This work is licensed under the Creative Commons Attribution 4.0 International License.
ELSHABOURY, N. - AL-SAKKAF, A. - ABDELKADER, E. M. - ALFALAH, G.: Construction and Demolition Waste Management Research: A Science Mapping Analysis, International Journal of Environmental Research and Public Health, 2022, 19(8), 4469, https:doi.org/10.3390/ijerph19084496.Search in Google Scholar
LOPEZ, D – BONOLI, A. – MARTIN-MORALIS, M. – ZAMORANO, M.: Analysis of the Scientific Evolution of the Circular Economy Applied to Construction and Demolition Waste, Sustainability, 2021, 13(16), 9416; https://doi.org/10.3390/su13169416.Search in Google Scholar
KHAJURIA, A., SHARMA, P.: Use of Plastic Aggregates in Concrete, International J of Innovative Technology and Exploring, 2019, vol . 9, issue 1, pp: 4406-4412, DOI: 10.35940/ijitee.A5088.119119.Search in Google Scholar
ISLAM, S., KHAN, H.: Application of Recycled Plastics Waste as Coarse Aggregate in Concrete, 7th International Conf. on Solid Waste Management in South Asian Countries, 2021, pp: 3-8.Search in Google Scholar
XU, R., HE, T., DA, Y, LIU, Y., LI, J, CHEN, C.: Utilizing Wood Fiber Produced with Wood Waste to Reinforce Autoclaved Aerated Concrete, Construction and Building Materials, 2019, vol. 208, pp-242-249, https://doi.org/10.1016/j.conbuildmat.2019.03.030.Search in Google Scholar
AL-KATIB, A.A.A. - AL-BAHRANI, H.S. - AL-KATIB, H.A.A.: Engineering Assessment of Waste Aggregate Concrete Modified with Non-Slip Sand and Micro Steel Fibers, IOP Conference series: Materials Science and Engineering, 2018, doi: 10.1088/1757-899X/454/1/012026.Open DOISearch in Google Scholar
TALIB, A. G., JABAL, Q., AL-BAGHDADI, W.H.: White Clay Ceramic Tableware Wastes as Coarse Aggregate in Concrete – Some Mechanical Properties and Durability Against Fire and Sulfate Attack, Key Engineering Materials journal, 2021, vol. 893, pp.: 121-129, doi.org/10.4028/www.scientific.net/KEM.895.121.Search in Google Scholar
JABAL, Q., AL-BAGHDADI, W.H., AL-HUSSAINI, O. M.: Mechanical Properties and Durability for Concrete Using Waste Heat Resistance Glass (Pyrex Type) as Coarse Aggregate, 3rd Int. Scientific Conf. of Engineering Science and Advances Technologies, Journal of Physics Conference Series, 2021, vol. 1973, pp.: 1-9, DOI 10.1088/1742-6596/1973/1/012171.Search in Google Scholar
QAIDI, S., NAJM, H., ABED, S., ONURALP, Y., ALDUGHAISHI, H., ALOSTA, M., SABRI, N., ALKHATIB, F., MILAD, A.: Concrete Containing Waste Glass as an Environmentally Friendly Aggregate, Materials Journal, MDPI, 2022, vol. 15, pp.: 1-16, doi.org/10.3390/ma15186222.Search in Google Scholar
KARIM, M.: Applicability of Iron Slag as Coarse Aggregate in Concrete Production, Conference Paper, 2023, pp: 964-971.Search in Google Scholar
SAJJAD, H.: Utilization of Waste Iron Slag as the Fine Aggregate Material in Concrete Block for Low Cost Applications, 3rd International Conference on Structural Engineering Research, Australia, 2022, November, pp:164-170.Search in Google Scholar
EMEGHAI J., ORIE, O.: Mechanical Properties of Concrete with Agriculture Waste as a Partial Substitute for Granite as Coarse Aggregate, Pakistan Journal of Engineering and Technology, 2021, vol.4, no. 2, pp.: 5 – 12, DOI: 10.51846/vol4iss2pp5-12.Search in Google Scholar
AL-FATLAWI, R. A.: Mechanical Properties of Gabbro Aggregate Concrete, International Journal of Civil Engineering and Technology (IJCIET), 2018, vol.9, Issue 10, pp. 176 – 181, http://iaeme.com/Home/issue/IJCIET?Volume=9&Issue=10.Search in Google Scholar
MOHAMMED, T., HASNAT, A., AWAL, M. A., BOSUNIA, S.: Recycling for Brick Aggregate Concrete as Coarse Aggregate, Journal of Materials in Civil Engineering, 2014, vol.27, No.7, DOI: 10.1061/(ASCE)MT.1943-5533.0001043.Search in Google Scholar
SRIVASTAVA, V., GAUTAM, S. P., AGARWAL, V.C., MEHTA, P.K.: Glass Wastes as Coarse Aggregate in Concrete, Journal of Environmental Nanotechnology, 2014, vol.3, no.1, pp. 67 – 71, DOI: 10.13074/jent.2013.12.132059.Search in Google Scholar
NAFISA, T.: Use of waste Glass as Aggregate and Cement Replacement in Concrete, Ph.D. Thesis, West Cook University, Australia, 2020, doi.org/10.25903/nft4%2D8q67.Search in Google Scholar
SHUBHI, D.: Utilization of Iron and Steel Slag in Building Construction, AIP Conference, 2019, pp. 1-7.Search in Google Scholar
DANIYAL, M.D., AHMED, S.: Application of Waste Ceramic Tile Aggregate in Concrete, International Journal of Innovative Research in Science, 2015, vol.4, Issue 12, DOI:10.15680/IJIRSET.2015.0412128.Search in Google Scholar
JAAFAR, A.S, ABBAS, Z.K., ALLAWI, A.A.: Investigating the Ability of Producing Sustainable Blocks Using Recycled Waste, Engineering, Technology & Applied Science Research Journal, 2023, vol.13, Issue 6, pp. 12006 – 12011, doi.org/10.48084/etasr.6357.Search in Google Scholar
UBI, S.E, NKRA, P.O., AGBOR, R.B., EWA, D.E., NUCHAL, M: Efficacy of Basalt and Granite as Coarse Aggregate in Concrete Mixture, Int. Jorrnal of Engineering Technologies and Management Research, 2020, vol.7, issue: 0, p.p.: 1-9, DOI: https://doi.org/10.29121/ijetmr.v7.i9.2020.769.Search in Google Scholar
TRAN, D.V.P, ALLAWI, A, ALBAYATI, A, CAO, T.N, EL-ZOHAIRY, A, NGUYEN Y.T.H.: Recycled Concrete Aggregate for Medium-Quality Structural Concrete, Materials Jor., MDPI, 2021, vol. 14, issue: 16, doi.org/10.3390/ma14164612.Search in Google Scholar
INDIAN STANDARDS 383: Specifications for Coarse and Fine Aggregates from Natural Sources for Concrete, 2002, India.Search in Google Scholar