Laboratory performance of asphalt mixtures incorporating electric arc furnace slag and basic oxygen furnace slag as partial replacement for conventional aggregates

K. N. Chandrashekar Gowda , G. M. Naveen

Energy, Ecology and Environment ›› 2023, Vol. 8 ›› Issue (6) : 586 -595.

PDF
Energy, Ecology and Environment ›› 2023, Vol. 8 ›› Issue (6) : 586 -595. DOI: 10.1007/s40974-023-00285-6
Original Article

Laboratory performance of asphalt mixtures incorporating electric arc furnace slag and basic oxygen furnace slag as partial replacement for conventional aggregates

Author information +
History +
PDF

Abstract

The usage of unconventional aggregate materials in road construction is still in the experimental stage. A possible environmental risk is the continued use of conventional aggregates in the construction of roads and highways. The issue may be resolved by sensible mitigating measures and essential research on substitute aggregate materials. The present article investigates the laboratory performance of asphalt mixtures incorporating electric arc furnace slag (EAF) and basic oxygen furnace (BOF) slag as partial replacements (10%, 30%, and 50%) for conventional aggregates. Surface morphology and chemical composition of aggregates have been studied using SEM and EDAX analysis. The characteristics of the asphalt mixture’s mix design, including abrasion loss, moisture sensitivity, rutting resistance, fatigue behaviour, and resilient modulus, were investigated. Results indicate that the mix design properties of asphalt mixtures with EAF and BOF slag were within the requirements. Further, the incorporation of EAF and BOF slag in asphalt mixtures reduced abrasion loss irrespective of replacement percentage. Moisture sensitivity, rutting, fatigue, and resilient modulus properties of asphalt mixtures with 30% EAF slag were higher compared to asphalt mixtures with 30% BOF slag and conventional mixtures. However, asphalt mixtures with 50% replacement of EAF and BOF slag were lower compared to control mixtures. According to the findings, the optimum replacement percentage for EAF and BOF steel slag is 30% conventional aggregate. When compared to BOF steel slag, EAF steel slag performed better in terms of moisture sensitivity, rutting resistance, fatigue behaviour, and resilient modulus. The results of this study can be used as a reference for creating recycled asphalt mixtures with slag aggregates sourced from the steel industry.

Keywords

Electric arc furnace slag / Basic oxygen furnace slag / Abrasion loss / Moisture sensitivity / Rutting resistance / Fatigue behaviour / Resilient modulus

Cite this article

Download citation ▾
K. N. Chandrashekar Gowda, G. M. Naveen. Laboratory performance of asphalt mixtures incorporating electric arc furnace slag and basic oxygen furnace slag as partial replacement for conventional aggregates. Energy, Ecology and Environment, 2023, 8(6): 586-595 DOI:10.1007/s40974-023-00285-6

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Alinezhad M, Sahaf A. Investigation of the fatigue characteristics of warm stone matrix asphalt (WSMA) containing electric arc furnace (EAF) steel slag as coarse aggregate and Sasobit as warm mix additive. Case Stud Constr Mater, 2019, 11: e00265

[2]

Alnadish A, Aman Y. A study on the economic using of steel slag aggregate in asphalt mixtures reinforced by aramid fiber. ARPN J Eng Appl Sci, 2018, 13(1): 276-292

[3]

Asi IM. Laboratory comparison study for the use of stone matrix asphalt in hot weather climates. Constr Build Mater, 2006, 20(10): 982-989

[4]

Aziz MMA, Hainin MR, Yaacob H, Ali Z, Chang FL, Adnan AM. Characterisation and utilisation of steel slag for the construction of roads and highways. Mater Res Innov, 2014, 18(6): S6-255

[5]

Brand AS, Roesler JR. Steel furnace slag aggregate expansion and hardened concrete properties. Cement Concr Compos, 2015, 60: 1-9

[6]

BIS (Bureau of Indian Standards) (2013) Paving bitumen. IS 73. New Delhi, India: BIS.

[7]

BSI (British Standards Institution) (2003) Bituminous mixtures—Tests methods for hot mix asphalt. Part 22: Wheel tracking test. BS EN 12697–22, Washington, DC

[8]

Cetin ZSEL. Laboratory evaluation of basic oxygen furnace slag for use in asphalt mixtures. J Mater Civ Eng, 2018, 30(7): 04018196

[9]

Chen SH, Lin DF, Luo HL, Lin ZY. Application of reclaimed basic oxygen furnace slag asphalt pavement in road base aggregate. Constr Build Mater, 2017, 157: 647-653

[10]

Chen Y, Xu J, Wu S, Wu M, You Z. Properties of asphalt mixture incorporating electric arc furnace steel slag as coarse aggregate. Constr Build Mater, 2019, 220: 1-10

[11]

Dondi G, Mazzotta F, Lantieri C, Cuppi F, Vignali V, Sangiovanni C. Use of steel slag as an alternative to aggregate and filler in road pavements. Materials, 2021, 14(2): 345

[12]

Fakhri M, Ahmadi A. Evaluation of fracture resistance of asphalt mixes involving steel slag and RAP: susceptibility to aging level and freeze and thaw cycles. Constr Build Mater, 2017, 157: 748-756

[13]

Georgiou P, Loizos A. Characterization of sustainable asphalt mixtures containing high reclaimed asphalt and steel slag. Materials, 2021, 14(17): 4938

[14]

Goli H, Hesami S, Ameri M. Laboratory evaluation of damage behavior of warm mix asphalt containing steel slag aggregates. J Mater Civ Eng, 2017, 29(6): 04017009

[15]

