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Cu2+ and Zn2+ adsorption to synthetic iron oxides and natural iron ore powder

机译:Cu2 +和Zn2 +吸附到合成氧化铁和天然铁矿粉中

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Cu2+ and Zn2+ adsorption onto the synthetic iron oxides prepared in laboratory including ferrihydrite (amorphous), goethite and hematite, and natural iron ore powder were investigated. The results showed that Cu2+ and Zn2+ adsorption onto the iron oxides: ferrihydrite, goethite, hematite and iron ore powder could be described by non-linear Langmuir, linear Freundlich, and Temkin models with significant correlation (R>p=0.7646, n=8, <0.01). The amount of Cu2+ and Zn2+ adsorbed by synthetic iron oxides was more than that by natural iron ore powder, moreover, Cu2+ and Zn2+ adsorption onto the synthetic iron oxides was in order as follows: ferrihydrite > goethite > hematite, and the synthesized ferrihydrite was considered to be of the maximum adsorption capability (18.38mmol/mol Fe for Cu2+ and 10.72mmol/mol Fe for Zn2+, respectively), due to its amorphous structure based on the X-ray diffraction (XRD) analysis. Comparison with iron oxides extracted from the natural surface coatings collected in natural aquatic environments, the synthetic ferrihydrite in the present study could be more suitable than other iron oxides to substitute iron oxides in the natural surface coatings in aquatic environments to investigate the transport, transform and fate of metals in laboratory conditions.
机译:研究了实验室制备的合成铁氧化物(包括无水铁矿(无定形),针铁矿和赤铁矿以及天然铁矿粉)上的Cu2 +和Zn2 +吸附。结果表明,Cu2 +和Zn2 +在铁氧化物,水铁矿,针铁矿,赤铁矿和铁矿石粉末上的吸附可以用非线性Langmuir模型,线性Freundlich模型和Temkin模型描述,并且具有显着相关性(R> p = 0.7646,n = 8)。 ,<0.01)。合成铁氧化物吸附的Cu2 +和Zn2 +的量大于天然铁矿粉的吸附量,而且,Cu2 +和Zn2 +在合成铁氧化物上的吸附顺序为:水铁矿>针铁矿>赤铁矿,考虑了合成的铁水矿由于其基于X射线衍射(XRD)分析的无定形结构,具有最大的吸附能力(Cu2 +的Fe分别为18.38mmol / mol Fe和Zn2 +的Fe为10.72mmol / mol Fe)。与从天然水生环境中收集的天然表面涂层中提取的氧化铁进行比较,本研究中的合成亚铁水合物可能比其他氧化铁更适合替代水生环境中天然表面膜中的氧化铁,以研究其运输,转化和转化。在实验室条件下金属的命运。

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