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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Experimental and statistical analysis of surface charge, aggregation and adsorption behaviors of surface-functionalized titanium dioxide nanoparticles in aquatic system
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Experimental and statistical analysis of surface charge, aggregation and adsorption behaviors of surface-functionalized titanium dioxide nanoparticles in aquatic system

机译:表面官能化二氧化钛纳米粒子在水系统中表面电荷,聚集和吸附行为的实验和统计分析

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摘要

One hundred and fifty nanometers sized anatase titanium dioxide nanoparticles (TiO_2 NPs) have been functionalized with the -CH _3, -NH_2, -SH, -OH, -COOH, and -SO_3H terminal groups. Surface charge, aggregation, and adsorption behaviors of the functionalized NPs in aquatic phase have been investigated by a set of experiments following the full factorial design. The dependence of surface charge, suspension size, and surface adsorption upon the various factors (including surface chemistry of NPs, the pH value, and ionic strength of an aqueous solution) has been studied with the statistical methods such as multiple linear regressions and multiple comparison tests. The surface functional group on the TiO_2 NPs affects the characteristics in the simulated aquatic environment. The correlations among the characteristics of NPs have also been investigated by obtaining Pearson's correlation coefficient. The hydrodynamic size is negatively correlated with the absolute value of zeta potential, and positively correlated with the ionic strength. In the NaCl solution, the charge screening effect is responsible for the aggregation. In the CaCl_2 solution, the charge screening effect is dominant mechanism for aggregation at a low salt concentration. In contrast, the interaction between Ca~(2+) ions and the specific functional group plays a significant role at a high salt concentration. The adsorption efficiency of humic acid decreases with an increase in the pH value, whereas increases with an increase in the ionic strength. The adsorption efficiency is positively correlated with the zeta potential. The statistical analysis methods and the results have implications in assessment of potential environmental risks posed by engineered nanoparticles.
机译:已用-CH _3,-NH_2,-SH,-OH,-COOH和-SO_3H端基官能化了150纳米大小的锐钛矿型二氧化钛纳米颗粒(TiO_2 NPs)。在完全析因设计之后,通过一系列实验研究了功能化NP在水相中的表面电荷,聚集和吸附行为。使用多种线性回归和多重比较等统计方法研究了表面电荷,悬浮液大小和表面吸附对各种因素(包括NP的表面化学,pH值和水溶液的离子强度)的依赖性。测试。 TiO_2 NPs上的表面官能团会影响模拟水生环境中的特性。通过获得皮尔逊相关系数,还研究了NPs特征之间的相关性。流体力学大小与zeta电位的绝对值负相关,与离子强度正相关。在NaCl溶液中,电荷屏蔽效应是造成聚集的原因。在CaCl_2溶液中,电荷筛选效应是低盐浓度下聚集的主要机理。相反,在高盐浓度下,Ca〜(2+)离子与特定官能团之间的相互作用起着重要作用。腐殖酸的吸附效率随pH值的增加而降低,而随离子强度的增加而增加。吸附效率与ζ电位正相关。统计分析方法和结果对工程纳米颗粒带来的潜在环境风险评估具有影响。

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