Elimination and Kinetics of Ammonium Ions from Waste Water Using by Zeolite (NaY) Preparing from Agriculture Waste

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spelling 12330 https://intelek.unisza.edu.my/intelek/pages/view.php?ref=12330 https://intelek.unisza.edu.my/intelek/pages/search.php?search=!collection407072 Restricted Document Article Journal application/pdf 18 1.6 Adobe Acrobat Pro DC 20 Paper Capture Plug-in User user USER UsEr 2019-11-25 18:56:24 6630-01-FH02-ESERI-19-35817.pdf UniSZA Private Access Elimination and Kinetics of Ammonium Ions from Waste Water Using by Zeolite (NaY) Preparing from Agriculture Waste Bioscience Research Zeolite NaY prepared by ash from rice husk used for elimination of ammonium from aqueous solutions. Its performance investigation was compared with natural zeolite granulated formed and powdered mordenite. Natural zeolite mordenite and prepared Zeolite NaY were characterized by Energy Dispersive X-ray (EDX), X-ray Diffraction (XRD) and total cation exchange capacity (CEC) was measured. Measured cation exchange capacity (CEC) of zeolite NaY was 3.15 meq g-1, powdered mordenite was 1.46 meq g1 and granular mordenite 1.34 meq g-1. Kinetics of adsorption and for the deletion of NH4+ ions of equilibrium data from aqueous solutions were examined by fitting the investigational data to various models of reaction order. NH4 + adsorption on zeolite NaY and mordenite powder followed Pseudo-second-order reaction kinetically. Compared to all isotherms equations, the equilibrium pattern fits well to the Langmuir isotherm equation. The adsorption capacity of the monolayer for powdered mordenite 14.99 mg g- and granular mordenite 13.56 mg g- to be very lower than that zeolite Y was found 43.25 mg g-. Compared to natural mordenite, it can be concluded that zeolite Y synthesized from ash husk is a better sorbent for ammonia removal from aqueous solutions predicted to its higher adsorption capacity and rapid adsorption rate. 16 4 3395-3412
spellingShingle Elimination and Kinetics of Ammonium Ions from Waste Water Using by Zeolite (NaY) Preparing from Agriculture Waste
summary Zeolite NaY prepared by ash from rice husk used for elimination of ammonium from aqueous solutions. Its performance investigation was compared with natural zeolite granulated formed and powdered mordenite. Natural zeolite mordenite and prepared Zeolite NaY were characterized by Energy Dispersive X-ray (EDX), X-ray Diffraction (XRD) and total cation exchange capacity (CEC) was measured. Measured cation exchange capacity (CEC) of zeolite NaY was 3.15 meq g-1, powdered mordenite was 1.46 meq g1 and granular mordenite 1.34 meq g-1. Kinetics of adsorption and for the deletion of NH4+ ions of equilibrium data from aqueous solutions were examined by fitting the investigational data to various models of reaction order. NH4 + adsorption on zeolite NaY and mordenite powder followed Pseudo-second-order reaction kinetically. Compared to all isotherms equations, the equilibrium pattern fits well to the Langmuir isotherm equation. The adsorption capacity of the monolayer for powdered mordenite 14.99 mg g- and granular mordenite 13.56 mg g- to be very lower than that zeolite Y was found 43.25 mg g-. Compared to natural mordenite, it can be concluded that zeolite Y synthesized from ash husk is a better sorbent for ammonia removal from aqueous solutions predicted to its higher adsorption capacity and rapid adsorption rate.
title Elimination and Kinetics of Ammonium Ions from Waste Water Using by Zeolite (NaY) Preparing from Agriculture Waste
title_full Elimination and Kinetics of Ammonium Ions from Waste Water Using by Zeolite (NaY) Preparing from Agriculture Waste
title_fullStr Elimination and Kinetics of Ammonium Ions from Waste Water Using by Zeolite (NaY) Preparing from Agriculture Waste
title_full_unstemmed Elimination and Kinetics of Ammonium Ions from Waste Water Using by Zeolite (NaY) Preparing from Agriculture Waste
title_short Elimination and Kinetics of Ammonium Ions from Waste Water Using by Zeolite (NaY) Preparing from Agriculture Waste
title_sort elimination and kinetics of ammonium ions from waste water using by zeolite (nay) preparing from agriculture waste