Publicado:

2020-12-25

Número:

Vol. 17 Núm. 2 (2020): Revista Tekhnê

Sección:

Artículos

Advantages and disadvantages of the use of self-repairing concrete in Colombia

Ventajas y desventajas del uso del concreto autorreparable en Colombia

Autores/as

  • Paula V. Méndez L. Universidad Distrital Francisco José de Caldas

Palabras clave:

Autorreparación, bacterias, Colombia, concreto, investigación (es).

Palabras clave:

Bacteria, Colombia, concrete, research, self-repair (en).

Resumen (en)

Concrete is one of the most widely used building materials in the world. It is economical, fire-resistant, and malleable, which allows it to adapt to a wide variety of constructions. For this reason, techniques and processes are being sought every day to improve this material so that someday it will not require any type of maintenance and will have a long useful life. Self-repairing concrete or bio-concrete is a material created in the 21st century that can seal the cracks in it, thanks to the fact that it contains certain types of bacteria that allow closing those openings. An investigation is carried out on the impact that the application of self-repairing concrete in Colombia would have in the different fields of construction, using the favorable and unfavorable characteristics that this concrete has, and the results that have been obtained with its use in other countries.

Resumen (es)

El concreto es uno de los materiales de construcción más utilizado alrededor del mundo. Es económico, resistente al fuego y maleable, lo que le permite adaptarse a gran variedad de construcciones. Por ello, día a día se buscan técnicas y procesos que perfeccionen dicho material de manera que algún día no sea necesario realizarle algún tipo de mantenimiento y tenga una vida útil amplia. El concreto autorreparable o bio-concreto es un material creado en el siglo XXI que tiene la capacidad de sellar las gritas que en él hayan, gracias a que contiene cierto tipo de bacterias que permiten cerrar esas aberturas. Se realiza una investigación sobre el impacto que tendría la aplicación del hormigón autorreparable en Colombia en los distintos campos de la construcción, por medio de las características favorables y desfavorables que tiene este concreto, y los resultados que se han obtenido con su uso en otros países.

Referencias

Al-Tabbaa, A., Litina, C., Giannaros, P., Kanellopoulos, A., & Souza, L. (2019). First UK field application and performance of microcapsule-based self-healing concrete. Construction and Building Materials, 208(1), 669–685. https://doi.org/10.1016/j.conbuildmat.2019.02.178

Arq, M. (2020). Bioconcreto, el concreto que se auto-repara. Boletín de Arquitectura. https:/noticias.arq.com.mx/Detalles/20001.html#.YjsqhHXMJ3m

Beglarigale, A., Vahedi, H., Eyice, D., & Yazıcı, H. (2019). Novel test method for assessing bonding capacity of self-healing products in cementitious composites. Journal of Materials in Civil Engineering, 31(4), 04019028. https://doi.org/10.1061/(ASCE)MT.1943-5533.0002632

Beltrán, A., García, E., & Pastrán, C. (2013). Evaluación del comportamiento mecánico de un concreto reforzado con fibras textiles de vidrio sometido a cargas de flexión para su uso en la elaboración de elementos urbanísticos prefabricados. Tekhnê, 10(1), 5–18.

Caicedo, E., Bautista, C., & Grisales, A. (2019). Nanotechnology in the construction industry. Tekhnê, 16(2), 13–20.

Editores, L. (2020). Profesor holandés crea concreto que se repara por sí solo. Construcción y Tecnología en Concreto. http://www.imcyc.com/revistacyt/index.php/noticias/465-profesor-holandes-%20crea-concreto-que-se-repara-por-si-solo

El-Anwar, E. A. A. (2018). Some carbonate rocks utilized as a building material rocks, egypt. Carbonates and Evaporites, 34(4), 1333–1341. https://doi.org/10.1007/s13146-018-0423-4

Eryshev, V. A. (2019). Methodology of studying mechanical properties of reinforced concrete. Inorganic Materials, 55(15), 1533–1538. https://doi.org/10.1134/S0020168519150044

Gonzalez, A., Parraguez, A., Corvalan, A., Correa, N., Schliebs, E., & Stukrath, C. Hormigón autorreparable con bacterias para la infraestructura vial. In: 13 congreso internacional provial. 2018, 1–8.

Guzmán, J., & Ramírez, J. (2017). How can concrete be improved through processes that are bio-friendlyto the environment and that enhance its construction qualities? Tekhnê, 14(2), 49–58.

