Recycling of fishpond wastewater by adsorption of pollutants using aged refuse as an alternative low-cost adsorbent

The waste to wealth initiative has been championed by many researchers through the use of waste materials as adsorbents for wastewater treatment. The aged refuse became a research interest due to its availability, low cost and adsorption capacity. The aged refuse used was collected from the Air Hita...

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Main Authors: Sandra Chinenyenwa Anijiofor, Nik Norsyahariati Nik Daud, Syazwani Idrus, Hasfalina Che Man
Format: Article
Language:English
Published: BMC 2018-11-01
Series:Sustainable Environment Research
Online Access:http://www.sciencedirect.com/science/article/pii/S2468203917301097
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author Sandra Chinenyenwa Anijiofor
Nik Norsyahariati Nik Daud
Syazwani Idrus
Hasfalina Che Man
author_facet Sandra Chinenyenwa Anijiofor
Nik Norsyahariati Nik Daud
Syazwani Idrus
Hasfalina Che Man
author_sort Sandra Chinenyenwa Anijiofor
collection DOAJ
description The waste to wealth initiative has been championed by many researchers through the use of waste materials as adsorbents for wastewater treatment. The aged refuse became a research interest due to its availability, low cost and adsorption capacity. The aged refuse used was collected from the Air Hitam Sanitary Landfill site in Selangor, Malaysia which is more than 8 years of placement. The material characterization showed characteristics such as high porosity (51%), bulk density (ρ), 1.23 g cm−3, total surface area (Brunauer–Emmett–Teller) of 3.376 m2 g−I, capacity for exchange of cations and organic content of 9.90% which are ideal conditions for adsorption. The optimized operating conditions during treatment were dosage of 2 g 100 mL−1, pH 6, particle size ≤ 2 mm, agitation speed 250 rpm, and contact time of 70 min. The results showed maximum reduction efficiency of 91% for Chemical oxygen demand, Total suspends solids and Total dissolved solids and 84, 88 and 95% for Biochemical oxygen demand, NH4+ and Colour respectively and over 60% removal was observed in 10 min. Freundlich model was used to test the experimental data and it gave good correlation with R2 values very close to 1. The aged refuse technology is suitable for wastewater recovery and reuse through innovative column based aged refuse biofilter which incorporates adsorption, filtration, biodegradation and sedimentation processes. Keywords: Landfill reclamation, Low-cost adsorbents, Operating conditions, Removal efficiency, SEM/EDX, Contact time, Wastewater treatment
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spelling doaj.art-5977f1f4eb494f079b726674bf2742492022-12-22T03:14:06ZengBMCSustainable Environment Research2468-20392018-11-01286315321Recycling of fishpond wastewater by adsorption of pollutants using aged refuse as an alternative low-cost adsorbentSandra Chinenyenwa Anijiofor0Nik Norsyahariati Nik Daud1Syazwani Idrus2Hasfalina Che Man3Department of Civil Engineering, Universiti Putra Malaysia, Serdang 43400, Malaysia; Department of Civil Engineering, Federal Polytechnic, Birnin Kebbi 1034, NigeriaDepartment of Civil Engineering, Universiti Putra Malaysia, Serdang 43400, Malaysia; Corresponding author.Department of Civil Engineering, Universiti Putra Malaysia, Serdang 43400, MalaysiaDepartment of Biological and Agricultural Engineering, Universiti Putra Malaysia, Serdang 43400, MalaysiaThe waste to wealth initiative has been championed by many researchers through the use of waste materials as adsorbents for wastewater treatment. The aged refuse became a research interest due to its availability, low cost and adsorption capacity. The aged refuse used was collected from the Air Hitam Sanitary Landfill site in Selangor, Malaysia which is more than 8 years of placement. The material characterization showed characteristics such as high porosity (51%), bulk density (ρ), 1.23 g cm−3, total surface area (Brunauer–Emmett–Teller) of 3.376 m2 g−I, capacity for exchange of cations and organic content of 9.90% which are ideal conditions for adsorption. The optimized operating conditions during treatment were dosage of 2 g 100 mL−1, pH 6, particle size ≤ 2 mm, agitation speed 250 rpm, and contact time of 70 min. The results showed maximum reduction efficiency of 91% for Chemical oxygen demand, Total suspends solids and Total dissolved solids and 84, 88 and 95% for Biochemical oxygen demand, NH4+ and Colour respectively and over 60% removal was observed in 10 min. Freundlich model was used to test the experimental data and it gave good correlation with R2 values very close to 1. The aged refuse technology is suitable for wastewater recovery and reuse through innovative column based aged refuse biofilter which incorporates adsorption, filtration, biodegradation and sedimentation processes. Keywords: Landfill reclamation, Low-cost adsorbents, Operating conditions, Removal efficiency, SEM/EDX, Contact time, Wastewater treatmenthttp://www.sciencedirect.com/science/article/pii/S2468203917301097
spellingShingle Sandra Chinenyenwa Anijiofor
Nik Norsyahariati Nik Daud
Syazwani Idrus
Hasfalina Che Man
Recycling of fishpond wastewater by adsorption of pollutants using aged refuse as an alternative low-cost adsorbent
Sustainable Environment Research
title Recycling of fishpond wastewater by adsorption of pollutants using aged refuse as an alternative low-cost adsorbent
title_full Recycling of fishpond wastewater by adsorption of pollutants using aged refuse as an alternative low-cost adsorbent
title_fullStr Recycling of fishpond wastewater by adsorption of pollutants using aged refuse as an alternative low-cost adsorbent
title_full_unstemmed Recycling of fishpond wastewater by adsorption of pollutants using aged refuse as an alternative low-cost adsorbent
title_short Recycling of fishpond wastewater by adsorption of pollutants using aged refuse as an alternative low-cost adsorbent
title_sort recycling of fishpond wastewater by adsorption of pollutants using aged refuse as an alternative low cost adsorbent
url http://www.sciencedirect.com/science/article/pii/S2468203917301097
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