Blending Linz–Donawitz and Blast Furnace slags with the Kambara reactor byproduct to improve their reuse in roadworks

The use of industrial byproducts as replacement of natural aggregates has been extensively investigated to design eco-friendly roads. One of the most examined byproducts for this purpose is steel slag. However, existing studies do not explore the blending of different slags to enhance the engineerin...

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Published inJournal of material cycles and waste management Vol. 24; no. 6; pp. 2555 - 2568
Main Authors Schumacher, Aécio G., Gomes, Guilherme J. C., Schneider, Denise S. G., Pires, Patrício J. M., Gomes, Ruan G. S.
Format Journal Article
LanguageEnglish
Published Tokyo Springer Japan 01.11.2022
Springer Nature B.V
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Abstract The use of industrial byproducts as replacement of natural aggregates has been extensively investigated to design eco-friendly roads. One of the most examined byproducts for this purpose is steel slag. However, existing studies do not explore the blending of different slags to enhance the engineering performance of base layers. The applicability of Linz–Donawitz (LD), Blast Furnace (BF) and Kambara Reactor (KR) steel byproducts is evaluated as a single base layer for rural (unsurfaced) roads in Brazil. A series of laboratory experiments were performed to assess the characteristics of eight soil-byproduct mixtures with 50% and 75% byproduct contents, including new blends of LD/KR and BF/KR slags. Additionally, the most suitable mixture was proposed considering different performance indicators. Results demonstrate the coarse-grained, nonplastic and non-expansive nature of the byproducts, with CBR values higher than 100%. The more byproduct added to soil, the larger is the strength and the lower the expansion. The mixture with 75% of the proposed LD/KR blend and 25% of a clayey soil was considered as optimum, based on a trade-off between engineering properties, environmental impacts, and material costs. Findings and discussions are relevant to reduce waste stockpiles of steel companies, helping engineers and policy makers reuse blended slag byproducts.
AbstractList The use of industrial byproducts as replacement of natural aggregates has been extensively investigated to design eco-friendly roads. One of the most examined byproducts for this purpose is steel slag. However, existing studies do not explore the blending of different slags to enhance the engineering performance of base layers. The applicability of Linz–Donawitz (LD), Blast Furnace (BF) and Kambara Reactor (KR) steel byproducts is evaluated as a single base layer for rural (unsurfaced) roads in Brazil. A series of laboratory experiments were performed to assess the characteristics of eight soil-byproduct mixtures with 50% and 75% byproduct contents, including new blends of LD/KR and BF/KR slags. Additionally, the most suitable mixture was proposed considering different performance indicators. Results demonstrate the coarse-grained, nonplastic and non-expansive nature of the byproducts, with CBR values higher than 100%. The more byproduct added to soil, the larger is the strength and the lower the expansion. The mixture with 75% of the proposed LD/KR blend and 25% of a clayey soil was considered as optimum, based on a trade-off between engineering properties, environmental impacts, and material costs. Findings and discussions are relevant to reduce waste stockpiles of steel companies, helping engineers and policy makers reuse blended slag byproducts.
Author Gomes, Guilherme J. C.
Schneider, Denise S. G.
Pires, Patrício J. M.
Schumacher, Aécio G.
Gomes, Ruan G. S.
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  surname: Schumacher
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  givenname: Guilherme J. C.
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  givenname: Patrício J. M.
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  givenname: Ruan G. S.
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  surname: Gomes
  fullname: Gomes, Ruan G. S.
  organization: Department of Civil and Environmental Engineering, Pontifical Catholic University of Rio de Janeiro, University Campus
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Issue 6
Keywords Base performance
Unsurfaced roads
Slag properties
Industrial byproducts
Sustainability
Slag blends
Language English
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PublicationSubtitle Official Journal of the Japan Society of Material Cycles and Waste Management (JSMCWM) and the Korea Society of Waste Management (KSWM)
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Snippet The use of industrial byproducts as replacement of natural aggregates has been extensively investigated to design eco-friendly roads. One of the most examined...
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SubjectTerms Blast furnace slags
Blending
By products
Byproducts
Civil Engineering
Clay soils
Engineering
Environmental impact
Environmental Management
Iron and steel industry
Mixtures
Original Article
Reactors
Rural roads
Slag
Soil mixtures
Steel
Waste Management/Waste Technology
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Title Blending Linz–Donawitz and Blast Furnace slags with the Kambara reactor byproduct to improve their reuse in roadworks
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