Literature overview
| ID | Reference | Year | Title | Citations |
|---|---|---|---|---|
| 1 | Belarouf, S., Moufakkir, A., Samaouali, A., Rahier, H., and Gueraoui, K. | 2021 | Chemical-mineralogical characterization of concrete with recycled concrete aggregates | 0 |
| 2 | Drif, B., Taha, Y., Hakkou, R., and Benzaazoua, M. | 2021 | Integrated valorization of silver mine tailings through silver recovery and ceramic materials production | 0 |
| 3 | El Machi, A., Mabroum, S., Taha, Y., Tagnit-Hamou, A., Benzaazoua, M., and Hakkou, R. | 2021 | Use of flint from phosphate mine waste rocks as an alternative aggregates for concrete | 2 |
| 4 | Ibn-Mohammed, T., Mustapha, K. B., Godsell, J., Adamu, Z., Babatunde, K. A., Akintade, D. D., Acquaye, A., Fujii, H., Ndiaye, M. M., Yamoah, F. A., and Koh, S. C. L. | 2021 | A critical review of the impacts of COVID-19 on the global economy and ecosystems and opportunities for circular economy strategies | 72 |
| 5 | Lekan, A., Clinton, A., and James, O. | 2021 | The disruptive adaptations of construction 4.0 and industry 4.0 as a pathway to a sustainable innovation and inclusive industrial technological development | 2 |
| 6 | Mahdjoub, N., Kalina, M., Augustine, A., and Tilley, E. | 2021 | Innovating traditional building materials in Chembe, Malawi: assessing post-consumer waste glass and burnt clay bricks for performance and circularity | 0 |
| 7 | Mukherjee, A. A., Singh, R. K., Mishra, R., and Bag, S. | 2021 | Application of blockchain technology for sustainability development in agricultural supply chain: justification framework | 2 |
| 8 | Edike, U. E., Aina, O., and Adeoye, A. B. | 2021 | Adoption of eco-bricks for housing: the case of Yelwa, Nigeria | 0 |
| 9 | Ogunbode, B. E., Nyakuma, B. B., Lawal, T. A., Yatim, J. M., Abdul, A., and Ayoosu, M. I. | 2021 | Morphological, microstructure, tensile and water-sorption characteristics of surface modified Kenaf fibre for sustainable biocomposite reinforcement | 0 |
| 10 | Windapo, A. O., and Moghayedi, A. | 2020 | Adoption of smart technologies and circular economy performance of buildings | 11 |
| 11 | Edike, U. E., Ameh, O. J., and Dada, M. O. | 2020 | Production and optimization of eco-bricks | 4 |
| 12 | Agyapong, D. | 2020 | Transition to circular economy: a strategic support for small and medium enterprises in the waste of electronic and electronic equipment sector | 0 |
| 13 | Akanbi, Lukman A, Oyedele, A. O., Oyedele, L. O., and Salami, R. O. | 2020 | Deep learning model for Demolition Waste Prediction in a circular economy | 0 |
| 14 | Belarouf, S., Samaouali, A., Gueraoui, K., and Rahier, H. | 2020 | Mechanical properties of concrete with recycled concrete aggregates | 0 |
| 15 | Belarouf, S., Samaouali, A., Moufakkir, A., Gueraoui, K., and Rahier, H. | 2020 | Thermal behavior of concrete with recycled concrete aggregates on the effect of temperature and composition | 0 |
| 16 | Caschera, D., Toro, R. G., Federici, F., Montanari, R., de Caro, T., Al-Shemy, M. T., and Adel, A. M. | 2020 | Green approach for the fabrication of silver-oxidized cellulose nanocomposite with antibacterial properties | 8 |
| 17 | Chrispim, M. C., Scholz, M., and Nolasco, M. A. | 2020 | A framework for resource recovery from wastewater treatment plants in megacities of developing countries | 9 |
| 18 | El Machi, A., Mabroum, S., Taha, Y., Tagnit-Hamou, A., Benzaazoua, M., and Hakkou, R. | 2020 | Valorization of phosphate mine waste rocks as aggregates for concrete | 2 |
| 19 | Hoosain, M. S., Paul, B. S., and Ramakrishna, S. | 2020 | The impact of 4ir digital technologies and circular thinking on the united nations sustainable development goals | 4 |
