Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Tara M. Clancy"'
Autor:
Tara M. Clancy, Raghav R. Reddy, Antonio Lanzirotti, Susan Amrose, Kim F. Hayes, Kathryn V. Snyder, Lutgarde Raskin
Publikováno v:
Journal of Hazardous Materials. 300:522-529
Cement stabilization of arsenic-bearing wastes is recommended to limit arsenic release from wastes following disposal. Such stabilization has been demonstrated to reduce the arsenic concentration in the Toxicity Characteristic Leaching Procedure (TCL
Publikováno v:
Environmental Science & Technology. 48:4038-4047
The impact of monochloramine disinfection on the complex bacterial community structure in drinking water systems was investigated using culture-dependent and culture-independent methods. Changes in viable bacterial diversity were monitored using cult
Publikováno v:
Environmental Science & Technology. 47:10799-10812
Water treatment technologies for arsenic removal from groundwater have been extensively studied due to widespread arsenic contamination of drinking water sources. Central to the successful application of arsenic water treatment systems is the conside
Autor:
Tara M. Clancy, Sung Pil Hyun, Jeff Jackson, Giridhar Upadhyaya, Jess Brown, Lutgarde Raskin, Kim F. Hayes
Publikováno v:
Water Research. 44:4958-4969
A novel bioreactor system, consisting of two biologically active carbon (BAC) reactors in series, was developed for the simultaneous removal of nitrate and arsenic from a synthetic groundwater supplemented with acetic acid. A mixed biofilm microbial
Publikováno v:
Environmental sciencetechnology. 46(21)
Terminal electron accepting process (TEAP) zones developed when a simulated groundwater containing dissolved oxygen (DO), nitrate, arsenate, and sulfate was treated in a fixed-bed bioreactor system consisting of two reactors (reactors A and B) in ser
Autor:
Kim F. Hayes, Kathryn V. Snyder, Lutgarde Raskin, Jess Brown, Tara M. Clancy, Giridhar Upadhyaya
Publikováno v:
Water research. 46(4)
Contaminant removal from drinking water sources under reducing conditions conducive for the growth of denitrifying, arsenate reducing, and sulfate reducing microbes using a fixed-bed bioreactor may require oxygen-free gas (e.g., N2 gas) during backwa