Structural Properties of Aqueous Solutions at the (100) and (101) Goethite Surfaces by Molecular Dynamics Simulation

被引:11
作者
Criscenti, Louise J. [1 ]
Ho, Tuan A. [1 ]
Hart, David [1 ]
机构
[1] Sandia Natl Labs, Geochem Dept, POB 5800 MS 0754, Albuquerque, NM 87185 USA
关键词
URANYL(VI) ADSORPTION EQUILIBRIA; INTRINSIC PROTON AFFINITY; SODIUM-CHLORIDE SOLUTIONS; IRON OXYHYDROXIDE; WATER-STRUCTURE; METAL-IONS; STABILITY-CONSTANTS; NEUTRON-DIFFRACTION; COMPLEXATION; NACL;
D O I
10.1021/acs.langmuir.8b02612
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Trace metal concentrations in soils and sediments are often controlled by adsorption to iron oxides such as goethite in both natural and contaminated systems. Because of goethite's importance as an adsorbent, its interaction with aqueous solutions has been studied extensively. Nonetheless, despite the use of numerous analytical and computational tools, the properties of goethite-aqueous solution interfaces are not fully understood. In this research, we investigate the interaction of water and aqueous NaCl, MgCl2, and BaCl2 solutions ranging in concentration from 0.1 to 4 M, with two goethite surfaces, (100) and (101), using classical molecular dynamics simulation. In the past, the (100) surface has been studied the most because of its simplicity; however, goethite crystals in the environment exhibit other prominent surfaces like the (101) surface which may exhibit very different adsorption properties than the (100) surface. The (100) surface has three surface sites; one is an under-coordinated Fe3+ which interacts strongly with water affecting the interfacial water structure, another site remains deprotonated and forms a hydrogen bond to the only hydroxylated surface site. The (101) surface is terminated with five hydroxyl groups that do not interact as strongly with water as the under-coordinated Fe(3+ )ion and that form a more corrugated surface structure. As a result, the (101) goethite-solution interface exhibits less water structure, weaker electric double layer oscillations, and more inner-sphere ion adsorption, especially for Cl- and Ba2+ ions. The fundamental differences in interfacial properties for these surfaces suggest that the adsorption properties of one goethite surface cannot be averaged to represent goethite interfaces present in soils and sediments.
引用
收藏
页码:14498 / 14510
页数:13
相关论文
共 81 条
  • [1] [Anonymous], GEOCHEMISTRY NATURAL
  • [2] [Anonymous], 2010, ACC MAT STUD REL 5 5
  • [3] AQVIST J, 1990, J PHYS CHEM-US, V94, P8021, DOI 10.1021/j100384a009
  • [4] THE ADSORPTION OF CU, PB, ZN, AND CD ON GOETHITE FROM MAJOR ION SEA-WATER[J]. BALISTRIERI, LS;MURRAY, JW. GEOCHIMICA ET COSMOCHIMICA ACTA, 1982(07)
  • [5] REACTION-KINETICS OF THE ADSORPTION AND DESORPTION OF NICKEL, ZINC AND CADMIUM BY GOETHITE .2. MODELING THE EXTENT AND RATE OF REACTION[J]. BARROW, NJ;GERTH, J;BRUMMER, GW. JOURNAL OF SOIL SCIENCE, 1989(02)
  • [6] On the protonation of oxo- and hydroxo-groups of the goethite (α-FeOOH) surface:: A FTIR spectroscopic investigation of surface O-H stretching vibrations[J]. Boily, Jean-Francois;Felmy, Andrew R. GEOCHIMICA ET COSMOCHIMICA ACTA, 2008(14)
  • [7] Water Structure and Hydrogen Bonding at Goethite/Water Interfaces: Implications for Proton Affinities[J]. Boily, Jean-Francois. JOURNAL OF PHYSICAL CHEMISTRY C, 2012(07)
  • [8] Electrostatic Cooperativity of Hydroxyl Groups at Metal Oxide Surfaces[J]. Boily, Jean-Francois;Lins, Roberto D. JOURNAL OF PHYSICAL CHEMISTRY C, 2009(38)
  • [9] Modeling proton binding at the goethite (α-FeOOH)-water interface[J]. Boily, JF;Lützenkirchen, J;Balmès, O;Beattie, J;Sjöberg, S. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2001(01)
  • [10] Local order in aqueous NaCl solutions and pure water:: X-ray scattering and molecular dynamics simulations study[J]. Bouazizi, Salah;Nasr, Salah;Jaidane, Nejmeddine;Bellissent-Funel, Marie-Claire. JOURNAL OF PHYSICAL CHEMISTRY B, 2006(46)