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Environmental Impacts of Mixed Aggregates for use in Unbound Layers in Road Construction


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Banaitė, D., Tamošiūnienė, R. (2016): Sustainable development: the circular economy indicators’ selection model. Journal of Security and Sustainability Issues, 6(2), http://dx.doi.org/10.9770/jssi.2016.6.2(10).BanaitėD.TamošiūnienėR.2016Sustainable development: the circular economy indicators’ selection modelJournal of Security and Sustainability Issues62http://dx.doi.org/10.9770/jssi.2016.6.2(10).10.9770/jssi.2016.6.2(10)Search in Google Scholar

Regulation (EU) No 305/2011 of the European parliament and of the council, of 9 March 2011, Official Journal of the European Union, 4.4.2011.Regulation (EU) No 305/2011 of the European parliament and of the council, of 9 March 2011Official Journal of the European Union, 4.4.2011.Search in Google Scholar

Official Journal of the European Union. (2011). Regulation (EU) No 305/2011 of the European parliament and of the council laying down harmonised conditions for the marketing of construction products and repealing Council Directive 89/106/EEC, 88, pp. 5–43.Official Journal of the European Union2011Regulation (EU) No 305/2011 of the European parliament and of the council laying down harmonised conditions for the marketing of construction products and repealing Council Directive 89/106/EEC, 88543Search in Google Scholar

ARSO annual report (2019): The type and quantity of waste generated in manufacturing and service activities and the ways of managing (2018), https://www.arso.gov.si/varstvo%20okolja/odpadki/po-ro%c4%8dila%20in%20publikacije/. Last assessed march 2020.ARSO annual report2019The type and quantity of waste generated in manufacturing and service activities and the ways of managing(2018), https://www.arso.gov.si/varstvo%20okolja/odpadki/po-ro%c4%8dila%20in%20publikacije/. Last assessed march 2020.Search in Google Scholar

Yildirim, I., Prezzi, M. (2011): Chemical, mineralogical, and morphological properties of steel slag. Advances in Civil Engineering, pp. 1–13, doi:10.1155/2011/463638.YildirimI.PrezziM.2011Chemical, mineralogical, and morphological properties of steel slagAdvances in Civil Engineering11310.1155/2011/463638Open DOISearch in Google Scholar

Milačič, R., Zuliani, T., Oblak, T., Mladenovič, A., Ščančar, J. (2011): Environmental impacts of asphalt mixes with electric arc furnace steel slag. Journal of Environmental Quality, 40, pp. 115–1161, doi:10.2134/jeq2010.0516.MilačičR.ZulianiT.OblakT.MladenovičA.ŠčančarJ.2011Environmental impacts of asphalt mixes with electric arc furnace steel slagJournal of Environmental Quality40115116110.2134/jeq2010.051621712585Open DOISearch in Google Scholar

Oblak, T., Ščančar, J., Vahčič, M., Zuliani, T., Mladenovič, A., Milačič, R. (2011): Environmental impacts of asphalt and cement composites with addition of EAF dust. RMZ - Materials and Geoenvironment, 58(2), pp. 181–192.OblakT.ŠčančarJ.VahčičM.ZulianiT.MladenovičA.MilačičR.2011Environmental impacts of asphalt and cement composites with addition of EAF dustRMZ - Materials and Geoenvironment582181192Search in Google Scholar

National Slag Association, Steel slag: A premier construction aggregate, Assessed on March 2020, from http://www.acobrasil.org.br/siderurgiaemfo-co/CCABrasil/NSA%20Steel%20Furnace%20Brochure.pdf. Last assessed March 2020.National Slag Association, Steel slag: A premier construction aggregate, Assessed on March 2020from http://www.acobrasil.org.br/siderurgiaemfo-co/CCABrasil/NSA%20Steel%20Furnace%20Brochure.pdf. Last assessed March 2020.Search in Google Scholar

