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Grantee Research Project Results

Journal Publications Details for Grant Number R832535

Fate and Transport of Carbon Nanomaterials in Unsaturated and Saturated Soils

RFA: Exploratory Research: Nanotechnology Research Grants Investigating Environmental and Human Health Effects of Manufactured Nanomaterials: A Joint Research Solicitation - EPA, NSF, NIOSH (2005)

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Journal Article (5)
Reference Type Reference Title Journal Author Citation Progress Report Year Document Sources
Journal Article Investigation of the transport and deposition of fullerene (C60) nanoparticles in quartz sands under varying flow conditions. None Li Y, Wang Y, Pennell KD, Abriola LM Li Y, Wang Y, Pennell KD, Abriola LM. Investigation of the transport and deposition of fullerene (C60) nanoparticles in quartz sands under varying flow conditions. Environmental Science & Technology 2008;42(19):7174-7180. R832535 (Final)
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Journal Article Transport and retention of nanoscale C60 aggregates in water-saturated porous media. None Wang Y, Li Y, Fortner JD, Hughes JB, Abriola LM, Pennell KD Wang Y, Li Y, Fortner JD, Hughes JB, Abriola LM, Pennell KD. Transport and retention of nanoscale C60 aggregates in water-saturated porous media. Environmental Science & Technology 2008;42(10):3588-3594. R832535 (Final)
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Journal Article Influence of electrolyte species and concentration on the aggregation and transport of fullerene nanoparticles in quartz sands. None Wang Y, Li Y, Pennell KD Wang Y, Li Y, Pennell KD. Influence of electrolyte species and concentration on the aggregation and transport of fullerene nanoparticles in quartz sands. Environmental Toxicology and Chemistry 2008;27(9):1860-1867. R832535 (Final)
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Journal Article Transport and retention of fullerene nanoparticles in natural soils. None Wang Y, Li Y, Kim H, Walker SL, Abriola LM, Pennell KD Wang Y, Li Y, Kim H, Walker SL, Abriola LM, Pennell KD. Transport and retention of fullerene nanoparticles in natural soils. Journal of Environmental Quality 2010;39(6):1925-1933. R832535 (Final)
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  • Abstract: American Society of Agronomy-Abstract
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Journal Article Transport behavior of functionalized multi-wall carbon nanotubes in water-saturated quartz sand as a function of tube length. None Wang Y, Kim J-H, Baek J-B, Miller GW, Pennell KD Wang Y, Kim J-H, Baek J-B, Miller GW, Pennell KD. Transport behavior of functionalized multi-wall carbon nanotubes in water-saturated quartz sand as a function of tube length. Water Research 2012;46(14):4521-4531. R832535 (Final)
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The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.

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