Zobrazeno 1 - 10
of 175
pro vyhledávání: '"Linda M. Abriola"'
Autor:
Shuchi Liao, Simin Akbariyeh, Xiongyu Chen, Craig Klevan, Caroline Greenley, Keith P. Johnston, Linda M. Abriola, Kurt D. Pennell
Publikováno v:
Energy & Fuels. 37:4515-4523
Autor:
Shuchi Liao, Masoud Arshadi, Matthew J. Woodcock, Zachary S. S. L. Saleeba, Dorothea Pinchbeck, Chen Liu, Natalie L. Cápiro, Linda M. Abriola, Kurt D. Pennell
Publikováno v:
Environmental Science & Technology. 56:7976-7985
Per- and polyfluoralkyl substances (PFAS) are known to accumulate at interfaces, and the presence of nonaqueous-phase liquids (NAPLs) could influence the PFAS fate in the subsurface. Experimental and mathematical modeling studies were conducted to in
Autor:
Jason P. Hnatko, Chen Liu, Jack L. Elsey, Sheng Dong, John D. Fortner, Kurt D. Pennell, Linda M. Abriola, Natalie L. Cápiro
Publikováno v:
Environmental Science & Technology.
Publikováno v:
Environmental Science & Technology. 55:13822-13833
Microcosm experiments to assess microbial reductive dechlorination of chlorinated aliphatic hydrocarbons typically experience 5-50% mass loss due to frequent sampling events and diffusion through septa. A literature review, however, reveals that mode
Autor:
Peng-Fei Yan, Sheng Dong, Katherine E. Manz, Chen Liu, Matthew J. Woodcock, Melissa P. Mezzari, Linda M. Abriola, Kurt D. Pennell, Natalie L. Cápiro
Publikováno v:
Environmental sciencetechnology. 56(19)
The environmental fate of per- and polyfluoroalkyl substances (PFAS) in aqueous film-forming foams (AFFFs) remains largely unknown, especially under the conditions representative of natural subsurface systems. In this study, the biotransformation of
Autor:
Sheng Dong, Peng-Fei Yan, Chen Liu, Katherine E. Manz, Melissa P. Mezzari, Linda M. Abriola, Kurt D. Pennell, Natalie L. Cápiro
Publikováno v:
Journal of Hazardous Materials. 446:130629
Autor:
Keith P. Johnson, Hamed Mohammadnejad, Bonnie A. Marion, Kurt D. Pennell, Linda M. Abriola, Anthony A. Kmetz
Publikováno v:
Environmental Science: Nano. 8:470-484
Successful application of nanoparticle (NP)-based subsurface technologies strongly depends upon NP mobility, which can be severely limited in the presence of fine materials (e.g. clays), high temperature, and/or saline conditions. Our previous invest
Autor:
Shuchi Liao, Kurt D. Pennell, John D. Fortner, Chen Liu, Dorothea Pinchbeck, Linda M. Abriola, Natalie L. Cápiro
Publikováno v:
Environmental Science: Nano. 8:2492-2506
The effects of nanoscale silver (nAg) particles on subsurface microbial communities can be influenced by the presence of biosurfactants, which have been shown to alter nanoparticle surface properties. Batch and column studies were conducted to invest
Autor:
John D. Fortner, Linda M. Abriola, Matthew D. Becker, Kurt D. Pennell, Anushree Ghosh, Natalie L. Cápiro, Shuchi Liao
Publikováno v:
Environmental Science: Nano. 8:311-327
Although prior studies have investigated the effects of solution constituents, including dissolved organic matter and synthetic polymers, on nanoparticle mobility in porous media, far less attention has been directed toward evaluating the impacts of
Autor:
Sheng Dong, Peng-Fei Yan, Chen Liu, Katherine E. Manz, Melissa P. Mezzari, Linda M. Abriola, Kurt D. Pennell, Natalie Lara Capiro
Publikováno v:
SSRN Electronic Journal.