Lim, J.W., Chew, L.H., Choong, T.S.Y., Tezara, C., Yazdi, M.H. (2016): Overview of Steel Slag Application and Utilization, MATEC Web of Conferences 74, 00026, pp. 1–5, DOI: 10.1051/matecconf/20167400026.LimJ.W.ChewL.H.ChoongT.S.Y.TezaraC.YazdiM.H.2016Overview of Steel Slag Application and UtilizationMATEC Web of Conferences 74, 00026,1510.1051/matecconf/20167400026Open DOISearch in Google Scholar

Arribas, I., Vegas, J., San-José, J., Manso, J.M. (2014): Durability studies on steelmaking slag concretes. Materials & Design, 63, pp. 168–176, https://doi.org/10.1016/j.matdes.2014.06.002.ArribasI.VegasJ.San-JoséJ.MansoJ.M.2014Durability studies on steelmaking slag concretesMaterials & Design63168176https://doi.org/10.1016/j.matdes.2014.06.002.10.1016/j.matdes.2014.06.002Search in Google Scholar

Arribas, I., Santamaría, A., Ruiz, E., Ortega-López, Manso, J.M. (2015): Electric arc furnace slag and its use in hydraulic concrete. Construction and Building Materials, 15, pp. 68–79, https://doi.org/10.1016/j.conbuildmat.2015.05.003.ArribasI.SantamaríaA.RuizE.Ortega-LópezMansoJ.M.2015Electric arc furnace slag and its use in hydraulic concreteConstruction and Building Materials156879https://doi.org/10.1016/j.conbuildmat.2015.05.003.10.1016/j.conbuildmat.2015.05.003Search in Google Scholar

Roslan, N.H., Ismail, M., Abdul-Majid, Z., Ghoreishiamiri, S., Muhammad, B. (2016): Performance of steel slag and steel sludge in concrete. Construction and Building Materials, 104, pp. 1–24, https://doi.org/10.1016/j.conbuildmat.2015.12.008.RoslanN.H.IsmailM.Abdul-MajidZ.GhoreishiamiriS.MuhammadB.2016Performance of steel slag and steel sludge in concreteConstruction and Building Materials104124https://doi.org/10.1016/j.conbuildmat.2015.12.008.10.1016/j.conbuildmat.2015.12.008Search in Google Scholar

Penteado, C.S.G., Evangelista, B.L., dos Santos Ferreira, G.C., Borges, P.H.A., Lintz, R.C.C. (2019): Use of electric arc furnace slag for producing concrete paving blocks. Ambiente Construído, Porto Alegre, 19(2), pp. 21–32, http://dx.doi.org/10.1590/s1678-86212019000200305.PenteadoC.S.G.EvangelistaB.L.dos Santos FerreiraG.C.BorgesP.H.A.LintzR.C.C.2019Use of electric arc furnace slag for producing concrete paving blocksAmbiente Construído, Porto Alegre1922132http://dx.doi.org/10.1590/s1678-86212019000200305.10.1590/s1678-86212019000200305Search in Google Scholar

Wang, G.C. (2016): 8 - Unbound slag aggregate use in construction. In: The Utilization of Slag in Civil Infrastructure Construction, Woodhead Publishing Series in Civil and Structural Engineering: Number 68, Wang, G.C. (ed.). Elsevier Ltd., SPi Global: India, pp. 155–184, https://doi.org/10.1016/B978-0-08-100381-7.00008-2.WangG.C.20168 - Unbound slag aggregate use in constructionIn:The Utilization of Slag in Civil Infrastructure ConstructionWoodhead Publishing Series in Civil and Structural Engineering: Number 68,WangG.C.(ed.).Elsevier Ltd., SPi GlobalIndia155184https://doi.org/10.1016/B978-0-08-100381-7.00008-2.10.1016/B978-0-08-100381-7.00008-2Search in Google Scholar

