Christopher A Impellitteri
Overview
Explore the profile of Christopher A Impellitteri including associated specialties, affiliations and a list of published articles.
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Articles
29
Citations
237
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Recent Articles
1.
Clar J, Li X, Impellitteri C, Bennett-Stamper C, Luxton T
Environ Sci Technol
. 2016 Jul;
50(17):9105-13.
PMID: 27466862
With the inclusion of engineered nanomaterials in industrial processes and consumer products, wastewater treatment plants (WWTPs) could serve as a major sink for these emerging contaminants. Previous research has demonstrated...
2.
Kapoor V, Elk M, Li X, Impellitteri C, Santo Domingo J
Chemosphere
. 2016 Jan;
147:361-7.
PMID: 26774300
The effect of Cr(III) and Cr(VI) on nitrification was examined with samples from nitrifying enrichment cultures using three different approaches: by measuring substrate (ammonia) specific oxygen uptake rates (SOUR), by...
3.
Kapoor V, Li X, Chandran K, Impellitteri C, Santo Domingo J
Environ Sci Pollut Res Int
. 2015 Dec;
23(7):6443-50.
PMID: 26627696
Autotrophic nitrification in biological nitrogen removal systems has been shown to be sensitive to the presence of heavy metals in wastewater treatment plants. Using transcriptase-quantitative polymerase chain reaction (RT-qPCR) data,...
4.
Kapoor V, Li X, Elk M, Chandran K, Impellitteri C, Santo Domingo J
Environ Sci Technol
. 2015 Oct;
49(22):13454-62.
PMID: 26501957
Heavy metals can inhibit nitrification, a key process for nitrogen removal in wastewater treatment. The transcriptional responses of amoA, hao, nirK, and norB were measured in conjunction with specific oxygen...
5.
Nietch C, Quinlan E, Lazorchak J, Impellitteri C, Raikow D, Walters D
Environ Toxicol Chem
. 2013 Sep;
32(12):2874-87.
PMID: 24038532
Triclosan (5-chloro-2-(2,4-dichlorophenoxy)phenol) is an antimicrobial found in consumer soaps and toothpaste. It is in treated wastewater effluents at low parts-per-billion concentrations, representing a potentially chronic exposure condition for biota inhabiting...
6.
Poynton H, Lazorchak J, Impellitteri C, Blalock B, Smith M, Struewing K, et al.
Environ Sci Technol
. 2013 Jul;
47(16):9453-60.
PMID: 23889737
Nanoparticles (NPs) are expected to make their way into the aquatic environment where sedimentation of particles will likely occur, putting benthic organisms at particular risk. Therefore, organisms such as Hyalella...
7.
Silva R, Nadagouda M, Webster J, Govindaswamy S, Hristovski K, Ford R, et al.
Environ Sci Process Impacts
. 2013 Jun;
15(3):645-52.
PMID: 23738363
A novel muffle furnace (MF)-based potassium hydroxide (KOH) fusion digestion technique was developed and evaluated for different titanium dioxide materials in various solid matrices. Digestion of different environmental samples containing...
8.
Impellitteri C, Harmon S, Silva R, Miller B, Scheckel K, Luxton T, et al.
Water Res
. 2013 Apr;
47(12):3878-86.
PMID: 23561507
The purpose of this research was to assess the chemical transformation of silver nanoparticles (AgNPs) in aged, fresh, and incinerated biosolids in order to provide information for AgNP life cycle...
9.
Poynton H, Lazorchak J, Impellitteri C, Blalock B, Rogers K, Allen H, et al.
Environ Sci Technol
. 2012 May;
46(11):6288-96.
PMID: 22545559
Applications for silver nanomaterials in consumer products are rapidly expanding, creating an urgent need for toxicological examination of the exposure potential and ecological effects of silver nanoparticles (AgNPs). The integration...
10.
Adams W, Xu Y, Little J, Fristachi A, Rice G, Impellitteri C
Environ Sci Technol
. 2011 Jul;
45(16):6902-7.
PMID: 21728330
Organotins (OTs) are additives widely used as thermal and light stabilizers in polyvinyl chloride (PVC) plastics. OTs can leach into water flowing through PVC pipes. This work examines the leaching...