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Chemosphere|November 4, 2010
Comparative bioremediation potential of four rhizospheric microbial species against lindaneP C Abhilash, Shubhi Srivastava, Nandita SinghJournal of Environmental Management|June 9, 2009
The Indian perspective of utilizing fly ash in phytoremediation, phytomanagement and biomass productionVimal Chandra Pandey, P C Abhilash, Nandita SinghTropical Ecology|June 26, 2023
A rapid assessment of stubble burning and air pollutants from satellite observationsP Das, M D Behera, P C AbhilashJournal of Hazardous Materials|July 31, 2009
Jatropha curcas: a potential crop for phytoremediation of coal fly ashSarah Jamil, P C Abhilash, Nandita Singh, et al.Journal of Molecular Modeling|December 8, 2011
Structure prediction and binding sites analysis of curcin protein of Jatropha curcas using computational approachesMugdha Srivastava, Shishir K Gupta, P C Abhilash, et al.Journal of Environmental Management|December 14, 2020
Steering the restoration of degraded agroecosystems during the United Nations Decade on Ecosystem RestorationPradeep Kumar Dubey, Ajeet Singh, Apoorva Raghubanshi, et al.Ecotoxicology and Environmental Safety|August 19, 2014
Phytoextraction and dissipation of lindane by Spinacia oleracea LRama Kant Dubey, Vishal Tripathi, Nandita Singh, et al.Journal of Hazardous Materials|December 30, 2008
Application of fly ash on the growth performance and translocation of toxic heavy metals within Cajanus cajan L.: implication for safe utilization of fly ash for agricultural productionVimal Chandra Pandey, P C Abhilash, Raj Narayan Upadhyay, et al.Trends in Biotechnology|May 23, 2012
Plant-microbe interactions: novel applications for exploitation in multipurpose remediation technologiesP C Abhilash, Jeff R Powell, Harikesh B Singh, et al.Frontiers in Plant Science|April 20, 2017
Integrated Approach of Agri-nanotechnology: Challenges and Future TrendsSandhya Mishra, Chetan Keswani, P C Abhilash, et al.Pageof 4