...
首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Surface complexation of neodymium at the rutile-water interface: A potentiometric and modeling study in NaCl media to 250 degrees'C
【24h】

Surface complexation of neodymium at the rutile-water interface: A potentiometric and modeling study in NaCl media to 250 degrees'C

机译:金红石-水界面处钕的表面络合:在NaCl介质中至250摄氏度的电位和模型研究

获取原文
获取原文并翻译 | 示例

摘要

The adsorption of Nd3+ onto rutile surfaces was examined by potentiometric titration from 25 to 250degreesC, in 0.03 and 0.30m NaCl background electrolyte. Experimental results show that Nd3+ sorbs strongly, even at low temperature, with adsorption commencing below the PHznpc of rutile. In addition, there is a systematic increase in Nd3+ adsorption with increasing temperature. The experimental results were rationalized and described using surface oxygen proton affinities computed from the MUlti SIte Complexation or MUSIC model, coupled with a Stern-based three-layer description of the oxide/water interface. Moreover, molecular-scale information was incorporated successfully into the surface complexation model, providing a unique geometry for the adsorption of Nd3+ on rutile. The primary mode of Nd3+ adsorption was assumed to be the tetradentate configuration found for Y3+ adsorption on the rutile (110) surface from previously described in situ X-ray standing wave experiments, wherein the sorbing cations bond directly with two adjacent "terminal" and two adjacent "bridging" surface oxygen atoms. Similarly, the adsorption of Na+ counterions was also assumed to be tetradentate, as supported by MD simulations of Na+ interactions with the rutile (110) surface, and by analogous X-ray standing wave results for Rb+ adsorption on rutile. Fitting parameters for Nd3+ adsorption included binding constants for the tetradentate adsorption complex and capacitance values for the inner-sphere binding plane. In addition, hydrolysis of the tetradentate adsorption complex was permitted and resulted in significantly improved model fits at higher temperature and pH values. The modeling results indicate that the Stern-based MUSIC surface-complexation model adequately accommodates molecular-scale information to uniquely rationalize and describe multivalent ion adsorption systematically into the hydrothermal regime. Copyright (C) 2005 Elsevier Ltd
机译:在0.03和0.30m NaCl背景电解质中,通过电位滴定法在25至250℃下检测Nd3 +在金红石表面的吸附。实验结果表明,即使在低温下,Nd3 +也会强烈吸附,并且吸附开始于金红石的PHznpc以下。此外,随着温度的升高,Nd3 +的吸附也会有系统地增加。使用由MUlti SIte络合物或MUSIC模型计算的表面氧质子亲和力,以及基于氧化物/水界面的基于斯特恩的三层描述,对实验结果进行了合理化和描述。此外,分子级信息已成功地纳入表面络合模型,为Nd3 +在金红石上的吸附提供了独特的几何形状。 Nd3 +吸附的主要模式被认为是通过先前描述的原位X射线驻波实验在金红石(110)表面发现Y3 +吸附的四齿构型,其中吸附阳离子直接与两个相邻的“末端”和两个相邻的“桥接”表面氧原子。类似地,Na +抗衡离子的吸附也被认为是四齿的,这是通过Na +与金红石(110)表面相互作用的MD模拟以及通过类似的X射线驻波结果来证明Rb +在金红石上的吸附。 Nd3 +吸附的拟合参数包括四齿吸附复合物的结合常数和内球结合面的电容值。此外,允许四齿吸附复合物水解,并在较高的温度和pH值下显着改善了模型拟合。建模结果表明,基于Stern的MUSIC表面络合模型充分容纳了分子尺度信息,以独特地合理化和描述了多价离子对水热过程的吸附。版权所有(C)2005 Elsevier Ltd

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号