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硅纳米颗粒捕捉大气中的铅:在处理环境重金属污染方面的意义。

Silica nanoparticles capture atmospheric lead: implications in the treatment of environmental heavy metal pollution.

机构信息

Key Laboratory of Modern Toxicology of Shenzhen, Shenzhen Center for Disease Control and Prevention, Shenzhen, China.

出版信息

Chemosphere. 2013 Jan;90(2):653-6. doi: 10.1016/j.chemosphere.2012.09.033. Epub 2012 Oct 16.

Abstract

Lead (Pb) contamination in the air is a severe global problem, most notably in China. Removal of Pb from polluted air remains a significant challenge. It is unclear what potential effects silica nanoparticles (SiNPs) exposure can have on atmospheric Pb. Here we first characterized the features of SiNPs by measuring the particle size, zeta potential and the specific surface area of SiO(2) particles using a Nicomp 380/ZLS submicron particle sizer, the Brunauer-Emmett-Teller (BET) method and transmission electronic microscopy (TEM). We measured the content of the metal Pb adsorbed by SiNPs exposed to two Pb polluted electric battery plants using inductively coupled plasma mass spectrometry (ICP-MS). It is found that SiNPs exposed to two Pb polluted electric battery plants absorb more atmospheric Pb compared to either blank control or micro-sized SiO(2) particles in a time-dependent manner. This is the first study demonstrating that SiNPs exposure can absorb atmospheric Pb in the polluted environment. These novel findings indicate that SiNPs have potential to serve as a significant adsorbent of Pb from industrial pollution, implicating a potentially novel application of SiNPs in the treatment of environmental heavy metal pollution.

摘要

空气中的铅(Pb)污染是一个严重的全球性问题,尤其是在中国。从污染的空气中去除 Pb 仍然是一个重大挑战。目前尚不清楚二氧化硅纳米颗粒(SiNPs)暴露可能对大气 Pb 产生什么潜在影响。在这里,我们首先通过使用 Nicomp 380/ZLS 亚微米颗粒粒度仪、BET 方法和透射电子显微镜(TEM)测量 SiO(2)颗粒的粒径、zeta 电位和比表面积,来表征 SiNPs 的特征。我们使用电感耦合等离子体质谱法(ICP-MS)测量暴露于两个 Pb 污染电池厂的 SiNPs 吸附的金属 Pb 含量。结果发现,暴露于两个 Pb 污染电池厂的 SiNPs 以时间依赖的方式比空白对照或微尺度 SiO(2)颗粒吸收更多的大气 Pb。这是第一项表明 SiNPs 暴露可以在污染环境中吸收大气 Pb 的研究。这些新发现表明,SiNPs 有可能成为工业污染中 Pb 的重要吸附剂,这暗示了 SiNPs 在处理环境重金属污染方面具有潜在的新应用。

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