Groenniger J, Falsetto AC, Ismailova I, Wang D, Wistuba MP. Experimental investigation of asphalt mixture containing Linz-Donawitz steel slag. J Traffic Transp Eng, 2017, 4(4): 372-379

[16]

Indian Minerals Yearbook (2020) Indian Minerals Yearbook ministry of Mines. Government of India, New Delhi

[17]

Jiang Y, Ling TC, Shi C, Pan SY. Characteristics of steel slags and their use in cement and concrete—a review. Resour Conserv Recycl, 2018, 136: 187-197

[18]

Kandhal PS, Hoffman GL. Evaluation of steel slag fine aggregate in hot-mix asphalt mixtures. Transp Res Rec, 1997, 1583(1): 28-36

[19]

Kavussi A, Qazizadeh MJ. Fatigue characterization of asphalt mixes containing electric arc furnace (EAF) steel slag subjected to long term aging. Constr Build Mater, 2014, 72: 158-166

[20]

Kavussi A, Jalili Qazizadeh M, Hassani A. Fatigue behavior analysis of asphalt mixes containing electric arc furnace (EAF) steel slag. J Rehabil Civil Eng, 2015, 3(1): 74-86

[21]

Kumar H, Varma S. A review on utilization of steel slag in hot mix asphalt. Int J Pavement Res Technol, 2021, 14: 232-242

[22]

Lee EJ, Park HM, Suh YC, Lee JS. Performance evaluation of asphalt mixtures with 100% EAF and BOF steel slag aggregates using laboratory tests and mechanistic analyses. KSCE J Civ Eng, 2022, 26(11): 4542-4551

[23]

Loureiro CD, Moura CF, Rodrigues M, Martinho FC, Silva HM, Oliveira JR. Steel slag and recycled concrete aggregates: replacing quarries to supply sustainable materials for the asphalt paving industry. Sustainability, 2022, 14(9): 5022

[24]

MoRTH (Ministry of Road Transport and Highway) (2013) Specifications for road and bridge works, 5th Ed, Indian Road Congress, New Delhi

[25]

Pathak S, Choudhary R, Kumar A, Pattanaik ML. Friction characteristics of open graded asphalt friction courses with BOF and EAF steel slag aggregates. J Mater Civ Eng, 2022, 34(6): 04022087

[26]

Pattanaik ML, Choudhary R, Kumar B. Clogging evaluation of open graded friction course mixes with EAF steel slag and modified binders. Constr Build Mater, 2018, 159: 220-233

[27]

Pattanaik ML, Choudhary R, Kumar B, Kumar A. Mechanical properties of open graded friction course mixtures with different contents of electric arc furnace steel slag as an alternative aggregate from steel industries. Road Mater Pavement Des, 2021, 22(2): 268-292

[28]

Pravakar S (2011) Transport infrastructure of India. A report, Institute of developing economies, Japan

[29]

Qazizadeh MJ, Farhad H, Kavussi A, Sadeghi A. Evaluating the fatigue behavior of asphalt mixtures containing electric arc furnace and basic oxygen furnace slags using surface free energy estimation. J Clean Prod, 2018, 188: 355-361

[30]

Skaf M, Manso JM, Aragón Á, Fuente-Alonso JA, Ortega-López V. EAF slag in asphalt mixes: a brief review of its possible re-use. Resour Conserv Recycl, 2017, 120: 176-185

[31]

Shatnawi AS, Abdel-Jaber MTS, Abdel-Jaber MES, Ramadan KZ. Effect of Jordanian steel blast furnace slag on asphalt concrete hot mixes. Jordan J Civ Eng, 2008, 2(3): 197-207

[32]

Shiva Kumar G, Suresha SN. Evaluation of properties of nonfoaming warm mix asphalt mixtures at lower working temperatures. J Mater Civ Eng, 2017, 29(11): 04017229

[33]

Shiva Kumar G, Ravi Shankar AU. Evaluation of workability and mechanical properties of stone matrix asphalt mixtures made with and without stabilizing additives. Transp Infrastruct Geotechnol, 2020, 7(2): 191-204

[34]

Shiva Kumar G, Gayathri Nivedha R, Venkatesha G, Ismail M, Sridhar HN, Ramaraju HK. Laboratory investigation of workability and mechanical properties of concrete utilizing fly ash and iron ore tailing waste. Innov Infrastruct Solut, 2022, 7(5): 1-10

[35]

Teixeira JESL, Schumacher AG, Pires PM, Castelo Branco VTF, Martins HB. Expansion level of steel slag aggregate effects on both material properties and asphalt mixture performance. Transp Res Rec, 2019, 2673(3): 506-515

[36]

Wang G, Wang Y, Gao Z. Use of steel slag as a granular material: volume expansion prediction and usability criteria. J Hazard Mater, 2010, 184(1–3): 555-560

[37]

Wu S, Xue Y, Ye Q, ChenY, Utilization of steel slag as aggregates for stone mastic asphalt (SMA) mixtures. Build Environ, 2007, 42(7): 2580-2585

[38]

Zhu Z, Zhang Y, Liu X, Huang Y, Wang D. Performance evaluation of asphalt mixtures incorporating electric arc furnace steel slag and basic oxygen furnace slag. Constr Build Mater, 2018, 170: 497-505

[39]

Ziaee SA, Kavussi A, Jalili Qazizadeh M, Mohammadzadeh Moghadam A. Evaluation of long term ageing of asphalt mixtures containing EAF and BOF steel slags. Int J Transp Eng, 2015, 2(3): 245-265

[40]

Ziaee SA, Behnia K. Evaluating the effect of electric arc furnace steel slag on dynamic and static mechanical behavior of warm mix asphalt mixtures. J Clean Prod, 2020, 274: 123092

AI Summary AI Mindmap
PDF

133

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/