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P. Padmaja Sudhakar
P. Padmaja Sudhakar
Verified email at msubaroda.ac.in
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Cited by
Cited by
Year
Adsorption of chromium from aqueous solutions using crosslinked chitosan–diethylenetriaminepentaacetic acid
R Bhatt, B Sreedhar, P Padmaja
International journal of biological macromolecules 74, 458-466, 2015
862015
Equilibrium and kinetic studies on reactive dye adsorption using palm shell powder (an agrowaste) and chitosan
G Sreelatha, V Ageetha, J Parmar, P Padmaja
Journal of Chemical & Engineering Data 56 (1), 35-42, 2011
862011
Palm shell based activated carbon for removal of bisphenol A: an equilibrium, kinetic and thermodynamic study
H Soni, P Padmaja
Journal of Porous Materials 21, 275-284, 2014
772014
XPS, EXAFS, and FTIR As Tools To Probe the Unexpected Adsorption-Coupled Reduction of U(VI) to U(V) and U(IV) on Borassus flabellifer-Based Adsorbents
S Kushwaha, B Sreedhar, P Padmaja
Langmuir 28 (46), 16038-16048, 2012
772012
Removal of fluoride from water with powdered corn cobs
HS Parmar, JB Patel, P Sudhakar, VJ Koshy
Journal of environmental science & engineering 48 (2), 135-138, 2006
752006
Adsorptive removal of bisphenol-A by rice husk ash and granular activated carbon—A comparative study
P Sudhakar, ID Mall, VC Srivastava
Desalination and Water Treatment 57 (26), 12375-12384, 2016
642016
Adsorptive removal of fluoride using biochar–A potential application in drinking water treatment
M Sadhu, P Bhattacharya, M Vithanage, PP Sudhakar
Separation and Purification Technology 278, 119106, 2021
622021
Sorption of uranium from aqueous solutions using palm-shell-based adsorbents: a kinetic and equilibrium study
S Kushwaha, PP Sudhakar
Journal of environmental radioactivity 126, 115-124, 2013
582013
An insight into the production, characterization, and mechanisms of action of low-cost adsorbents for removal of organics from aqueous solution
S Kushwaha, H Soni, V Ageetha, P Padmaja
Critical reviews in environmental science and technology 43 (5), 443-549, 2013
562013
Chitosan supramolecularly cross linked with trimesic acid–facile synthesis, characterization and evaluation of adsorption potential for chromium (VI)
R Bhatt, B Sreedhar, P Padmaja
International Journal of Biological Macromolecules 104, 1254-1266, 2017
502017
Palm shell extract capped silver nanoparticles—as efficient catalysts for degradation of dyes and as SERS substrates
A Vanaamudan, H Soni, PP Sudhakar
Journal of Molecular Liquids 215, 787-794, 2016
472016
Self-assembled chitosan-zirconium phosphate nanostructures for adsorption of chromium and degradation of dyes
R Bhatt, V Ageetha, SB Rathod, P Padmaja
Carbohydrate polymers 208, 441-450, 2019
452019
Equilibrium, kinetics and thermodynamic studies for adsorption of Hg (II) on palm shell powder
S Kushwaha, S Sodaye, P Padmaja
International Journal of Chemical and Molecular Engineering 2 (7), 125-131, 2008
452008
A spectroscopic study for understanding the speciation of Cr on palm shell based adsorbents and their application for the remediation of chrome plating effluents
S Kushwaha, B Sreedhar, PP Sudhakar
Bioresource technology 116, 15-23, 2012
432012
Adsorption of mercury (II), methyl mercury (II) and phenyl mercury (II) on chitosan cross-linked with a barbital derivative
S Kushwaha, PP Sudhakar
Carbohydrate polymers 86 (2), 1055-1062, 2011
432011
A chitosan-thiomer polymer for highly efficacious adsorption of mercury
R Bhatt, P Padmaj
carbohydrate Polymers 207, 663-674, 2019
412019
Adsorption of reactive blue 21 and reactive red 141 from aqueous solutions onto hydrotalcite
A Vanaamudan, B Chavada, P Padmaja
Journal of environmental chemical engineering 4 (3), 2617-2627, 2016
412016
Study of removal of cationic dyes using palm shell powder as adsorbent
G Sreelatha, P Padmaja
Journal of environmental protection science 2, 63-71, 2008
362008
Evaluation of acid-treated palm shell powder for its effectiveness in the adsorption of organophosphorus pesticides: isotherm, kinetics, and thermodynamics
S Kushwaha, G Sreelatha, P Padmaja
Journal of Chemical & Engineering Data 56 (5), 2407-2415, 2011
352011
Sorption of phenyl mercury, methyl mercury, and inorganic mercury onto chitosan and barbital immobilized chitosan: spectroscopic, potentiometric, kinetic, equilibrium, and …
S Kushwaha, B Sreedhar, P Padmaja
Journal of Chemical & Engineering Data 55 (11), 4691-4698, 2010
342010
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