煅烧铝柱撑蒙脱石材料结合态Fe(Ⅱ)对邻硝基苯酚的还原转化研究
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国家自然科学基金资助项目(41372050)


The reductive transformation of 2-nitrophenol by Fe(Ⅱ) associated with the thermally treated Al-pillared montmorillonite material
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    摘要:

    通过铝盐与蒙脱石(Na-Mt)反应制备了铝柱撑蒙脱石(Al-Mt),同时采用X射线衍射(XRD)、红外光谱(FTIR)对在不同温度(200~600℃)下煅烧获得的铝柱撑蒙脱石产物(At-Mt-X)进行表征。探讨Fe(Ⅱ)与Al-Mt-X所形成的复合系统对邻硝基苯酚(2-NP)的吸附-还原降解行为,包括铝柱撑蒙脱石的煅烧温度、煅烧铝柱撑蒙脱石的表面酸位变化以及溶液pH值等条件对邻硝基苯酚还原转化的影响。结果表明,由于随着煅烧温度的升高,煅烧铝柱撑蒙脱石表面酸性位点会逐渐减少,使得其对Fe(Ⅱ)的还原性能增强;煅烧温度高于500℃时,煅烧改性产物与Fe(Ⅱ)形成的Fe(Ⅱ)/煅烧铝柱撑蒙脱石复合系统显著提高了Fe(Ⅱ)物种的还原活性,因而有效增强对2-NP的还原降解。此外,Fe(Ⅱ)/煅烧铝柱撑蒙脱石复合系统对2-NP的还原降解符合准一级反应动力学方程,表观速率常数(k)随pH值和铝柱撑蒙脱石煅烧温度的升高而增大。作为一种功能性矿物材料,煅烧铝柱撑蒙脱石在缺氧环境下能有效促进吸附态Fe(Ⅱ)物种对污染物的还原降解,煅烧温度与pH值是其中两个重要的制约因素。

    Abstract:

    In this study, the preparation of Al-pillared montmorillonite(Al-Mt) was conducted using aluminum salt reacting with montmorillonite(Na-Mt). Meanwhile, the thermally treated Al-pillared montmorillonite samples(Al-Mt-X) at different temperatures(200~600℃) were characterized using X-ray diffraction(XRD) and infrared spectra(FTIR) methods. The reductive transformation of 2-nitrophenol(2-NP) by Fe(Ⅱ)/the thermally treated Al-pillared montmorillonite complex system was investigated, with a consideration of the effects of calcination temperature, surface acid sites and solution pH on the transformation efficiency of 2-NP. The results showed that, with increasing calcinations temperature, the surface acid sites of Al-Mt-X were gradually reduced, and thus the reduction transformation efficiency of 2-NP was enhanced. As the calcination temperature was higher than 500℃, Fe(Ⅱ) and the thermally treated Al-pillared montmorillonite(Al-Mt-X) formed an Fe(Ⅱ)/Al-Mt-X complex system that could effectively improve the reaction capability of Fe(Ⅱ) species for 2-NP reductive transformation. In addition, the reduction transformation of 2-NP by the Al-Mt-X complex system could be described well by the pseudo first-order kinetic equation. The reaction apparent constant(k) of 2-NP reduction was increased with the increasing calcination temperature and solution pH. Therefore, the thermally treated Al-pillared montmorillonite as functional materials can effectively improve the reductive capability of the adsorbed species of Fe(Ⅱ) to degrade pollutants in an anaerobic environment. It should be indicated that the calcination temperatures and solution pH were two important impact factors.

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李观燕,何广平,吴宏海,等, 2015. 煅烧铝柱撑蒙脱石材料结合态Fe(Ⅱ)对邻硝基苯酚的还原转化研究[J]. 岩石矿物学杂志, 34(6):893~900.
LI Guan-yan, HE Guang-ping, WU Hong-hai, et al, 2015. The reductive transformation of 2-nitrophenol by Fe(Ⅱ) associated with the thermally treated Al-pillared montmorillonite material[J]. Acta Petrologica et Mineralogica, 34(6): 893~900.

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  • 收稿日期:2015-07-22
  • 最后修改日期:2015-09-22
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  • 在线发布日期: 2015-11-24
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