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磷酸盐在赤铁矿上的吸附:pH值和负载水平对磷酸盐表面络合模式影响的原位衰减全反射傅里叶变换红外光谱研究

Phosphate adsorption onto hematite: an in situ ATR-FTIR investigation of the effects of pH and loading level on the mode of phosphate surface complexation.

作者信息

Elzinga Evert J, Sparks Donald L

机构信息

Institute of Biogeochemistry and Pollutant Dynamics, Swiss Federal Institute of Technology (ETH) Zürich, CH-8092 Zürich, Switzerland.

出版信息

J Colloid Interface Sci. 2007 Apr 1;308(1):53-70. doi: 10.1016/j.jcis.2006.12.061. Epub 2006 Dec 28.

Abstract

Phosphate adsorption on hematite was characterized as a function of pH (3.5-8.9) and phosphate concentration (5-500 microM) by in situ ATR-FTIR spectroscopy. Under most conditions a mixture of different (inner-sphere) phosphate complexes existed at the hematite surface, with the relative importance of these complexes varying with pH and surface coverage. Experiments using D(2)O and H(2)O indicated the presence of two protonated phosphate surface complexes at pH/pD=3.5-7.0. Comparison to spectra of protonated aqueous phosphate species suggested that these surface complexes are monoprotonated. The difference in the IR spectra of these complexes is tentatively interpreted to result from a different surface coordination, with one surface complex coordinated in a monodentate binuclear (bridging) fashion, and the second as a monodentate mononuclear complex. Alternatively, the bridging complex may be a (protonated) monodentate mononuclear complex exhibiting strong hydrogen bonding to an adjacent surface site, and the second species a monodentate complex exhibiting limited hydrogen bonding. Formation of the bridging complex is favored at lower pH values and higher surface loadings in the 3.5-7.0 pH range. At the highest pH values studied (8.5-9.0) a third complex, interpreted to be a nonprotonated monodentate mononuclear complex, is present along with the monodentate monoprotonated surface species. The importance of the nonprotonated monodentate complex increases with increasing surface coverage at these high pH values.

摘要

通过原位衰减全反射傅里叶变换红外光谱(ATR-FTIR)对赤铁矿上磷酸盐的吸附进行了表征,考察了其作为pH值(3.5 - 8.9)和磷酸盐浓度(5 - 500微摩尔)的函数关系。在大多数条件下,赤铁矿表面存在不同(内球)磷酸盐络合物的混合物,这些络合物的相对重要性随pH值和表面覆盖率而变化。使用重水(D₂O)和水(H₂O)的实验表明,在pH/pD = 3.5 - 7.0时存在两种质子化的磷酸盐表面络合物。与质子化的水相磷酸盐物种的光谱比较表明,这些表面络合物是单质子化的。这些络合物红外光谱的差异初步解释为是由于不同的表面配位所致,一种表面络合物以单齿双核(桥联)方式配位,另一种为单齿单核络合物。或者,桥联络合物可能是一个(质子化的)单齿单核络合物,与相邻表面位点形成强氢键,而第二种物种是一个氢键作用有限的单齿络合物。在3.5 - 7.0的pH范围内,较低的pH值和较高的表面负载量有利于桥联络合物的形成。在研究的最高pH值(8.5 - 9.0)下,除了单齿单质子化表面物种外,还存在第三种络合物,解释为非质子化的单齿单核络合物。在这些高pH值下,非质子化单齿络合物的重要性随着表面覆盖率的增加而增加。

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