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Articles

Possibilities for analysis of selected nanometals in solid environmental samples

Pages 1598-1610 | Received 14 Oct 2014, Accepted 21 Feb 2015, Published online: 09 Apr 2015

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Shamshad Khan & Hatice Şengül. (2016) Experimental investigation of stability and transport of TiO2 nanoparticles in real soil columns. Desalination and Water Treatment 57:54, pages 26196-26203.
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N. Hendricks, O. Olatunji, I. Ofori & B. P. Gumbi. (2023) Occurrence, fate, and impact of engineered metal/carbonaceous nanomaterials in the environment, detection, and quantitation methods. International Journal of Environmental Science and Technology.
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Mohamed Mohamady Ghobashy, Mohamed Abd Elkodous, Soha Hamdy Shabaka, Sherif A. Younis, Dalal Mohamed Alshangiti, Mohamed Madani, Samera Ali Al-Gahtany, Walid F. Elkhatib, Ayman M. Noreddin, Norhan Nady & Gharieb S. El-Sayyad. (2021) An overview of methods for production and detection of silver nanoparticles, with emphasis on their fate and toxicological effects on human, soil, and aquatic environment. Nanotechnology Reviews 10:1, pages 954-977.
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Anna Rabajczyk, Maria Zielecka, Rafał Porowski & Philip K. Hopke. (2020) Metal nanoparticles in the air: state of the art and future perspectives. Environmental Science: Nano 7:11, pages 3233-3254.
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Ilona Tomczyk-Wydrych. (2019) Metal Nanoparticles in Surface Waters – a Risk to Aquatic Organisms. Safety & Fire Technology 54:2, pages 70-88.
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Owen T. Butler, Warren R. L. Cairns, Jennifer M. Cook & Christine M. Davidson. (2017) Atomic spectrometry update – a review of advances in environmental analysis. Journal of Analytical Atomic Spectrometry 32:1, pages 11-57.
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Lindsay M. Furtado, Mirco Bundschuh & Chris D. Metcalfe. (2016) Monitoring the Fate and Transformation of Silver Nanoparticles in Natural Waters. Bulletin of Environmental Contamination and Toxicology 97:4, pages 449-455.
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