Christopher A. Impellitteri, Ph.D.

2001 University of Delaware, Newark, DE, United States 
Environmental Engineering, Soil Science Agriculture
"Christopher Impellitteri"
Cross-listing: Envirotree


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Herbert E. Allen grad student 2001 University of Delaware
 (Predicting partitioning of cadmium, copper, lead, nickel, zinc, and soil organic matter in soil solution from soil parameters.)
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Clar JG, Li X, Impellitteri CA, et al. (2016) Copper Nanoparticle Induced Cytotoxicity to Nitrifying Bacteria in Wastewater Treatment: A Mechanistic Copper Speciation Study by X-ray Absorption Spectroscopy. Environmental Science & Technology
Kapoor V, Elk M, Li X, et al. (2016) Effects of Cr(III) and Cr(VI) on nitrification inhibition as determined by SOUR, function-specific gene expression and 16S rRNA sequence analysis of wastewater nitrifying enrichments. Chemosphere. 147: 361-367
Kapoor V, Li X, Chandran K, et al. (2015) Use of functional gene expression and respirometry to study wastewater nitrification activity after exposure to low doses of copper. Environmental Science and Pollution Research International
Kapoor V, Li X, Elk M, et al. (2015) Impact of Heavy Metals on Transcriptional and Physiological Activity of Nitrifying Bacteria. Environmental Science & Technology
Silva RG, Nadagouda MN, Patterson CL, et al. (2014) Polymorph-dependent titanium dioxide nanoparticle dissolution in acidic and alkali digestions Environmental Science: Nano. 1: 284-292
Nietch CT, Quinlan EL, Lazorchak JM, et al. (2013) Effects of a chronic lower range of triclosan exposure on a stream mesocosm community. Environmental Toxicology and Chemistry / Setac. 32: 2874-87
Poynton HC, Lazorchak JM, Impellitteri CA, et al. (2013) Toxicity and transcriptomic analysis in Hyalella azteca suggests increased exposure and susceptibility of epibenthic organisms to zinc oxide nanoparticles. Environmental Science & Technology. 47: 9453-60
Silva RG, Nadagouda MN, Webster J, et al. (2013) Examining the efficiency of muffle furnace-induced alkaline hydrolysis in determining the titanium content of environmental samples containing engineered titanium dioxide particles. Environmental Science. Processes & Impacts. 15: 645-52
Impellitteri CA, Harmon S, Silva RG, et al. (2013) Transformation of silver nanoparticles in fresh, aged, and incinerated biosolids. Water Research. 47: 3878-86
Flory J, Kanel SR, Racz L, et al. (2013) Influence of pH on the transport of silver nanoparticles in saturated porous media: Laboratory experiments and modeling Journal of Nanoparticle Research. 15
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