Department of Chemistry and Biochemistry, Florida International University , Miami, Florida 33199, United States.
Environ Sci Technol. 2014 Jul 15;48(14):8078-85. doi: 10.1021/es405804m. Epub 2014 Jun 30.
Easily separable humic acid coated magnetite (HA-Fe3O4) nanoparticles are employed for effective adsorption and reduction of toxic Cr(VI) to nontoxic Cr(III). The adsorption and reduction of Cr(VI) is effective under acidic, neutral, and basic pH conditions. The chromium adsorption nicely fits the Langmuir isotherm model, and the removal of Cr(VI) from aqueous media by HA-Fe3O4 particles follows pseudo-second-order kinetics. Characterization of the Cr-loaded HA-Fe3O4 materials by X-ray absorption near edge structure spectroscopy (XANES) indicates Cr(VI) was reduced to Cr(III) while the valence state of the iron core is unchanged. Fe K-edge extended X-ray absorption fine structure spectroscopy (EXAFS) and X-ray diffraction measurements also indicate no detectable transformation of the Fe3O4 core occurs during Cr(VI) adsorption and reduction. Thus, suggesting HA on the surface of HA-Fe3O4 is responsible for the reduction of Cr(VI) to Cr(III). The functional groups associated with HA act as ligands leading to the Cr(III) complex via a coupled reduction-complexation mechanism. Cr K-edge EXAFS demonstrates the Cr(III) in the Cr-loaded HA-Fe3O4 materials has six neighboring oxygen atoms likely in an octahedral geometry with average bond lengths of 1.98 Å. These results demonstrate that easily separable HA-Fe3O4 particles have promising potential for removal and detoxification of Cr(VI) in aqueous media.
易分离的腐殖酸包覆磁铁矿(HA-Fe3O4)纳米粒子可用于有效吸附和还原有毒的 Cr(VI)至无毒的 Cr(III)。在酸性、中性和碱性 pH 条件下,Cr(VI)的吸附和还原都很有效。铬的吸附很好地符合朗缪尔等温吸附模型,而 HA-Fe3O4 颗粒从水介质中去除 Cr(VI)遵循拟二级动力学。通过 X 射线吸收近边结构光谱(XANES)对负载 Cr 的 HA-Fe3O4 材料进行的表征表明,Cr(VI)被还原为 Cr(III),而铁核的价态保持不变。Fe K 边扩展 X 射线吸收精细结构光谱(EXAFS)和 X 射线衍射测量也表明,在 Cr(VI)吸附和还原过程中,Fe3O4 核没有发生可检测的转变。因此,表明 HA-Fe3O4 表面的 HA 负责将 Cr(VI)还原为 Cr(III)。与 HA 相关的官能团作为配体,通过耦合还原-络合机制导致 Cr(III)配合物的形成。Cr K 边 EXAFS 表明,负载 Cr 的 HA-Fe3O4 材料中的 Cr(III)有六个相邻的氧原子,可能具有八面体几何形状,平均键长为 1.98 Å。这些结果表明,易分离的 HA-Fe3O4 颗粒具有在水介质中去除和解毒 Cr(VI)的潜在应用前景。