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砷(V)在介孔 TiO2 吸附剂(NTAs)上的吸附:溶液组成的影响。

As(V) adsorption onto nanoporous titania adsorbents (NTAs): effects of solution composition.

机构信息

Chemical Engineering Program, Texas A&M University at Qatar, Education City, Doha 23874, Qatar. dong

出版信息

J Hazard Mater. 2012 Aug 30;229-230:273-81. doi: 10.1016/j.jhazmat.2012.05.105. Epub 2012 Jun 7.

Abstract

This study has focused on developing two nanoporous titania adsorbents (NTA) to enhance removal efficiency of adsorption process for As(V) by characterizing the effects of pH and phosphate concentration on their sorption capacities and behaviors. One type of adsorbent is a mesoporous titania (MT) solid phase and the other is group of a highly ordered mesoporous silica solids (SBA-15) that can incorporate different levels of reactive titania sorption sites. Microscopic analysis showed that Ti((25))-SBA-15 (Ti/SBA=0.25 g/g) had titania nanostructured mesopores that do not rupture the highly ordered hexagonal silica framework. However, MT has disordered, wormhole-like mesopores that are caused by interparticle porosity. Adsorption experiments showed that Ti((25))-SBA-15 had a greater sorption capacity for As(V) than did Ti((15))-SBA-15 or Ti((35))-SBA-15 and the amount of As(V) adsorbed generally decreased as pH increased. Higher removal of As(V) was observed with Ti((25))-SBA-15 than with MT at pH 4, but MT had higher removals at higher pH (7, 9.5), even though MT has a lower specific surface area. However, in the presence of phosphate, MT showed higher removal of As(V) at low pH rather than did Ti((25))-SBA-15. As expected, the NTAs showed very fast sorption kinetics, but they followed a bi-phasic sorption pattern.

摘要

本研究旨在开发两种纳米多孔二氧化钛吸附剂(NTA),通过研究 pH 值和磷酸盐浓度对其吸附容量和行为的影响,提高吸附过程对 As(V)的去除效率。一种吸附剂是中孔二氧化钛(MT)固相,另一种是高度有序的介孔硅固体(SBA-15)组,可以结合不同水平的反应性二氧化钛吸附位。微观分析表明,Ti((25))-SBA-15(Ti/SBA=0.25 g/g)具有纳米结构的介孔二氧化钛,不会破坏高度有序的六方硅骨架。然而,MT 具有无序的、虫孔状的介孔,这是由颗粒间孔隙引起的。吸附实验表明,Ti((25))-SBA-15 对 As(V)的吸附容量大于 Ti((15))-SBA-15 或 Ti((35))-SBA-15,并且随着 pH 值的增加,吸附的 As(V)量通常减少。在 pH 4 时,Ti((25))-SBA-15 比 MT 具有更高的 As(V)去除率,但在更高的 pH(7、9.5)时,MT 的去除率更高,尽管 MT 的比表面积较低。然而,在磷酸盐存在下,MT 在低 pH 下表现出比 Ti((25))-SBA-15 更高的 As(V)去除率。正如预期的那样,NTAs 表现出非常快的吸附动力学,但它们遵循双相吸附模式。

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