Utilization of brachystegia spiciforms (msasa) leaf powder in the removal of nitrates from wastewaters: an equilibrium study

The investigation of nitrate adsorption onto Brachystegia spiciformis leaf powder from waste waters was performed. Characterization for the functional groups of the biomass before and after nitrate sorption as well as after desorption was done using an FTIR spectrophotometer. The effect of pH, conta...

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Main Author: Hungwe, Isheanesu
Language:English
Published: Midlands State University 2015
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Online Access:http://hdl.handle.net/11408/719
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author Hungwe, Isheanesu
author_facet Hungwe, Isheanesu
author_sort Hungwe, Isheanesu
collection DSpace
description The investigation of nitrate adsorption onto Brachystegia spiciformis leaf powder from waste waters was performed. Characterization for the functional groups of the biomass before and after nitrate sorption as well as after desorption was done using an FTIR spectrophotometer. The effect of pH, contact time, dosage and initial nitrate concentration was investigated. The Brachystegia spiciformis leaf powder had amine, carboxylic and hydroxyl groups that were involved in nitrate removal from aqueous environment. Optimum conditions for nitrate uptake were at pH 4, contact time of 30 minutes and biosorbent dose of 1.5 g and varying nitrate initial concentrations from 5 to 50 mg L-1. The equilibrium data generated from the nitrate initial concentrations fitted the isotherms in the order Dubinnin-Radushkevich ˂ Halsey ꞊ Freundlich ˂ Langmuir ˂ Temkin with correlation coefficient, R2, values 0.9683, 0.9686, 0.9686, 0.9692 and 0.9792 respectively. The Freundlich`s adsorption intensity, n, (0.1 ˂ 1𝑛⁄ ˂ 1) and the Langmuir`s separation factor, 𝑅𝐿, (0 < 𝑅𝐿 < 1) revealed nitrate sorption favourability onto Brachystegia spiciformis leaf powder with the Langmuir`s sorption capacity of 1.6297 mgg-1. Halsey and Freundlich isotherms evidenced surface heterogeneity and that the Brachystegia spiciformis had macro and micro pores. The Temkin and Dubinnin-Radushkevich isotherms indicated that the sorption process was based on physisorption and it was evidenced by heat of sorption constant, 𝑏𝑣. Nitrate desorption from the loaded Brachystegia spiciformis was achieved by increasing pH to alkaline conditions and the highest desorption ratio was achieved at 91.26 % at pH 11. After desorption the FTIR spectrum of Brachystegia spiciformis did not retain back its original spectrum.
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spelling ir-11408-7192022-06-27T13:49:05Z Utilization of brachystegia spiciforms (msasa) leaf powder in the removal of nitrates from wastewaters: an equilibrium study Hungwe, Isheanesu Brachystegia spiciformis The investigation of nitrate adsorption onto Brachystegia spiciformis leaf powder from waste waters was performed. Characterization for the functional groups of the biomass before and after nitrate sorption as well as after desorption was done using an FTIR spectrophotometer. The effect of pH, contact time, dosage and initial nitrate concentration was investigated. The Brachystegia spiciformis leaf powder had amine, carboxylic and hydroxyl groups that were involved in nitrate removal from aqueous environment. Optimum conditions for nitrate uptake were at pH 4, contact time of 30 minutes and biosorbent dose of 1.5 g and varying nitrate initial concentrations from 5 to 50 mg L-1. The equilibrium data generated from the nitrate initial concentrations fitted the isotherms in the order Dubinnin-Radushkevich ˂ Halsey ꞊ Freundlich ˂ Langmuir ˂ Temkin with correlation coefficient, R2, values 0.9683, 0.9686, 0.9686, 0.9692 and 0.9792 respectively. The Freundlich`s adsorption intensity, n, (0.1 ˂ 1𝑛⁄ ˂ 1) and the Langmuir`s separation factor, 𝑅𝐿, (0 < 𝑅𝐿 < 1) revealed nitrate sorption favourability onto Brachystegia spiciformis leaf powder with the Langmuir`s sorption capacity of 1.6297 mgg-1. Halsey and Freundlich isotherms evidenced surface heterogeneity and that the Brachystegia spiciformis had macro and micro pores. The Temkin and Dubinnin-Radushkevich isotherms indicated that the sorption process was based on physisorption and it was evidenced by heat of sorption constant, 𝑏𝑣. Nitrate desorption from the loaded Brachystegia spiciformis was achieved by increasing pH to alkaline conditions and the highest desorption ratio was achieved at 91.26 % at pH 11. After desorption the FTIR spectrum of Brachystegia spiciformis did not retain back its original spectrum. 2015-10-13T10:25:06Z 2015-10-13T10:25:06Z 2014 http://hdl.handle.net/11408/719 en open Midlands State University
spellingShingle Brachystegia spiciformis
Hungwe, Isheanesu
Utilization of brachystegia spiciforms (msasa) leaf powder in the removal of nitrates from wastewaters: an equilibrium study
title Utilization of brachystegia spiciforms (msasa) leaf powder in the removal of nitrates from wastewaters: an equilibrium study
title_full Utilization of brachystegia spiciforms (msasa) leaf powder in the removal of nitrates from wastewaters: an equilibrium study
title_fullStr Utilization of brachystegia spiciforms (msasa) leaf powder in the removal of nitrates from wastewaters: an equilibrium study
title_full_unstemmed Utilization of brachystegia spiciforms (msasa) leaf powder in the removal of nitrates from wastewaters: an equilibrium study
title_short Utilization of brachystegia spiciforms (msasa) leaf powder in the removal of nitrates from wastewaters: an equilibrium study
title_sort utilization of brachystegia spiciforms (msasa) leaf powder in the removal of nitrates from wastewaters: an equilibrium study
topic Brachystegia spiciformis
url http://hdl.handle.net/11408/719
work_keys_str_mv AT hungweisheanesu utilizationofbrachystegiaspiciformsmsasaleafpowderintheremovalofnitratesfromwastewatersanequilibriumstudy