Sedimentation of nanoparticle titanium dioxide in the presence of ammonium

Duo Li, Nan Xu
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Abstract

Due to its physicochemical properties, nanoparticles titanium dioxide (nTiO2) is being put into mass production and widespread applications, which inevitably results in their increasing exposure to the water body. After it entering the water body, the chemical properties of nTiO2 can be influenced by ion compositions, ion strength and pH, which affects their ecological risk. Excess of ammonium (NH4+) fertilizer has contaminated soil and water environments. In this paper, the Zeta potentials and hydrodynamic radius of nTiO2 were studied in NH4+ solution compared to those in Na+ solution. In addition, the sedimentation rate of nTiO2 was also investigated. The experiment results show that high pH inhibits the sedimentation of nTiO2. Moreover, NH4+ increases the stability of nTiO2 more than Na+ at the same IS, which was attributed the more negative Zeta potentials and the smaller hydraulic radius. Our results provide a theoretical basis for evaluating the ecological risk of nTiO2 in aqueous solution containing NH4+.
纳米二氧化钛在铵存在下的沉降
纳米二氧化钛(nTiO2)由于其物理化学性质,正在大量生产和广泛应用,这不可避免地导致其在水体中的暴露量越来越大。nTiO2进入水体后,其化学性质会受到离子组成、离子强度和pH的影响,从而影响其生态风险。过量的铵肥污染了土壤和水环境。本文研究了nTiO2在NH4+溶液中的Zeta电位和流体动力半径,并与Na+溶液进行了比较。此外,还研究了nTiO2的沉降速率。实验结果表明,高pH抑制了nTiO2的沉降。此外,在相同的IS下,NH4+比Na+更能提高nTiO2的稳定性,这是由于NH4+具有更多的负Zeta电位和更小的水力半径。研究结果为评价nTiO2在含NH4+水溶液中的生态风险提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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