中释放的Cd2 +越大。 pH值的降低导致Fe / Al氧化物上的正表面电荷增加,并增强了氧化物与土壤和矿物之间的双电层相互作用。结果,更多的Cd2 +从土壤和矿物质中解吸出来。这项研究表明,可变电荷土壤中带相反电荷的颗粒之间的相互作用可以增强镉在土壤中的迁移性,从而增加其环境风险。

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