Hong, M., Kim, W., & Park, W. (2019). Low-cost cultivation and sporulation of alkaliphilic bacillus sp. strain AK13 for self-healing concrete. Journal of Microbiology and Biotechnology, 29(12), 1982–1992. https://doi.org/10.4014/jmb.1908.08034

Kianimehr, M., Shourijeh, P. T., Binesh, S. M., Mohammadinia, A., & Arulrajah, A. (2019). Utilization of recycled concrete aggregates for light-stabilization of clay soils. Construction and Building Materials, 227, 116792. https://doi.org/10.1016/j.conbuildmat.2019.116792

Kua, H. W., Gupta, S., Aday, A. N., & Srubar, W. V. (2019). Biochar-immobilized bacteria and superabsorbent polymers enable self-healing of fiber-reinforced concrete after multiple damage cycles. Cement and Concrete Composites, 100, 35–52. https://doi.org/10.1016/j.cemconcomp.2019.03.017

Li, B., Ling, T.-C., Yu, J.-G., Wu, J., & Chen, W. (2019). Cement pastes modified with recycled glass and supplementary cementitious materials: Properties at the ambient and high temperatures. Journal of Cleaner Production, 241, 118155. https://doi.org/10.1016/j.jclepro.2019.118155

Menon, R. R., Luo, J., Chen, X., Zhou, H., Liu, Z., Zhou, G., Zhang, N., & Jin, C. (2019). Screening of fungi for potential application of self-healing concrete. Scientific Reports, 9(1), 2075. https://doi.org/ 10.1038/s41598-019-39156-8

Mors, R., & Jonkers, H. M. (2020). Bacteria-based self-healing concrete: Evaluation of full scale demonstrator projects. RILEM Technical Letters, 4(1), 138–144. https://doi.org/10.21809/rilemtechlett.2019.93

Morsali, S., Isildar, G. Y., gari, Z. H. Z., & Tahni, A. (2019). The application of bacteria as a main factor in self-healing concrete technology. Journal of Building Pathology and Rehabilitation, 4(1), 7. https://doi.org/10.1007/s41024-019-0045-9

Müller, W. E., Tolba, E., Wang, S., Li, Q., Neufurth, M., Ackermann, M., Muñoz-Espı, R., Schröder, H. C., & Wang, X. (2019). Transformation of construction cement to a self-healing hybrid binder. International Journal of Molecular Sciences, 20(12), 2948. https://doi.org/10.3390/ijms20122948

Ponce, C., Huamani, S., & Sánchez, E. (2015). Los beneficios del uso de bacterias en el concreto autorregenerante. Civilizate, 7(1), 36–38.

Vijay, K., & Murmu, M. (2019). Self-repairing of concrete Sciences, 1(11), 1344. https://doi.org/10.1007/s42452-019-1404-5

Xu, H., Lian, J., Gao, M., Fu, D., & Yan, Y. (2019). Self-healing concrete using rubber particles to immobilize bacterial spores. Materials, 12(14), 2313. https://doi.org/10.3390/ma12142313

Cómo citar

APA

Méndez L., P. V. (2020). Advantages and disadvantages of the use of self-repairing concrete in Colombia. Tekhnê, 17(2), 27–34. https://revistas.udistrital.edu.co/index.php/tekhne/article/view/19243

ACM

[1]
Méndez L., P.V. 2020. Advantages and disadvantages of the use of self-repairing concrete in Colombia. Tekhnê. 17, 2 (dic. 2020), 27–34.

ACS

(1)
Méndez L., P. V. Advantages and disadvantages of the use of self-repairing concrete in Colombia. Tekhnê 2020, 17, 27-34.

ABNT

MÉNDEZ L., Paula V. Advantages and disadvantages of the use of self-repairing concrete in Colombia. Tekhnê, [S. l.], v. 17, n. 2, p. 27–34, 2020. Disponível em: https://revistas.udistrital.edu.co/index.php/tekhne/article/view/19243. Acesso em: 18 abr. 2024.

Chicago

Méndez L., Paula V. 2020. «Advantages and disadvantages of the use of self-repairing concrete in Colombia». Tekhnê 17 (2):27-34. https://revistas.udistrital.edu.co/index.php/tekhne/article/view/19243.

Harvard

Méndez L., P. V. (2020) «Advantages and disadvantages of the use of self-repairing concrete in Colombia», Tekhnê, 17(2), pp. 27–34. Disponible en: https://revistas.udistrital.edu.co/index.php/tekhne/article/view/19243 (Accedido: 18 abril 2024).

IEEE

[1]
P. V. Méndez L., «Advantages and disadvantages of the use of self-repairing concrete in Colombia», Tekhnê, vol. 17, n.º 2, pp. 27–34, dic. 2020.

MLA

Méndez L., Paula V. «Advantages and disadvantages of the use of self-repairing concrete in Colombia». Tekhnê, vol. 17, n.º 2, diciembre de 2020, pp. 27-34, https://revistas.udistrital.edu.co/index.php/tekhne/article/view/19243.

Turabian

Méndez L., Paula V. «Advantages and disadvantages of the use of self-repairing concrete in Colombia». Tekhnê 17, no. 2 (diciembre 25, 2020): 27–34. Accedido abril 18, 2024. https://revistas.udistrital.edu.co/index.php/tekhne/article/view/19243.

Vancouver

1.
Méndez L. PV. Advantages and disadvantages of the use of self-repairing concrete in Colombia. Tekhnê [Internet]. 25 de diciembre de 2020 [citado 18 de abril de 2024];17(2):27-34. Disponible en: https://revistas.udistrital.edu.co/index.php/tekhne/article/view/19243

Descargar cita

Visitas

258

Descargas

Los datos de descargas todavía no están disponibles.
Loading...