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Jothinathan Lakshmi

Researcher at Council of Scientific and Industrial Research

Publications -  34
Citations -  2122

Jothinathan Lakshmi is an academic researcher from Council of Scientific and Industrial Research. The author has contributed to research in topics: Adsorption & Langmuir adsorption model. The author has an hindex of 28, co-authored 34 publications receiving 1795 citations.

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The adsorption of phosphate by graphene from aqueous solution

TL;DR: In this paper, a systematic study of the adsorption process of graphene was performed by varying pH, ionic strength and temperature, and the results indicated that the second order kinetics model was well-suited to model the kinetic adaption of phosphate.
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Effects of alternating and direct current in electrocoagulation process on the removal of cadmium from water

TL;DR: The main objective of this study is to investigate the effects of AC and DC on the removal of cadmium from water using aluminum alloy as anode and cathode and showed that adsorption was exothermic and spontaneous in nature.
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Remediation of phosphate-contaminated water by electrocoagulation with aluminium, aluminium alloy and mild steel anodes.

TL;DR: The results showed that the maximum removal efficiency of 99% was achieved with aluminium alloy anode at a current density of 0.2 A dm(-2), at a pH of 7.0.
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Effects of alternating and direct current in electrocoagulation process on the removal of fluoride from water

TL;DR: In this article, the effects of alternating current and direct current on the removal of fluoride from water using an aluminum alloy as anode and cathode were investigated, and the results showed that removal efficiencies of 93 and 91.5% with energy consumption of 1.883 and 2.541 kWh kL−1 was achieved at a current density of 0.531 at 1.0 A dm−2 and pH 7.
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Studies on the Al–Zn–In-alloy as anode material for the removal of chromium from drinking water in electrocoagulation process

TL;DR: In this article, the results showed that the optimum removal efficiency of 98.2% was achieved using aluminum alloy anode at a current density of 0.2 µm − 2 µm at a pH of 7.0 µm.