Grantee Research Project Results
Journal Publications Details for Grant Number R833318
Agglomeration, Retention, and Transport Behavior of Manufactured Nanoparticles in Variably-Saturated Porous Media
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Reference Type | Reference Title | Journal | Author | Citation | Progress Report Year | Document Sources |
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Journal Article | Synthesis and characterization of Co-doped wurtzite ZnS nanocrystals. | MATERIALS CHEMISTRY AND PHYSICS | Bi C, Pan L, Xu M, Yin J, Qin L, Liu J, Zhu H, Xiao JQ | Bi C, Pan L, Xu M, Yin J, Qin L, Liu J, Zhu H, Xiao JQ. Synthesis and characterization of Co-doped wurtzite ZnS nanocrystals. Materials Chemistry and Physics 2009;116(2-3):363-367. |
R833318 (Final) |
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Journal Article | Raman spectroscopy of Co-doped wurtzite ZnS nanocrystals. | CHEMICAL PHYSICS LETTERS | Bi C, Pan L, Xu M, Yin J, Guo Z, Qin L, Zhu H, Xiao JQ | Bi C, Pan L, Xu M, Yin J, Guo Z, Qin L, Zhu H, Xiao JQ. Raman spectroscopy of Co-doped wurtzite ZnS nanocrystals. Chemical Physics Letters 2009;481(4-6):220-223. |
R833318 (Final) |
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Journal Article | Effect of dissolved organic matter on the stability of magnetite nanoparticles under different pH and ionic strength conditions. | SCIENCE OF THE TOTAL ENVIRONMENT | Hu J-D, Zevi Y, Kuo X-M, Xiao J, Wang X-J, Jin Y | Hu J-D, Zevi Y, Kuo X-M, Xiao J, Wang X-J, Jin Y. Effect of dissolved organic matter on the stability of magnetite nanoparticles under different pH and ionic strength conditions. Science of the Total Environment 2010;408(16):3477-3489. |
R833318 (Final) |
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Journal Article | Surface roughness effect on deposition of nano- and micro-sized colloids in saturated columns at different solution ionic strengths. | VADOSE ZONE JOURNAL | Shen C, Li B, Wang C, Huang Y, Jin Y | Shen C, Li B, Wang C, Huang Y, Jin Y. Surface roughness effect on deposition of nano- and micro-sized colloids in saturated columns at different solution ionic strengths. Vadose Zone Journal 2011;10(3):1071-1081. |
R833318 (Final) |
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Journal Article | Retention and transport of silica nanoparticles in saturated porous media: effect of concentration and particle size. | Environmental Science and Technology | Wang C, Bobba AD, Attinti R, Shen C, Lazouskaya V, Wang L-P, Jin Y | Wang C, Bobba AD, Attinti R, Shen C, Lazouskaya V, Wang L-P, Jin Y. Retention and transport of silica nanoparticles in saturated porous media: effect of concentration and particle size. Environmental Science & Technology 2012;46(13):7151-7158. |
R833318 (Final) |
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Journal Article | Uptake, translocation, and accumulation of manufactured iron oxide nanoparticles by pumpkin plants. | JOURNAL OF ENVIRONMENTAL MONITORING | Zhu H, Han J, Xiao JQ, Jin Y | Zhu H, Han J, Xiao JQ, Jin Y. Uptake, translocation, and accumulation of manufactured iron oxide nanoparticles by pumpkin plants. Journal of Environmental Monitoring 2008;10(6):713-717. |
R833318 (2009) R833318 (Final) |
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