Roller Compacted Concrete with Oil Shale Ash as a Replacement of Cement: Mechanical and Durability Behavior

被引:0
作者
Ahmed M. Ashteyat
Yousef S. Al Rjoub
Ala’ Taleb Obaidat
Mehmet Kirgiz
Mu’atsem Abdel-Jaber
Amani Smadi
机构
[1] The University of Jordan,Department of Civil Engineering
[2] Jordan University of Science and Technology,Department of Civil Engineering
[3] Philadelphia University,Civil Engineering Department
[4] Istanbul Sabahattin Zaim University,Department of Civil Engineering
[5] University of Jordan on Sabbatical leave at Al-Ahliyya Amman University,undefined
来源
International Journal of Pavement Research and Technology | 2024年 / 17卷
关键词
Oil shale ash; Supplementary cementitious material; Sustainable roller-compacted concrete; Microstructure; Physical properties; Mechanical properties; Durability; Elasticity;
D O I
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中图分类号
学科分类号
摘要
Oil shale is considered an important source of energy production; however, the burning of oil shale produces deposits that are difficult to be disposed of, which results in serious damage to the environment around us. Since Jordan contains abundant amounts of oil shale, the need to find alternative solutions for exploiting this deposit has become essential. This study aims to investigate the possibility of utilizing oil shale ash (OSA) in the cement industry as a partial replacement for cement in the production of roller-compacted concrete (RCC). Cement was replaced by OSA with replacement levels of 0%, 10%, 20%, 30%, and 40%. Standard cylinders, cubes, and prisms were used to examine the physical properties (density and porosity), mechanical properties (compressive strength, splitting tensile strength, flexural strength, and modulus of elasticity) and durability (Ultrasonic Pulse Velocity (UPV), and compressive strength after cycles of freezing–thawing) of RCC mixes. The results indicated that using OSA at different replacement levels has significantly affected the mechanical properties of RCC mixes as they decreased with the increase of OSA content in the mix but at different rates. The reduction in compressive strength, splitting strength, flexural strength, and modulus of elasticity of RCC was 18–42%, 27–37%, 3–61%, and 3–61%, respectively. However, RCC with OSA reached the required compressive stress for roller compacted concrete that could be used for public traffic or dams according to American Concrete Institute (ACI) requirements. The durability behavior was satisfactory in RCC with different OSA replacement levels compared to control RCC. Based on the experimental results, it is possible to use OSA in producing RCC for up to 30% as a main base coarse.
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页码:151 / 168
页数:17
相关论文
共 191 条
  • [11] Haddad RH(2020)Cement-based materials with oil shale fly ash additives IOP Conference Series: Earth and Environmental Science 6 202-50
  • [12] Ashteyat AM(2017)The effect of partial replacement of cement by virgin oil shale powder and/or oil shale ash on properties of cement mortar (comparative study) Journal of Engineering and Applied Science 35 56-190
  • [13] Lababneh ZK(2012)Production of self-compacting concrete using Jordanian oil shale ash Jordan Journal of Civil Engineering 60 638-74
  • [14] Sharo AA(2018)Characterızatıon and utılızatıon of oıl shale ash mıxed wıth granıtıc and marble wastes to produce lıghtweıght brıcks Oil shale 31 394-2650
  • [15] Ashteyat AM(2020)Treated oil shale ashes as a substitute for natural aggregates, sand, and cement in concrete Israel Journal of Chemistry 25 43-271
  • [16] Alawneh AS(2014)Leaching behaviour of Estonian oil shale ash-based construction mortars Oil Shale. 41 183-59
  • [17] Bany Khaled BA(2003)The use of oil shale ash in Portland cement concrete Cement and Concrete Composites 38 67-55
  • [18] Bourdot A(1989)Potential uses of Jordanian spent oil shale ash as a cementive material Magazine of Concrete Research 138 2635-1002
  • [19] Thiéry V(1998)The use of Jordanian oil shale ash as a soil stabilizing agent Soils and Foundations 2440 030013-495
  • [20] Bulteel D(2019)Influence of waste products from electricity and cement industries on the thermal behaviour of Estonian clay from Kunda deposit Journal of Thermal Analysis and Calorimetry 33 260-112