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TitleAuthor(s)SourcePage(s)
Comparative study on the removal of copper (II) and nickel (II) from aqueous soluion using cellulose extracted from sisal fiber and cellulose grafted acrylonitrile copolymerHajeeth, T; Gomathi, T; Sudha, P NIJCT Vol.21(5-6) [September-November 2014]328-337
A low cost adsorbent prepared from Curcuma angustifolia scales for removal of Basic violet 14 from aqueous solutionSuresh, S; Sugumar, R Wilfred; Maiyalagan, TIJCT Vol.21(5-6) [September-November 2014]368-378
Modified SBA-15 synthesized using sugarcane leaf ash for nickel adsorptionArumugam, A; Ponnusami, VIJCT Vol.20(2) [March 2013]101-105
Removal of Orange II dye from aqueous solution by adsorption and photodegradation with visible light in presence of nitrogen doped titania nanocatalystChakrabortty, Dhruba; Gupta, Susmita SenIJCT Vol.22(1-2) [January-March 2015]34-41
Electrochemical investigation of hydrazide derivative as corrosion inhibitor for mild steel in hydrochloric acid mediumKumari, Preethi P; Shetty, Prakash; Rao, Suma AIJCT Vol.23(3) [May 2016]196-203
Study of water soluble dyes adsorption from aqueous solution by Prosopis spicigera L. wood (PSLW) carbonRani, M Jansi; Murugan, M; Subramaniam, P; Subramanian, EIJCT Vol.23(1) [January 2016]22-30
Adsorption studies of Cr+6 onto low- cost apple juice industry waste from aqueous solution: Equilibrium, kinetics and thermodynamicsChand, Piar; Sharma, Mohit; Pakade, Yogesh BIJCT Vol.22(5) [September 2015]210-218
Adsorptive removal of lead ion from aqueous solution by activated carbon/iron oxide magnetic compositeYao, Shuhua; Sun, Shuyu; Wang, Shuo; Shi, ZhongliangIJCT Vol.23(2) [March 2016]146-152
Removal of arsenic from water by different adsorbentsGoel, Rajeev; Kapoor, S K; Misra, Kshipra; Sharma, R KIJCT Vol.11(4) [July 2004]518-525
Study on removal of m-phenylenediamine from aqueous solution by adsorption over granular activated carbonRaval, H D; Raval, A H; Bhatt, J H; Pandya, R PIJCT Vol.22(1-2) [January-March 2015]42-47