Suppr超能文献

多金属环境中的砷形态:I. 模型化合物和混合化合物的体相X射线吸收精细结构光谱

Arsenic speciation in multiple metal environments: I. Bulk-XAFS spectroscopy of model and mixed compounds.

作者信息

Gräfe Markus, Tappero Ryan V, Marcus Matthew A, Sparks Donald L

机构信息

Environmental Soil Chemistry Group, Department of Plant & Soil Sciences, 152 Townsend Hall, University of Delaware, Newark, DE 19716, USA.

出版信息

J Colloid Interface Sci. 2008 Apr 15;320(2):383-99. doi: 10.1016/j.jcis.2008.01.028. Epub 2008 Jan 25.

Abstract

X-ray absorption fine structure (XAFS) spectroscopy was employed to determine the bonding environment of As(V) in the presence of Cu(II) and Zn(II) on goethite and gibbsite. In addition, several mineral species and precipitates derived from homogeneous and heterogeneous (presence of alpha-Cr(2)O(3)) super-saturations were studied. Structural parameters were determined after resolving the broad second shells in r-space by differential k-weighting (1, 2 or 3) and k-ranging (2.5- vs 3.5-12.75 A) of the raw EXAFS functions. In precipitates, AsO(4) was incorporated in the metal-hydroxides forming clinoclase-like and koettigite-like structures in the presence of Cu(II) and Zn(II), respectively. In the presence of both Cu(II) and Zn(II), the clinoclase structure formed preferentially over the koettigite structure under homogeneous oversaturated solution conditions and in the presence of eskolaite (alpha-Cr(2)O(3)). Silica promoted the formation of koettigite-like zinc-arsenate precipitates from initial As(V) and Zn(II) solution concentrations of 500 muM. On goethite and gibbsite, 750 muM As(V) formed mainly bidentate binuclear surface species in accordance with many previous findings even in the presence of equimolar Cu(II) and or Zn(II) concentrations. Copper was readily identified in the second shell environment of As(V) sorbed on gibbsite, but not on goethite. We hypothesize that this complex formed on the basis of Cu(II)'s ability to form polymeric species in solution and at the mineral-water interface in agreement with previous studies. The effects of Zn(II) on the coordination environment of As(V) on gibbsite and goethite could not be ascertained with As K-edge EXAFS spectroscopy. In addition to bidentate binuclear surface complexes, As(V) formed edge-sharing complexes with Fe, Al, and Cu atoms, which we could differentiate on the basis of the inter-atomic distances, phase shifts between wavefunctions of Fourier-filtered peaks, and differences in amplitude of the absorption envelopes. The analyses showed that of all data reduction steps, data presented in r-space and as wavefunctions of Fourier-filtered shells offer the greatest possibility for fingerprinting and inferring the influence of co-sorbing metal cations on the As(V) sorption complex. With regards to interpretations of micro-EXAFS data by abstract factor analyses and linear least-square combination fitting, analyses of As K-edge data should not be performed on the raw chi(k) data, but rather on consistently isolated second and higher-order shell features.

摘要

采用X射线吸收精细结构(XAFS)光谱法测定针铁矿和三水铝石上Cu(II)和Zn(II)存在时As(V)的键合环境。此外,还研究了几种由均相和异相(存在α-Cr₂O₃)过饱和产生的矿物种类和沉淀物。通过对原始EXAFS函数进行微分k加权(1、2或3)和k范围(2.5 - 与3.5 - 12.75 Å)来解析r空间中的宽第二壳层后,确定结构参数。在沉淀物中,在Cu(II)和Zn(II)存在下,AsO₄分别掺入金属氢氧化物中,形成类似斜氯砷铅矿和水砷锌矿的结构。在Cu(II)和Zn(II)同时存在的情况下,在均相过饱和溶液条件下以及存在铬铁矿(α-Cr₂O₃)时,优先形成斜氯砷铅矿结构而非水砷锌矿结构。二氧化硅促进了从初始浓度为500 μM的As(V)和Zn(II)溶液中形成类似水砷锌矿的砷酸锌沉淀物。在针铁矿和三水铝石上,即使存在等摩尔浓度的Cu(II)和/或Zn(II),750 μM的As(V)仍主要形成双齿双核表面物种,这与许多先前的研究结果一致。在三水铝石上吸附的As(V)的第二壳层环境中很容易识别出铜,但在针铁矿上则不然。我们假设这种络合物是基于Cu(II)在溶液中和矿物 - 水界面形成聚合物物种的能力而形成的,这与先前的研究一致。用As K边EXAFS光谱法无法确定Zn(II)对三水铝石和针铁矿上As(V)配位环境的影响。除了双齿双核表面络合物外,As(V)还与Fe、Al和Cu原子形成了边共享络合物,我们可以根据原子间距离、傅里叶滤波峰的波函数之间的相移以及吸收包络线振幅的差异来区分它们。分析表明,在所有数据处理步骤中,r空间中呈现的数据以及傅里叶滤波壳层的波函数为指纹识别和推断共吸附金属阳离子对As(V)吸附络合物的影响提供了最大的可能性。关于通过抽象因子分析和线性最小二乘组合拟合对微EXAFS数据的解释,不应基于原始的χ(k)数据进行As K边数据的分析,而应基于一致分离的第二和更高阶壳层特征进行分析。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验