Knowledge Agora



Similar Articles

Title Utilisation of Mining Waste from the Steel Industry, Ladle Furnace Slags, as a Filler in Bituminous Mixtures of Continuous Grading
ID_Doc 7613
Authors Nebreda-Rodrigo, FJ; Terrones-Saeta, JM; Suárez-Macías, J; Moreno-López, ER; Corpas-Iglesias, FA; Martínez-García, C
Title Utilisation of Mining Waste from the Steel Industry, Ladle Furnace Slags, as a Filler in Bituminous Mixtures of Continuous Grading
Year 2021
Published Metals, 11, 9
Abstract Road construction is an activity that involves a large consumption of raw materials, with the consequent high environmental impact. For this reason, various research projects are being developed in which waste is used as a raw material for bituminous mixtures. This avoids the extraction of raw materials, reduces the environmental impact and reduces greenhouse gas emissions. In this research, the incorporation of ladle furnace slag as a filler for continuous grading bituminous mixtures was evaluated. Firstly, the ladle furnace slag was chemically and physically characterised and its suitability for use as a filler was determined in accordance with the regulations. Subsequently, bituminous mixtures were conformed with the slag and also with commercial fillers, calcareous and hornfels, in order to compare the results. Finally, the physical properties, Marshall stability and the effect of water were determined with the immersion-compression test on all families of samples. The results showed that the mixes conformed with ladle furnace slag had higher Marshall stability, less variation due to the effect of water and acceptable physical properties. Consequently, the suitability of utilisation of these slags in bituminous mixtures could be confirmed.
PDF

Similar Articles

ID Score Article
7684 Terrones-Saeta, JM; Suárez-Macías, J; Iglesias-Godino, FJ; Corpas-Iglesias, FA Evaluation of the Physical, Chemical and Environmental Properties of Ladle Furnace Slag for Their Utilization as Filler in Bituminous Mixtures(2021)Metals, 11, 3
22727 Terrones-Saeta, JM; Suárez-Macías, J; Iglesias-Godino, FJ; Corpas-Iglesias, FA Evaluation of the Use of Electric Arc Furnace Slag and Ladle Furnace Slag in Stone Mastic Asphalt Mixes with Discarded Cellulose Fibers from the Papermaking Industry(2020)Metals, 10.0, 11
29269 Terrones-Saeta, JM; Suarez-Macías, J; Moreno-López, ER; Corpas-Iglesias, FA Determination of the Chemical, Physical and Mechanical Characteristics of Electric Arc Furnace Slags and Environmental Evaluation of the Process for Their Utilization as an Aggregate in Bituminous Mixtures(2021)Materials, 14.0, 4
26996 Díaz-Piloneta, M; Terrados-Cristos, M; Alvarez-Cabal, JV; Vergara-González, E Comprehensive Analysis of Steel Slag as Aggregate for Road Construction: Experimental Testing and Environmental Impact Assessment(2021)Materials, 14, 13
7660 Terrones-Saeta, JM; Iglesias-Godino, FJ; Corpas-Iglesias, FA; Martínez-García, C Study of the Incorporation of Ladle Furnace Slag in the Manufacture of Cold In-Place Recycling with Bitumen Emulsion(2020)Materials, 13, 21
13971 Lagos-Varas, M; Movilla-Quesada, D; Raposeiras, AC; Castro-Fresno, D; Vega-Zamanillo, A; Cumian-Benavides, M Use of Hydrated Ladle Furnace Slag as a filler substitute in asphalt mastics: Rheological analysis of filler/bitumen interaction(2022)
29947 Terrones-Saeta, JM; Suárez-Macías, J; Iglesias-Godino, FJ; Corpas-Iglesias, FA Development of High Resistance Hot Mix Asphalt with Electric Arc Furnace Slag, Ladle Furnace Slag, and Cellulose Fibers from the Papermaking Industry(2021)Applied Sciences-Basel, 11.0, 1
26388 Roberto, A; Mantovani, L; Romeo, E; Tebaldi, G; Montepara, A; Tribaudino, M Re-using Ladle Furnace Steel slags as filler in asphalt mixtures(2022)
29295 Suárez-Macías, J; Terrones-Saeta, JM; Iglesias-Godino, FJ; Corpas-Iglesias, FA Study of the Incorporation of Biomass Bottom Ash as a Filler for Discontinuous Grading Bituminous Mixtures with Bitumen Emulsion(2021)Applied Sciences-Basel, 11.0, 8
10299 Tripathy, SK; Dasu, J; Murthy, YR; Kapure, G; Pal, AR; Filippov, LO Utilisation perspective on water quenched and air-cooled blast furnace slags(2020)
Scroll