Gonawala, R.J., Kumar, R., Chauhan, K.A. (2019): Usage of Crushed EAF Slag in Granular Sub-base Layer Construction. In: Proceedings of ICIIF 2018, Springer Nature, Singapore, Gateway East Singapore, pp. 257–266.GonawalaR.J.KumarR.ChauhanK.A.2019Usage of Crushed EAF Slag in Granular Sub-base Layer ConstructionIn:Proceedings of ICIIF 2018Springer NatureSingapore, Gateway East Singapore25726610.1007/978-981-13-1966-2_22Search in Google Scholar

Skaf, M., Manso, J.M., Aragón, Á., Fuente-Alonso, J.A., Ortega-López, V. (2017): EAF slag in asphalt mixes: A brief review of its possible re-use. Resources, Conservation and Recycling, 120, pp. 176–185. http://dx.doi.org/10.1016/j.resconrec.2016.12.009.SkafM.MansoJ.M.AragónÁ.Fuente-AlonsoJ.A.Ortega-LópezV.2017EAF slag in asphalt mixes: A brief review of its possible re-useResources, Conservation and Recycling120176185http://dx.doi.org/10.1016/j.resconrec.2016.12.009.10.1016/j.resconrec.2016.12.009Search in Google Scholar

Maharaj, C., White, D., Maharaj, R., Morin, C. (2017): Reuse of steel slag as an aggregate to asphaltic road pavement surface. Cogent Engineering, 4(1), pp. 1–12, doi.org/10.1080/23311916.2017.1416889.MaharajC.WhiteD.MaharajR.MorinC.2017Reuse of steel slag as an aggregate to asphaltic road pavement surfaceCogent Engineering41112doi.org/10.1080/23311916.2017.1416889.10.1080/23311916.2017.1416889Search in Google Scholar

Vaiana, R., Balzano, F., Iuele, T., Gallelli, V. (2019): Microtexture performance of EAF slags used as aggregate in asphalt mixes: A comparative study with surface properties of natural stones. Applied Sciences, 9(15), 3197, pp. 1–14, https://doi.org/10.3390/app9153197.VaianaR.BalzanoF.IueleT.GallelliV.2019Microtexture performance of EAF slags used as aggregate in asphalt mixes: A comparative study with surface properties of natural stonesApplied Sciences9153197114https://doi.org/10.3390/app9153197.10.3390/app9153197Search in Google Scholar

Češnovar, M., Traven, K., Horvat, B., Ducman, V. (2019): The Potential of Ladle Slag and Electric Arc Furnace Slag use in Synthesizing Alkali Activated Materials; the Influence of Curing on Mechanical Properties. Materials, 12(7), 1173, pp. 1–18, doi:10.3390/ma12071173.ČešnovarM.TravenK.HorvatB.DucmanV.2019The Potential of Ladle Slag and Electric Arc Furnace Slag use in Synthesizing Alkali Activated Materials; the Influence of Curing on Mechanical PropertiesMaterials127117311810.3390/ma12071173647985430974853Open DOISearch in Google Scholar

Vahčič, M., Milačič, R., Mladenovič, A., Murko, S., Zuliani, T., Zupančič, M., Ščančar, J. (2008): Leachability of Cr(VI) and other metals from asphalt composites with addition of filter dust. Waste Management, 28, pp. 2667–2674, doi:10.1016/j.wasman.2008.01.003.VahčičM.MilačičR.MladenovičA.MurkoS.ZulianiT.ZupančičM.ŠčančarJ.2008Leachability of Cr(VI) and other metals from asphalt composites with addition of filter dustWaste Management282667267410.1016/j.wasman.2008.01.00318308534Open DOISearch in Google Scholar

Šturm, T., Milačič, R., Murko, S., Vahčič, M., Mladenovič, A., Strupi Šuput, J., Ščančar, J. (2009): The use of EAF dust in cement composites: Assessment of environmental impact. Journal of Hazardous Materials, 166, pp. 277–283, doi:10.1016/j.jhazmat.2008.11.015.ŠturmT.MilačičR.MurkoS.VahčičM.MladenovičA.Strupi ŠuputJ.ŠčančarJ.2009The use of EAF dust in cement composites: Assessment of environmental impactJournal of Hazardous Materials16627728310.1016/j.jhazmat.2008.11.01519097693Open DOISearch in Google Scholar

