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单细胞ICP-MS技术分析水中藻类的纳米颗粒摄入 被引量:1
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作者 Ruth Merrifield jamie lead Chady Stephan 《环境化学》 CAS CSCD 北大核心 2016年第10期2223-2225,共3页
观测和研究细胞对于元素离子和纳米颗粒的摄入,对于人类健康和环境安全都具有非常重要的意义.本文通过利用ICP-MS配备的单细胞检测技术,对待测藻类摄入元素离子和纳米颗粒的行为进行了观察和研究,探讨了不同培养液浓度、曝光时间对于单... 观测和研究细胞对于元素离子和纳米颗粒的摄入,对于人类健康和环境安全都具有非常重要的意义.本文通过利用ICP-MS配备的单细胞检测技术,对待测藻类摄入元素离子和纳米颗粒的行为进行了观察和研究,探讨了不同培养液浓度、曝光时间对于单细胞中离子和纳米颗粒含量的影响,以及细胞分裂过程对于摄入行为的影响. 展开更多
关键词 ICP-MS 藻类 纳米颗粒
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Advancing the Understanding of Environmental Transformations, Bioavailability and Effects of Nanomaterials, an International US Environmental Protection Agency—UK Environmental Nanoscience Initiative Joint Program
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作者 Mitch M.Lasat Kian Fan Chung +5 位作者 jamie lead Steve McGrath Richard J.Owen Sophie Rocks Jason Unrine Junfeng Zhang 《Journal of Environmental Protection》 2018年第4期385-404,共20页
Nanotechnology has significant economic, health, and environmental benefits, including renewable energy and innovative environmental solutions. Manufactured nanoparticles have been incorporated into new materials and ... Nanotechnology has significant economic, health, and environmental benefits, including renewable energy and innovative environmental solutions. Manufactured nanoparticles have been incorporated into new materials and products because of their novel or enhanced properties. These very same properties also have prompted concerns about the potential environmental and human health hazard and risk posed by the manufactured nanomaterials. Appropriate risk management responses require the development of models capable of predicting the environmental and human health effects of the nanomaterials. Development of predictive models has been hampered by a lack of information concerning the environmental fate, behavior and effects of manufactured nanoparticles. The United Kingdom (UK) Environmental Nanoscience Initiative and the United States (US) Environmental Protection Agency have developed an international research program to enhance the knowledgebase and develop risk-predicting models for manufactured nanoparticles. Here we report selected highlights of the program as it sought to maximize the complementary strengths of the transatlantic scientific communities by funding three integrated US-UK consortia to investigate the transformation of these nanoparticles in terrestrial, aquatic, and atmospheric environment. Research results demonstrate there is a functional relationship between the physicochemical properties of environmentally transformed nanomaterials and their effects and that this relationship is amenable to modeling. In addition, the joint transatlantic program has allowed the leveraging of additional funding, promoting transboundary scientific collaboration. 展开更多
关键词 AQUATIC Environment Consumer Products Manufactured NANOMATERIALS Predictive Models Terrestrial Ecosystem
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