| 20 | Lamptey, T., Owusu-Manu, D.-G., Acheampong, A., Adesi, M., and Ghansah, F. A. | 2020 | A framework for the adoption of green business models in the Ghanaian construction industry | 2 |
| 21 | Landrigan, P. J., Stegeman, J. J., Fleming, L. E., Allemand, D., Anderson, D. M., Backer, L. C., Brucker-Davis, F., Chevalier, N., Corra, L., Czerucka, D., Bottein, M.-Y. D., Demeneix, B., Depledge, M., Deheyn, D. D., Dorman, C. J., Fenichel, P., Fisher, S., Gaill, F., Galgani, F., … Rampal, P. | 2020 | Human Health and Ocean Pollution | 18 |
| 22 | Limami, H., Manssouri, I., Cherkaoui, K., and Khaldoun, A. | 2020 | Study of the suitability of unfired clay bricks with polymeric HDPE \& PET wastes additives as a construction material | 12 |
| 23 | Mabroum, S., Aboulayt, A., Taha, Y., Benzaazoua, M., Semlal, N., and Hakkou, R. | 2020 | Elaboration of geopolymers based on clays by-products from phosphate mines for construction applications | 18 |
| 24 | Sebbar, N., Lahmili, A., Bahi, L., and Ouadif, L. | 2020 | Treatment of clay soils with steel slag, in road engineering | 0 |
| 25 | Oumnih, S., Bekkouch, N., Gharibi, E. K., Fagel, N., Elhamouti, K., and El Ouahabi, M. | 2019 | Phosphogypsum waste as additives to lime stabilization of bentonite | 6 |
| 26 | Marzouk, M., Elmaraghy, A., and Voordijk, H. | 2019 | Lean deconstruction approach for buildings demolition processes using BIM | 6 |
| 27 | Akanbi, Lukman A, Oyedele, L. O., Omoteso, K., Bilal, M., Akinade, O. O., Ajayi, A. O., Delgado, J. M. D., and Owolabi, H. A. | 2019 | Disassembly and deconstruction analytics system (D-DAS) for construction in a circular economy | 14 |
| 28 | Akanbi, L A, Oyedele, L. O., Akinade, O. O., Ajayi, A. O., Davila Delgado, M., Bilal, M., and Bello, S. A. | 2018 | Salvaging building materials in a circular economy: a BIM-based whole-life performance estimator | 78 |
| 29 | Elmaraghy, A., Voordijk, H., and Marzouk, M. | 2018 | An exploration of BIM and lean interaction in optimizing demolition projects | 8 |
| 30 | Oyinlola, M., Whitehead, T., Abuzeinab, A., Adefila, A., Akinola, Y., Anafi, F., Farukh, F., Jegede, O., Kandan, K., Kim, B., and Mosugu, E. | 2018 | Bottle house: a case study of transdisciplinary research for tackling global challenges | 13 |
| 31 | Missaoui, A., Said, I., Lafhaj, Z., Daoued, S., and Ali, I. B. H. | 2016 | Laboratory study on recycling of sediments in paving blocks | 4 |
| ID | Reference | Year | Title | Citations |
|---|---|---|---|---|
| 1 | Belarouf, S., Moufakkir, A., Samaouali, A., Rahier, H., and Gueraoui, K. | 2021 | Chemical-mineralogical characterization of concrete with recycled concrete aggregates | 0 |
| 2 | Drif, B., Taha, Y., Hakkou, R., and Benzaazoua, M. | 2021 | Integrated valorization of silver mine tailings through silver recovery and ceramic materials production | 0 |
| 3 | El Machi, A., Mabroum, S., Taha, Y., Tagnit-Hamou, A., Benzaazoua, M., and Hakkou, R. | 2021 | Use of flint from phosphate mine waste rocks as an alternative aggregates for concrete | 2 |
| 4 | Ibn-Mohammed, T., Mustapha, K. B., Godsell, J., Adamu, Z., Babatunde, K. A., Akintade, D. D., Acquaye, A., Fujii, H., Ndiaye, M. M., Yamoah, F. A., and Koh, S. C. L. | 2021 | A critical review of the impacts of COVID-19 on the global economy and ecosystems and opportunities for circular economy strategies | 72 |
| 5 | Lekan, A., Clinton, A., and James, O. | 2021 | The disruptive adaptations of construction 4.0 and industry 4.0 as a pathway to a sustainable innovation and inclusive industrial technological development | 2 |
| 6 | Mahdjoub, N., Kalina, M., Augustine, A., and Tilley, E. | 2021 | Innovating traditional building materials in Chembe, Malawi: assessing post-consumer waste glass and burnt clay bricks for performance and circularity | 0 |
