Biosorption of arsenic from aqueous solution using agricultural residue ‘rice polish’ D Ranjan, M Talat, SH Hasan Journal of hazardous materials 166 (2-3), 1050-1059, 2009 | 365 | 2009 |
Agro-industrial waste ‘wheat bran’for the biosorptive remediation of selenium through continuous up-flow fixed-bed column SH Hasan, D Ranjan, M Talat Journal of Hazardous Materials 181 (1-3), 1134-1142, 2010 | 168 | 2010 |
Rice polish: an alternative to conventional adsorbents for treating arsenic bearing water by up-flow column method D Ranjan, M Talat, SH Hasan Industrial & engineering chemistry research 48 (23), 10180-10185, 2009 | 78 | 2009 |
Water hyacinth biomass (WHB) for the biosorption of hexavalent chromium: optimization of process parameters. SH Hasan, D Ranjan, M Talat BioResources, 2010 | 65 | 2010 |
Global climate change: the loop between cause and impact V Kumar, D Ranjan, K Verma Global climate change, 187-211, 2021 | 59 | 2021 |
Bioadsorption of arsenic: an artificial neural networks and response surface methodological approach D Ranjan, D Mishra, SH Hasan Industrial & engineering chemistry research 50 (17), 9852-9863, 2011 | 56 | 2011 |
Modified biomass of Phanerochaete chrysosporium immobilized on luffa sponge for biosorption of hexavalent chromium DK Verma, SH Hasan, D Ranjan, RM Banik International Journal of Environmental Science and Technology 11, 1927-1938, 2014 | 47 | 2014 |
Biosorption of Cr(VI) from aqueous solution using A. hydrophila in up-flow column: optimization of process variables SH Hasan, P Srivastava, D Ranjan, M Talat Applied microbiology and biotechnology 83, 567-577, 2009 | 45 | 2009 |
Biosorption of Cr(VI) from Water Using Biomass of Aeromonas hydrophila: Central Composite Design for Optimization of Process Variables D Ranjan, P Srivastava, M Talat, SH Hasan Applied biochemistry and biotechnology 158, 524-539, 2009 | 44 | 2009 |
“Rice Polish” for the removal of arsenic from aqueous solution: optimization of process variables SH Hasan, D Ranjan, M Talat Industrial & engineering chemistry research 48 (9), 4194-4201, 2009 | 32 | 2009 |
Agro-industrial waste: a low-cost option for the biosorptive remediation of selenium anions SH Hasan, D Ranjan Industrial & engineering chemistry research 49 (19), 8927-8934, 2010 | 29 | 2010 |
Parametric optimization of selenite and selenate biosorption using wheat bran in batch and continuous mode D Ranjan, SH Hasan Journal of Chemical & Engineering Data 55 (11), 4808-4816, 2010 | 17 | 2010 |
RICE BRAN CARBON: AN ALTERNATIVE TO COMMERCIAL ACTIVATED CARBON FOR THE REMOVAL OF HEXAVALENT CHROMIUM FROM AQUEOUS SOLUTION. D Ranjan, SH Hasan BioResources 5 (3), 2010 | 10 | 2010 |
Optimization of bromate adsorption onto Fe-CNTs nanocomposite using response surface methodology D Ranjan, MA Khan, M Otero, MR Siddiqui, SA Alshaeef Water SA 47 (4), 423–429-423–429, 2021 | 4 | 2021 |
Biosorption of Cd (II) from Water Using Citrobacter koseri SH Hasan, BN Bhattacharjee, D Ranjan, M Talat 4th Kuala Lumpur International Conference on Biomedical Engineering 2008 …, 2008 | 4 | 2008 |
Optimization of sorption of Pb (II) from water using rice bran SH Hasan, D Ranjan, BN Bhattacharjee, M Talat 4th Kuala Lumpur International Conference on Biomedical Engineering 2008 …, 2008 | 2 | 2008 |
Chemical, Physical and Biological Techniques for Recovery of Heavy Metals from Wastewater D Ranjan Wastewater Resource Recovery and Biological Methods, 51-86, 2023 | 1 | 2023 |
Nanomaterials originated from microbes for the removal of toxic pollutants from water D Ranjan Environmental Applications of Microbial Nanotechnology, 347-363, 2023 | 1 | 2023 |
Spatiotemporal Evaluation of Causes and Consequences of Wetland Degradation V Kumar, D Ranjan, K Verma Wetlands Conservation: Current Challenges and Future Strategies, 162-174, 2021 | 1 | 2021 |
Biosorption of Methyl Red: Parametric Optimization Using Response Surface Methodology D Ranjan International Journal of Engineering Science & Advance Research 1 (2), 66-68, 2015 | 1 | 2015 |