A study of the reductive transformation properties of the mineral systems of Fe(Ⅱ)/cation-doped goethite for 2-NP
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    Abstract:

    In this paper, modified goethite samples doped with different cations were prepared and characterized. XRD showed that doping cations Mn2+, Cr3+ and Al3+ didn't significantly change the types of crystal structure for α-FeOOH, indicating that the cations were doped into the α-FeOOH lattice, and solid solutions were respectively formed when Fe3+ was partially replaced by Mn2+, Cr3+ and Al3+. The infrared analysis also showed a similar result. The results of TGA-DTA and TEM exhibited that these metal cations had entered the goethite lattice. By UV-vis diffuse reflection spectrum analysis, it was found that the band gaps of goethite doped with Mn2+ and Cr3+ were 2.18 and 2.24 eV, respectively, lower than the band gap of pure goethite (2.28 eV); in contrast, the band gap of goethite doped with Al3+ was increased to 2.34 eV. In addition, the reductive effects of different complex systems of Fe(Ⅱ) combined with pure goethite and its counterparts doped with above three different cations on 2-NP reduction were investigated, and it was found that the 2-nitrophenol (2-NP) reductive transformation followed the pseudo-first-order kinetics under the condition pH=6 and temperature 25℃. The system Fe(Ⅱ)/goethite doped with Al3+ showed the best degradation of 2-NP with a removal efficiency of 100% within 120 min. However, the reductive rate of 2-NP transformation was clearly reduced with the initial concentrations of 2-NP increasing to a certain extent. Moreover, the rate constant (k) of the system doped with Al3+ was increased with the increment of the solution pH value.

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杜可清,吴宏海,朱慧琳,魏西鹏,管玉峰,蓝冰燕,2016,Fe(Ⅱ)/阳离子掺杂针铁矿矿物系统对2-NP的还原转化性能研究[J].岩石矿物学杂志,35(6):1075~1084. DU Ke-qing, WU Hong-hai, ZHU Hui-lin, WEI Xi-peng, GUAN Yu-feng, LAN Bing-yan,2016,A study of the reductive transformation properties of the mineral systems of Fe(Ⅱ)/cation-doped goethite for 2-NP[J]. Acta Petrologica et Mineralogica,35(6):1075~1084.

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History
  • Received:March 31,2016
  • Revised:August 05,2016
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  • Online: November 21,2016
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