Zalar Serjun, V., Mladenovič, A., Mirtič, B., Meden, A., Ščančar, J., Milačič, R. (2015): Recycling of ladle slag in cement composites: environmental impacts. Waste Management, 43, pp. 376–385, http://dx.doi.org/10.1016/j.wasman.2015.05.006.Zalar SerjunV.MladenovičA.MirtičB.MedenA.ŠčančarJ.MilačičR.2015Recycling of ladle slag in cement composites: environmental impactsWaste Management43376385http://dx.doi.org/10.1016/j.wasman.2015.05.006.10.1016/j.wasman.2015.05.00626008145Search in Google Scholar

Milačič, R., Zuliani, T., Oblak, T., Mladenovič, A., Ščančar, J. (2011): Environmental impacts of asphalt mixes with electric arc furnace steel slag. Journal of Environmental Quality, 40, pp. 115–1161, doi:10.2134/jeq2010.0516.MilačičR.ZulianiT.OblakT.MladenovičA.ŠčančarJ.2011Environmental impacts of asphalt mixes with electric arc furnace steel slagJournal of Environmental Quality40115116110.2134/jeq2010.051621712585Open DOISearch in Google Scholar

Wang, G.C. (2016): 7 - Environmental aspects of slag utilization. In: The Utilization of Slag in Civil Infrastructure Construction, Woodhead Publishing Series in Civil and Structural Engineering: Number 68, Wang, G.C. (ed.). Elsevier Ltd., SPi Global: India, pp. 131–153, https://doi.org/10.1016/B978-0-08-100381-7.00007-0.WangG.C.20167 - Environmental aspects of slag utilizationIn:The Utilization of Slag in Civil Infrastructure ConstructionWoodhead Publishing Series in Civil and Structural Engineering: Number 68,WangG.C.(ed.).Elsevier Ltd., SPi GlobalIndia131153https://doi.org/10.1016/B978-0-08-100381-7.00007-0.10.1016/B978-0-08-100381-7.00007-0Search in Google Scholar

SIST EN 1744-3 (2002). Tests for chemical properties of aggregates. Part 3, Preparation of eluents by leaching of aggregates.SIST EN 1744-32002Tests for chemical properties of aggregates. Part 3, Preparation of eluents by leaching of aggregatesSearch in Google Scholar

SIST EN 12457-4 (2004). Characterisation of waste – Leaching – Compliance test for leaching of granular waste materials and sludges. Part 4, One stage batch test at a liquid to solid ratio of 10 L/kg for materials with particle size below 10 mm (without or with size reduction).SIST EN 12457-42004Characterisation of waste – Leaching – Compliance test for leaching of granular waste materials and sludges. Part 4, One stage batch test at a liquid to solid ratio of 10 L/kg for materials with particle size below 10 mm (without or with size reduction)Search in Google Scholar

Vidmar, J., Zuliani, T., Novak, P., Drinčić, A., Ščančar, J., Milačič, R. (2017): Elements in water, suspended particulate matter and sediments of the Sava River. Journal of Soils and Sediments, 17(7), pp. 1917–1927, doi 10.1007/s11368-016-1512-4.VidmarJ.ZulianiT.NovakP.DrinčićA.ŠčančarJ.MilačičR.2017Elements in water, suspended particulate matter and sediments of the Sava RiverJournal of Soils and Sediments1771917192710.1007/s11368-016-1512-4Open DOISearch in Google Scholar

Decree on waste (2015): Official Gazette of Republic Slovenia RS, No. 37/15 and No. 69/15.Decree on waste2015Official Gazette of Republic Slovenia RSNo. 37/15 and No. 69/15.Search in Google Scholar

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