Please use this identifier to cite or link to this item: http://repo.lib.jfn.ac.lk/ujrr/handle/123456789/10018
Title: Utilization of Bottom Ash for Clay Mine Rehabilitation
Authors: Suloshini, S.
Ranathunga, A.S.
Kulathilaka, S.A.S.
Gunawardana, W.B.
Mapa, M.M.S.T.M.
Keywords: Bottom ash;Clay mines;Compaction;Soil amendment;Trace metals
Issue Date: 2022
Publisher: IEEE
Abstract: Attheendofminingactivities,claymineswereabandonedduetothecost andnon-availabilityoffillingmaterials.Theseabandonedclayminescauseadverse environmentalandsocialimpacts.Inaddition,largequantitiesofbottomash(BA) aregeneratedasaby-productofcoalcombustionprocess.ThisBAisdisposedby opendumpinginthelands,whichcreatessevereenvironmentalpollution.Therefore, conductedresearchonutilizationofBAforminerehabilitationisbeneficial.The mainfocusofthisresearchisapplicabilityofBAgeneratedfromLakvijayapower plant,SriLankaasapotentialbackfillmaterialandasoilamendmentduringtheclay minerehabilitation.Initiallytestswereconductedtoinvestigatethebasicproperties ofBA.Next,chemicalcompositionofBAwasanalysedtoselectthesuitablecrops forvegetation.FurtherpH,electricalconductivityandwaterholdingcapacitywere checkedandmicrostructuralmorphologyofBAwasdeterminedthroughScanning ElectronMicroscope.TheresultsshowedthatBAhasgoodengineeringproperties andthepotentialtoimproveagronomiccharacteristicsofsoil.Ithasbetterwater holdingcapacityandpermeability.BAcanadjustsoilpHtoadesirableplantgrowth range.AsBAhasaveryporousstructure,therootsystemcaneasilydevelopand helpstouptakenutrientsbytheplant.However,aconsiderablepercentageoftrace metalsisaccumulatedinBAwhichwillincreasethebioavailabilityofsometrace metalstolevelsthatposesrisktohuman.Thus,investigationswerecarriedoutto identifytheheavymetalconcentrationinleachateofBAusingcolumnleachingtest. ResultsshowedthatleachabilitypotentialoftracemetalsinBAdoesnotexceedthe allowablelimits.
URI: http://repo.lib.jfn.ac.lk/ujrr/handle/123456789/10018
DOI: https://doi.org/10.1007/978-981-16-4412-2_9
Appears in Collections:Civil Engineering

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