重囗另类BBWSeⅹHD,av狼论坛,精品一卡2卡三卡4卡乱码理论,体育生gv老师浪小辉3p警察

Adsorption of As on hydroxy-Fe-montm

時間:2023-04-27 14:47:56 天文地理論文 我要投稿
  • 相關推薦

Adsorption of As on hydroxy-Fe-montmorillonite complexes

Arsenate has high affinity for soluble hydroxy-Fe species and Fe-oxyhydroxide precipitates. In addition, the hydrolysis of Fe(III) and the growth of the initially precipitated Fe(III) phases are strongly influenced by the presence of montmorillonite. In this paper, the adsorption of As onto various hydroxy-Fe-montmorillonite (H-F-M) complexes was studied. Three systems of samples were prepared by mixing montmorillonite, hydroxy-Fe and arsenate in different sequences: (1) Prior mixing of montmorillonite and hydroxy-Fe before the addition of arsenate; (2) prior mixing of hydroxy-Fe and arsenate before the addition of montmorillonite; and (3) prior mixing of montmorillonite and arsenate before the addition of hydroxy-Fe. For each system, the effects of pH, ionic strength, temperature, initial Fe and As concentrations and adsorption duration on the overall uptake of As by H-F-M complexes were studied. Results showed that the uptake of As increased with increasing pH, temperature, initial Fe concentration and adsorption duration, and decreased with increasing ionic strength and initial As concentration to different extents for the three systems. The variation of the As uptake of H-F-M complexes with pH in the range of study is opposite to that reported previously for Fe-O-H systems in the absence of montmorillonite and similar to that reported for montmorillonite in the absence of hydroxy-Fe. The marked influence of ionic strength on the As uptake of H-F-M complexes indicates that outer-sphere complexation plays an important role. This is quite different from the adsorption of As on the surface of either Fe-oxyhydroxides or montmorillonite alone in which inner-sphere complexation dominates. Under all experimental conditions, the H-F-M complexes studied displayed a very strong affinity for As, among which system 2 had the highest As adsorption capacity and system 1 the lowest. The authors attribute this to the differences in mixing sequence which resulted in more hydroxy-Fe (the main adsorbent for As) in system 1 adsorbing onto montmorillonite before adsorbing As than in systems 2 or 3.

作 者: LIAO Libing Donald G. Fraser   作者單位: LIAO Libing(School of Material Science and Engineering, China University of Geosciences, Beijing 100083, China;Department of Earth Sciences, Oxford University, Parks Road, Oxford OX1 3PR, UK)

Donald G. Fraser(Department of Earth Sciences, Oxford University, Parks Road, Oxford OX1 3PR, UK) 

刊 名: 中國科學D輯(英文版)  SCI 英文刊名: SCIENCE IN CHINA (EARTH SCIENCES)  年,卷(期): 2005 48(12)  分類號: P5  關鍵詞: hydroxy-Fe   montmorillonite   complex   arsenate adsorption  
主站蜘蛛池模板: 涞水县| 抚顺县| 会泽县| 若羌县| 双江| 奉新县| 南溪县| 平湖市| 当雄县| 威海市| 磐安县| 荆州市| 宜州市| 上思县| 仁怀市| 青铜峡市| 桃园市| 潼关县| 馆陶县| 弋阳县| 淳化县| 茂名市| 湖南省| 垦利县| 上虞市| 德兴市| 泗洪县| 乳山市| 泽州县| 道真| 修文县| 理塘县| 柳江县| 衡南县| 博爱县| 宜春市| 昌图县| 娱乐| 海伦市| 临漳县| 大冶市|