首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >First-Principles Investigation of Mercury Adsorption on the alpha-Fe2O3(1(1)over-bar02) Surface
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First-Principles Investigation of Mercury Adsorption on the alpha-Fe2O3(1(1)over-bar02) Surface

机译:汞在α-Fe2O3(1(1)over-bar02)表面上吸附的第一性原理研究

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Theoretical investigations using density functional theory (DFT) have been carried out to understand the interaction between mercury (Hg) and hematite (alpha-Fe2O3), both of which are released during the coal combustion processes. A clean alpha-Fe2O3(1 (1) over bar 02) surface was chosen as a representative hematite model in this study based upon a previous ab initio thermodynamics study showing the high stability of this surface in the temperature range of typical flue gases. In order to determine the effect of chlorine (Cl) during Hg adsorption, the most probable adsorption sites of Hg, Cl, and HgCl on the clean alpha-Fe2O3 surface termination were found based on adsorption energy calculations, and the oxidation states of the adsorbates were determined by Bader charge analysis. Additionally, the projected density of states (PDOS) analysis characterizes the surfaceadsorbate bonding mechanism. The adsorption energy of -0.103 eV indicates that Hg physisorbs to the clean alpha-Fe2O3 surface, and the subsequent Bader analysis confirms that the Hg becomes oxidized. Adding Cl to the Hg-adsorbed surface further enhances the strength of Hg adsorption, as evidenced by a shortened Hgsurface equilibrium distance. Bader charge and PDOS analyses also suggest that the presence of Cl enhances the charge transfer between the hematite surface and the adsorbate, thereby increasing the adsorption strength.
机译:已经进行了使用密度泛函理论(DFT)的理论研究,以了解汞(Hg)和赤铁矿(α-Fe2O3)之间的相互作用,二者在煤燃烧过程中都会释放出来。根据先前的从头算热力学研究,该表面在典型烟道气温度范围内的高稳定性,在该研究中选择了干净的α-Fe2O3(1(1)(bar 02)上方的表面)作为代表性的赤铁矿模型。为了确定氯在汞吸附过程中的影响,根据吸附能计算得出了Hg,Cl和HgCl在干净的α-Fe2O3表面终端上最可能的吸附位点,以及被吸附物的氧化态由Bader费用分析确定。另外,预计的状态密度(PDOS)分析表征了表面吸附物的结合机理。 -0.103 eV的吸附能表明Hg物理吸附到干净的α-Fe2O3表面,随后的Bader分析证实Hg被氧化。通过缩短的汞表面平衡距离可以证明,向吸附在汞的表面添加Cl可以进一步提高汞的吸附强度。较差的电荷和PDOS分析还表明,Cl的存在增强了赤铁矿表面与被吸附物之间的电荷转移,从而提高了吸附强度。

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