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纳米 γ-Al2O3 对肌醇六磷酸和正磷酸盐的尺寸依赖性吸附。

Size-dependent sorption of myo-inositol hexakisphosphate and orthophosphate on nano-γ-Al2O3.

机构信息

Key Laboratory of Arable Land Conservation (Middle and Lower Reaches of Yangtze River), Ministry of Agriculture, College of Resources and Environment, Huazhong Agricultural University, Wuhan 430070, People's Republic of China.

Physical Chemistry and Soft Matter, Wageningen University and Research, Dreijenplein 6, 6703 H B Wageningen, Netherlands.

出版信息

J Colloid Interface Sci. 2015 Aug 1;451:85-92. doi: 10.1016/j.jcis.2015.03.045. Epub 2015 Apr 9.

Abstract

The effects of particle size (5, 35 and 70nm) on the sorption of myo-inositol hexakisphosphate (IHP) and inorganic phosphate (KH2PO4, Pi) on γ-Al2O3 nanoparticles were investigated using batch sorption experiments, zeta potential measurements and solid-state nuclear magnetic resonance spectroscopy (NMR). The results show that the maximum sorption densities (μmolm(-2)) for IHP and Pi increase with decreasing γ-Al2O3 particle size. The sorption affinity of γ-Al2O3 for IHP and Pi generally increases with decreasing particle size, and the sorption affinity for IHP is approximately one order of magnitude greater than that for Pi. In our experimental time scale, surface complexation is the main mechanism for IHP and Pi sorption on large size γ-Al2O3. While an additional surface precipitation mechanism, indicated by solid-state (31)P and (27)Al NMR data, is partly responsible for the greater sorption density on very small size γ-Al2O3. Compared with Pi, the effect of particle size on the sorption of IHP is more pronounced. The results suggest a size-dependent surface reactivity of Al2O3 nanoparticles with Pi/IHP. The underlying mechanism will also be relevant for other small nanosize (hydr)oxide particles and is important for our understanding of the role of small nanoparticles in controlling the mobility and fate of organic and inorganic phosphates in the environment.

摘要

采用批量吸附实验、动电电位测量和固态核磁共振波谱(NMR)研究了粒径(5、35 和 70nm)对γ-Al2O3 纳米粒子吸附肌醇六磷酸(IHP)和无机磷酸盐(KH2PO4,Pi)的影响。结果表明,IHP 和 Pi 的最大吸附密度(μmolm(-2))随γ-Al2O3 粒径的减小而增加。γ-Al2O3 对 IHP 和 Pi 的吸附亲和力通常随粒径的减小而增大,且对 IHP 的吸附亲和力约为 Pi 的一个数量级。在我们的实验时间尺度内,表面络合是 IHP 和 Pi 在大粒径 γ-Al2O3 上吸附的主要机制。而固态(31)P 和(27)Al NMR 数据表明的另一个表面沉淀机制,部分解释了非常小粒径 γ-Al2O3 上更高的吸附密度。与 Pi 相比,粒径对 IHP 吸附的影响更为显著。结果表明,Al2O3 纳米粒子与 Pi/IHP 的表面反应具有尺寸依赖性。该机制对于其他小纳米尺寸(水合)氧化物颗粒也具有相关性,并且对于理解小纳米颗粒在控制环境中有机和无机磷酸盐的迁移和归宿方面的作用具有重要意义。

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