Difference between revisions of "Dr. Shaily Mahendra"

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(Created page with "==Work and Contact Information== EMPLOYER: EMAIL: WEBPAGE: ==About the Contributor== ==Article Contributions== __NOTOC__ Mahendra")
 
 
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==Work and Contact Information==
 
==Work and Contact Information==
  
EMPLOYER:
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EMPLOYER:  
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:University of California
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:Department of Civil and Environmental Engineering
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:Los Angeles, CA  90095-1593
  
EMAIL:  
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EMAIL: [mailto:mahendra@seas.ucla.edu mahendra@seas.ucla.edu]
  
 
WEBPAGE:  
 
WEBPAGE:  
  
 
==About the Contributor==
 
==About the Contributor==
 +
Dr. Mahendra's research interests lie in the area of microbial interactions with chemical contaminants and nanoparticles for applications ranging from ecotoxicology to biodegradation to disinfection. Dr. Mahendra's laboratory pursues research projects employing microbiological, molecular biological, and isotopic tools to (a) characterize microbial communities in engineered and natural environments, (b) optimize biological processes to improve the performance of wastewater treatment or bioremediation systems, (c) explore production of biofuels from industrial wastewater, and (d) investigate mechanisms of transformation, toxicity, and trophic transfer of nanoparticles.
  
 
==Article Contributions==
 
==Article Contributions==
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*[[1,4-Dioxane]]
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*[[Biodegradation - 1,4-Dioxane]]
  
 
__NOTOC__
 
__NOTOC__
  
 
[[Category: Contributors|Mahendra]]
 
[[Category: Contributors|Mahendra]]

Latest revision as of 15:21, 16 October 2019

Work and Contact Information

EMPLOYER:

University of California
Department of Civil and Environmental Engineering
Los Angeles, CA 90095-1593

EMAIL: mahendra@seas.ucla.edu

WEBPAGE:

About the Contributor

Dr. Mahendra's research interests lie in the area of microbial interactions with chemical contaminants and nanoparticles for applications ranging from ecotoxicology to biodegradation to disinfection. Dr. Mahendra's laboratory pursues research projects employing microbiological, molecular biological, and isotopic tools to (a) characterize microbial communities in engineered and natural environments, (b) optimize biological processes to improve the performance of wastewater treatment or bioremediation systems, (c) explore production of biofuels from industrial wastewater, and (d) investigate mechanisms of transformation, toxicity, and trophic transfer of nanoparticles.

Article Contributions