A novel method for the quantification of industrial and municipal waste materials for environmental hazard assessment

A novel methodological approach was developed to quantified the volume of industrial waste desposal (IWD) site, combined with municipal waste materials (MWM), through the integration of a non-invasive, fast, and less expenssive RES2-D Electrical Resistivity Technique (ERT), using Wenner-Schlumberger...

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Main Authors: Arifin, M.H., Kayode, J.S., Ismail, M.K.I., Abdullah, A.M., Embrandiri, A., Nazer, N.S.M., Azmi, A.
Format: Article
Published: Elsevier B.V. 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098147555&doi=10.1016%2fj.mex.2020.101182&partnerID=40&md5=36dd8eff9e560d2025f2b463b58b07d4
http://eprints.utp.edu.my/32393/
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spelling my.utp.eprints.323932022-03-29T02:01:39Z A novel method for the quantification of industrial and municipal waste materials for environmental hazard assessment Arifin, M.H. Kayode, J.S. Ismail, M.K.I. Abdullah, A.M. Embrandiri, A. Nazer, N.S.M. Azmi, A. A novel methodological approach was developed to quantified the volume of industrial waste desposal (IWD) site, combined with municipal waste materials (MWM), through the integration of a non-invasive, fast, and less expenssive RES2-D Electrical Resistivity Technique (ERT), using Wenner-Schlumberger electrode array geophysical method with Oasis Montaj software. Underground water bearing structures, and the eco-system are being contaminated through seepage of the plumes emanating from the mixtures of the industrial waste materials (IWM), made of moist cemented soil with municipal solid wastes (MSW) dumped at the site. The distribution of the contiminant hazardous plumes emanating from the waste materials' mixtures within the subsurface structural lithological layers was clearly map and delineated within the near-surface structures, using the triplicate technique to collect samples of the soil with the waste mixtures, and the water analysis for the presence of dissolved ions. The deployed method helped to monitor the seepage of the contaminant leachate plumes to the groundwater aquifer units via the ground surface, through the subsurface stratum lithological layers, and hence, estimation of the waste materials' volume was possibly approximated to be 312,000 m3. In summary, the novel method adopted are as presented below: � The novel method is transferable, reproduce-able, and most importantly, it is unambiguous technique for the quantification of environmental, industrial and municipal waste materials. � It helps to map the distribution of the plumes emanating from the waste materials' mixtures within the subsurface structural lithological layers that was clearly delineated within the near-surface structures underlain the study site. � The procedure helped in the monitoring of leachate contaminants plumes seepages into the surface water bodies and the groundwater aquifer units, via the ground surface, through to the porous subsurface stratum lithological layers. © 2020 Elsevier B.V. 2021 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098147555&doi=10.1016%2fj.mex.2020.101182&partnerID=40&md5=36dd8eff9e560d2025f2b463b58b07d4 Arifin, M.H. and Kayode, J.S. and Ismail, M.K.I. and Abdullah, A.M. and Embrandiri, A. and Nazer, N.S.M. and Azmi, A. (2021) A novel method for the quantification of industrial and municipal waste materials for environmental hazard assessment. MethodsX, 8 . http://eprints.utp.edu.my/32393/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description A novel methodological approach was developed to quantified the volume of industrial waste desposal (IWD) site, combined with municipal waste materials (MWM), through the integration of a non-invasive, fast, and less expenssive RES2-D Electrical Resistivity Technique (ERT), using Wenner-Schlumberger electrode array geophysical method with Oasis Montaj software. Underground water bearing structures, and the eco-system are being contaminated through seepage of the plumes emanating from the mixtures of the industrial waste materials (IWM), made of moist cemented soil with municipal solid wastes (MSW) dumped at the site. The distribution of the contiminant hazardous plumes emanating from the waste materials' mixtures within the subsurface structural lithological layers was clearly map and delineated within the near-surface structures, using the triplicate technique to collect samples of the soil with the waste mixtures, and the water analysis for the presence of dissolved ions. The deployed method helped to monitor the seepage of the contaminant leachate plumes to the groundwater aquifer units via the ground surface, through the subsurface stratum lithological layers, and hence, estimation of the waste materials' volume was possibly approximated to be 312,000 m3. In summary, the novel method adopted are as presented below: � The novel method is transferable, reproduce-able, and most importantly, it is unambiguous technique for the quantification of environmental, industrial and municipal waste materials. � It helps to map the distribution of the plumes emanating from the waste materials' mixtures within the subsurface structural lithological layers that was clearly delineated within the near-surface structures underlain the study site. � The procedure helped in the monitoring of leachate contaminants plumes seepages into the surface water bodies and the groundwater aquifer units, via the ground surface, through to the porous subsurface stratum lithological layers. © 2020
format Article
author Arifin, M.H.
Kayode, J.S.
Ismail, M.K.I.
Abdullah, A.M.
Embrandiri, A.
Nazer, N.S.M.
Azmi, A.
spellingShingle Arifin, M.H.
Kayode, J.S.
Ismail, M.K.I.
Abdullah, A.M.
Embrandiri, A.
Nazer, N.S.M.
Azmi, A.
A novel method for the quantification of industrial and municipal waste materials for environmental hazard assessment
author_facet Arifin, M.H.
Kayode, J.S.
Ismail, M.K.I.
Abdullah, A.M.
Embrandiri, A.
Nazer, N.S.M.
Azmi, A.
author_sort Arifin, M.H.
title A novel method for the quantification of industrial and municipal waste materials for environmental hazard assessment
title_short A novel method for the quantification of industrial and municipal waste materials for environmental hazard assessment
title_full A novel method for the quantification of industrial and municipal waste materials for environmental hazard assessment
title_fullStr A novel method for the quantification of industrial and municipal waste materials for environmental hazard assessment
title_full_unstemmed A novel method for the quantification of industrial and municipal waste materials for environmental hazard assessment
title_sort novel method for the quantification of industrial and municipal waste materials for environmental hazard assessment
publisher Elsevier B.V.
publishDate 2021
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098147555&doi=10.1016%2fj.mex.2020.101182&partnerID=40&md5=36dd8eff9e560d2025f2b463b58b07d4
http://eprints.utp.edu.my/32393/
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