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Investigation of the Flexural Behavior of Bacterial Concrete Beams Cover

Investigation of the Flexural Behavior of Bacterial Concrete Beams

Open Access
|Dec 2023

References

  1. ALHAMMADI, S. A.: Influencing Factors of cost control and environmental sustainability in Saudi Arabia for low-rise building construction. Civil and Environmental Engineering, Vol.18, Iss. 2, 2022, pp. 408-423, doi: https://doi.org/10.2478/cee-2022-0038.
  2. ALZARD, M. H.: A bibliometric analysis of the studies on self-healing concrete published between 1974 and 2021. Sustainability, 14, 18, 2022, 11646.
  3. SANGADJI, S.: Can self-healing mechanism helps concrete structures sustainable? Procedia engineering, 171, 2017, 238-249.
  4. SIDDIQUE, R. - NAVNEET, K. C.: Effect of ureolytic bacteria on concrete properties. Construction and building materials, 25.10, 2011, 3791-3801.
  5. PRAYUDA, H.: Repairing of Flexural Cracks on Reinforced Self-Healing Concrete Beam using Bacillus Subtillis Bacteria. International Journal of Integrated Engineering, 12(4), 2020, 300-309.
  6. NIMAFAR, M. - HOSSEINI, S. J. - AKHLAGHI, A. - SAMALI, B. - SOLTANINIA, S.: Effect of Bacterial Carbonate Precipitation on the Durability of Concrete Specimens Exposed to High Temperatures. Journal of Materials in Civil Engineering, 35(1), 2023, 04022394.
  7. CHEN, H. J.: Application of biomineralization technology to self-healing of fiber-reinforced lightweight concrete after exposure to high temperatures. Materials, 15.21, 2022, 7796.
  8. ULRICH, N.: Experimental studies addressing the longevity of Bacillus subtilis spores–The first data from a 500-year experiment. PloS one, 13.12, 2018, e0208425.
  9. MEERA, C. M. - SUBHA, V.: Strength and durability assessment of bacteria based self-healing concrete. IOSR Journal of Mechanical and Civil Engineering, IOSR-JMCE, 2016, 1-7.
  10. SHAFIEI-POURKAMALI, M. - MOHAMMADYAN-YASOUJ, S. E.: Concomitant Participation of Bacteria, Metakaolin, and Calcium Lactate to Improve Concrete Durability and Surface Crack Healing. Journal of Materials in Civil Engineering, 34(11), 2022, 04022292.
  11. APPLIED TECHNOLOGY COUNCIL, Mid-America Earthquake Center, Multidisciplinary Center for Earthquake Engineering Research US, Pacific Earthquake Engineering Research Center, & National Earthquake Hazards Reduction Program US, 2007. Interim testing protocols for determining the seismic performance characteristics of structural and non-structural components. Federal Emergency Management Agency.
  12. STANDARD SPECIFICATION NO. 5: 2019: Portland cement. Central Organization for Standardization and Control Quality.
  13. ASTM C1240-20:2020: Standard specification for silica fume used in cementitious mixtures. Annual book of ASTM standards, American society for testing and materials international.
  14. BS EN 934 – 2:2001: British standard institution (BSI). Admixtures for concrete, mortar and grout part 2, concrete admixtures- definitions, requirements, conformity, marking and labelling, London.
  15. ASTM C494/494M-19:2019: Standard specification for chemical admixtures for concrete. American society for testing and materials.
  16. Iraqi Specification No. 45: 1984: Aggregate from natural source for concrete. Central agency for standardization and quality control. Planning council. Baghdad, IRAQ.
  17. ACI COMMITTEE 2019: Building code requirements for structural concrete ACI 318-19 and commentary. American concrete institute.
  18. BRITISH STANDARD, B. S. 121: 1983, Testing concrete: method of determination of static modulus of elasticity in compression.
  19. JOSHI, K. A. - MADHAV, B. KUMTHEKAR - VISHAL, P. GHODAKE: Bacillus subtilis bacteria impregnation in concrete for enhancement in compressive strength. International research journal of engineering and technology, IRJET, 3.5, 2016, 1229-1234.
  20. ASTM INTERNATIONAL 2017: ASTM C496/C496M-17, Standard Test Method for Splitting Tensile Strength of Cylindrical Concrete Specimens.
  21. ASTM C78/C78M-22:2022: Standard test method for flexural strength of concrete (Using Simple Beam with Third-Point Loading), ASTM Int. West Conshohocken PA. 1–4.
  22. RAMACHANDRAN, S. K. - RAMAKRISHNAN, SOOKIE, S. - BANG: Remediation of concrete using micro-organisms. ACI materials journal, American concrete institute, 98.1, 2001, 3-9.
  23. JONKERS, H. M.: Application of bacteria as self-healing agent for the development of sustainable concrete. Ecological engineering, 36.2, 2010, 230-235.
  24. CHANDRAMOULI, P.: Flexural behaviour of lightweight reinforced concrete beams internally reinforced with welded wire mesh. Buildings, 12.9, 2022, 1374.
  25. YANG, LIU H. - SHENG, G. - WANG, H.: Experimental study of dynamic mechanical properties of reactive powder concrete under high-strain-rate impacts. Science China technological sciences, Vol. 53, No. 9, 2010, pp. 2435–2449.
DOI: https://doi.org/10.2478/cee-2023-0043 | Journal eISSN: 2199-6512 | Journal ISSN: 1336-5835
Language: English
Page range: 474 - 492
Published on: Dec 19, 2023
Published by: University of Žilina
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2023 Mohammed T. Hind, Ahmed S. Ali, published by University of Žilina
This work is licensed under the Creative Commons Attribution 4.0 License.