Please use this identifier to cite or link to this item: http://localhost:8080/xmlui/handle/123456789/2325
Title: EFFECTIVE UTILIZATION OF GREEN MATERIALS IN THE EVICTION OF PHOSPHATE IONS: A COMPARATIVE STUDY
Other Titles: Chemistry of Advanced Materials and its Biomedical Applications
Authors: Vivithabharathi K
ShyamalaDevi N
Muthulakshmi Andal N
Keywords: plant material
phosphate
batch process
adsorption
isotherms
Issue Date: 2018
Publisher: Kumaraguru College of Technology, Coimbatore
Abstract: Phosphate ions from various sources viz., fertilizers, agricultural runoff and sewagewastewaters discharged into water bodies either directly or indirectly may causeeutrophication and death of aquatic plants. Efficiencies of Camellia sinensis stems (CSS) andPistachio vera hull(PVH) in trapping phosphate ions from aqueous solutions is verifiedthrough Batch Equilibration Method. Excess alkaline nature of CSS & PVH is reduced byneutralization, treating with 0.1N H2SO4 and HCl for 3hours each respectively and thereafterreferred to as TCSSD and TPVHP. Characterization studies of the treated materials are carried out using Optika microscope, FTIR spectrophotometer and SEM/EDAX analyses.Optimization is established under variable operating parameters viz., particle sizes anddosages of the sorbent materials, agitation time between sorbent’s and sorbate species, initialconcentrations and pH of the medium. A judicious comparison between the two studiedsystems viz., PO43- - TCSSD and PO43- - TPVHP registered 99% sorption of the anion with theparticle size of 0.18mm, 250mg dosage, 10mg/L initial concentration and pH 5 but forvariation in agitation time intervals, where TCSSD exhibited maximum sorptive efficiency at9 minutes against TPVHP, which recorded 12 minutes. Experimental data are validated withLangmuir and Freundlich adsorption isotherms, where the best linear fit is registered forFreundlich plot in case of the former and Langmuir plot for the latter. Outcomes of the workprove the employed materials to be promising in confiscating phosphate ions and shall beprogressed towards mitigation of effluents.
URI: http://localhost:8080/xmlui/handle/123456789/2325
ISBN: 9788193719848
Appears in Collections:National Conference

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