Open Access

Properties of Olive Stones with a View to Their use as Lightweight Aggregate in Construction Mortars


Cite

Alkheder, S. – Obaidat, T. Y. – Taamneh, M. (2016) Effect of olive waste (Husk) on behavior of cement paste: Case Studies in Construction Materials, Vol. 5, pp. 19–25.Search in Google Scholar

Aouba, L. – Bories, C. – Coutand, M. – Perrin, B. – Lemercier, H. (2016) Properties of fired clay bricks with incorporated bio-masses: Cases of Olive Stone Flour and Wheat Straw residues. Construction and Building Materials, Vol. 102, pp. 7–13.Search in Google Scholar

Belkharchouche, D. – Chaker, A. (2016) Effects of moisture on thermal conductivity of the lightened construction material. International Journal of Hydrogen Energy, Vol. 41, pp. 7119-7125Search in Google Scholar

Bourema, M. – Goual, I. – Ferhat, A. (2023) Experimental contribution to study the Physico- mechanical and thermal properties of Lightweight cellular concrete prepared with different types of sand and waste marble powder. Slovak Journal of Civil Engineering, Vol. 31, No.4, pp. 16-25. DOI: 10.2478/sjce-2023-0023.Search in Google Scholar

Cheboub, T. – Senhadji, Y. – Khelafi, H. – Escadeillas, G. (2020) Investigation of the engineering properties of environmentally friendly self-compacting lightweight mortar containing olive kernel shells as aggregate. Journal of Cleaner Production, Vol. 249, art. no. 119406.Search in Google Scholar

EN 197-1 (2011). Cement – Part 1: Composition, specifications and conformity criteria for common cements.Search in Google Scholar

EN 932-1 (2018). Tests for general properties of aggregates – Part 1: Methods for sampling.Search in Google Scholar

EN 932-2 (2022). Tests for general properties of aggregates – Part 2: Methods for reducing laboratory samples.Search in Google Scholar

EN 932-5 (2012). Tests for general properties of aggregates - Part 5: Common equipment and calibration.Search in Google Scholar

EN 933-1 (2012). Tests for geometrical properties of aggregates – Part 1: Determination of particle size distribution – Sieving method.Search in Google Scholar

EN 933-2 (2020). Tests for geometrical properties of aggregates - Part 2: Determination of particle size distribution - Test sieves, nominal size of apertures.Search in Google Scholar

EN 1097-6 (2022). Tests for mechanical and physical properties of aggregates – Part 6: Determination of particle density and water absorption.Search in Google Scholar

EN 1744-1:2010+A1 (2013). Tests for chemical properties of aggregates – Part 1: Chemical analysis.Search in Google Scholar

ISO 3310-1 (2016). Test sieves. Technical requirements and testing Test sieves of metal wire cloth.Search in Google Scholar

ISO 3310-2 (2013). Test sieves. Technical requirements and testing Test sieves of perforated metal plate.Search in Google Scholar

Junaid, M. F. – Rehman, Z. U. – Kuruc, M. – Medved, I. – Bacinskas, D. – Curpek, J. – Cekon, M. – Ijaz, N. – Ansari, W. S. (2022) Lightweight concrete from a perspective of sustainable reuse of waste byproducts. Construction and Building Materials, Vol. 319, art. no. 126061.Search in Google Scholar

Liuzzi, S. – Rubino, CH. – Stefanizzi, P. (2017) Use of clay and olive pruning waste for building materials with high hygrothermal performances. Energy Procedia, Vol. 126, pp. 234–241.Search in Google Scholar

Merino, M. R. –Rodríguez, J. G. – Martínez F. F. – Astorqui, J. S. C. (2017) – Viability of using olive stones as lightweight aggregate in construction mortars. Revista de la Construcción, Vol. 16., pp. 431-438.Search in Google Scholar

MTMAU (Ministerio de Transportes, Movilidad y Agenda Urbana) (2016) Real Decreto 256/2016, de 10 de junio, por el que se aprueba la Instrucción para la recepción de cementos (RC-16). In Spanish.Search in Google Scholar

Priyanka, A. – Jadhav, D. – Kulkarni, K. (2013) Effect of replacement of natural sand by manufactured sand on properties of cement mortar. International Journal Civil and Structural Engineering, Vol. 3, pp. 621–628.Search in Google Scholar

Shafigh, P. – Bin Mahmud, H. – Bin Jumaat, M. Z. – Ahmmad, R. – Bahri, S. (2014) Structural lightweight aggregate concrete using two types of waste from the palm oil industry as aggregate. Journal of Cleaner Production, Vol. 80, pp. 187–196.Search in Google Scholar

eISSN:
1338-3973
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other