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Jaya Kandasamy

Researcher at University of Technology, Sydney

Publications -  215
Citations -  7411

Jaya Kandasamy is an academic researcher from University of Technology, Sydney. The author has contributed to research in topics: Adsorption & Membrane fouling. The author has an hindex of 44, co-authored 209 publications receiving 6001 citations. Previous affiliations of Jaya Kandasamy include University of South Australia & Information Technology University.

Papers
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Removal and Recovery of Phosphate From Water Using Sorption

TL;DR: A comprehensive and critical review of the literature on the effectiveness of a number of sorbents, especially some novel ones that have recently emerged, in removing and recovering phosphate can be found in this article.
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Defluoridation of drinking water using adsorption processes

TL;DR: Future research needs to explore highly efficient, low cost adsorbents that can be easily regenerated for reuse over several cycles of operations without significant loss of adsorptive capacity and which have good hydraulic conductivity to prevent filter clogging during the fixed-bed treatment process.
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A review of draw solutes in forward osmosis process and their use in modern applications

TL;DR: In this paper, the authors review the various aspects of the draw solution in the process performance and provide valuable information regarding the selection criteria of suitable draw solution for the forward osmosis (FO) process.
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Cadmium Sorption and Desorption in Soils: A Review

TL;DR: In this paper, the authors present the present knowledge on the mechanisms and hysteresis of Cadmium sorption and desorption in soils and factors such as pH, ionic strength, index cation, other heavy metal cations, inorganic anions, organic ligands, Cd loading rate, and the type and amounts of organic matter and inorganic colloids influencing these processes.
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Enhanced removal of nitrate from water using surface modification of adsorbents--a review.

TL;DR: Current information on surface modifications of adsorbents is reviewed, the enhanced nitrate adsorption capacities achieved by the modifications, and the mechanisms of Adsorption are compared, and advantages and drawbacks of the techniques are presented.