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The Science of the Total Environment|September 16, 2006
Arsenic biogeochemistry and human health risk assessment in organo-arsenical pesticide-applied acidic and alkaline soils: an incubation studyRupali Datta, Dibyendu Sarkar, Saurabh Sharma, et al.
Chemosphere|April 13, 2011
Antimony sorption at gibbsite-water interfaceSudipta Rakshit, Dibyendu Sarkar, Pravin Punamiya, et al.
Environmental Science and Pollution Research International|April 8, 2018
Community response to a sustainable restoration plan for a superfund siteVirinder Sidhu, Dibyendu Sarkar, Rupali Datta, et al.
Chemosphere|March 28, 2006
Bioaccumulation and physiological effects of mercury in Sesbania drummondiiMohd Israr, Shivendra Sahi, Rupali Datta, et al.
Environmental Pollution (Barking, Essex : 1987)|March 21, 2017
Ethylenediaminedisuccinic acid (EDDS) enhances phytoextraction of lead by vetiver grass from contaminated residential soils in a panel study in the fieldRamesh Attinti, Kirk R Barrett, Rupali Datta, et al.
Journal of Environmental Quality|May 16, 2013
In situ attenuated total reflectance fourier-transform infrared study of oxytetracycline sorption on magnetiteSudipta Rakshit, Evert J Elzinga, Rupali Datta, et al.
Chemosphere|October 2, 2019
Metabolic response of vetiver grass (Chrysopogon zizanioides) to acid mine drainageJeffrey D Kiiskila, Kefeng Li, Dibyendu Sarkar, et al.
Bioresource Technology|November 10, 2021
Biodegradation of per- and polyfluoroalkyl substances (PFAS): A reviewZhiming Zhang, Dibyendu Sarkar, Jayanta Kumar Biswas, et al.
Environmental Pollution (Barking, Essex : 1987)|August 31, 2006
Arsenic immobilization in soils amended with drinking-water treatment residualsDibyendu Sarkar, Konstantinos C Makris, Vandana Vandanapu, et al.
Environmental Pollution (Barking, Essex : 1987)|January 6, 2010
Vetiver grass is capable of removing TNT from soil in the presence of ureaPadmini Das, Rupali Datta, Konstantinos C Makris, et al.
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