| 7 | Mukherjee, A. A., Singh, R. K., Mishra, R., and Bag, S. | 2021 | Application of blockchain technology for sustainability development in agricultural supply chain: justification framework | 2 |
| 8 | Edike, U. E., Aina, O., and Adeoye, A. B. | 2021 | Adoption of eco-bricks for housing: the case of Yelwa, Nigeria | 0 |
| 9 | Ogunbode, B. E., Nyakuma, B. B., Lawal, T. A., Yatim, J. M., Abdul, A., and Ayoosu, M. I. | 2021 | Morphological, microstructure, tensile and water-sorption characteristics of surface modified Kenaf fibre for sustainable biocomposite reinforcement | 0 |
| 10 | Windapo, A. O., and Moghayedi, A. | 2020 | Adoption of smart technologies and circular economy performance of buildings | 11 |
| 11 | Edike, U. E., Ameh, O. J., and Dada, M. O. | 2020 | Production and optimization of eco-bricks | 4 |
| 12 | Agyapong, D. | 2020 | Transition to circular economy: a strategic support for small and medium enterprises in the waste of electronic and electronic equipment sector | 0 |
| 13 | Akanbi, Lukman A, Oyedele, A. O., Oyedele, L. O., and Salami, R. O. | 2020 | Deep learning model for Demolition Waste Prediction in a circular economy | 0 |
| 14 | Belarouf, S., Samaouali, A., Gueraoui, K., and Rahier, H. | 2020 | Mechanical properties of concrete with recycled concrete aggregates | 0 |
| 15 | Belarouf, S., Samaouali, A., Moufakkir, A., Gueraoui, K., and Rahier, H. | 2020 | Thermal behavior of concrete with recycled concrete aggregates on the effect of temperature and composition | 0 |
| 16 | Caschera, D., Toro, R. G., Federici, F., Montanari, R., de Caro, T., Al-Shemy, M. T., and Adel, A. M. | 2020 | Green approach for the fabrication of silver-oxidized cellulose nanocomposite with antibacterial properties | 8 |
| 17 | Chrispim, M. C., Scholz, M., and Nolasco, M. A. | 2020 | A framework for resource recovery from wastewater treatment plants in megacities of developing countries | 9 |
| 18 | El Machi, A., Mabroum, S., Taha, Y., Tagnit-Hamou, A., Benzaazoua, M., and Hakkou, R. | 2020 | Valorization of phosphate mine waste rocks as aggregates for concrete | 2 |
| 19 | Hoosain, M. S., Paul, B. S., and Ramakrishna, S. | 2020 | The impact of 4ir digital technologies and circular thinking on the united nations sustainable development goals | 4 |
| 20 | Lamptey, T., Owusu-Manu, D.-G., Acheampong, A., Adesi, M., and Ghansah, F. A. | 2020 | A framework for the adoption of green business models in the Ghanaian construction industry | 2 |
| 21 | Landrigan, P. J., Stegeman, J. J., Fleming, L. E., Allemand, D., Anderson, D. M., Backer, L. C., Brucker-Davis, F., Chevalier, N., Corra, L., Czerucka, D., Bottein, M.-Y. D., Demeneix, B., Depledge, M., Deheyn, D. D., Dorman, C. J., Fenichel, P., Fisher, S., Gaill, F., Galgani, F., … Rampal, P. | 2020 | Human Health and Ocean Pollution | 18 |
| 22 | Limami, H., Manssouri, I., Cherkaoui, K., and Khaldoun, A. | 2020 | Study of the suitability of unfired clay bricks with polymeric HDPE \& PET wastes additives as a construction material | 12 |
| 23 | Mabroum, S., Aboulayt, A., Taha, Y., Benzaazoua, M., Semlal, N., and Hakkou, R. | 2020 | Elaboration of geopolymers based on clays by-products from phosphate mines for construction applications | 18 |
| 24 | Sebbar, N., Lahmili, A., Bahi, L., and Ouadif, L. | 2020 | Treatment of clay soils with steel slag, in road engineering | 0 |
| 25 | Oumnih, S., Bekkouch, N., Gharibi, E. K., Fagel, N., Elhamouti, K., and El Ouahabi, M. | 2019 | Phosphogypsum waste as additives to lime stabilization of bentonite | 6 |
| 26 | Marzouk, M., Elmaraghy, A., and Voordijk, H. | 2019 | Lean deconstruction approach for buildings demolition processes using BIM | 6 |
| 27 | Akanbi, Lukman A, Oyedele, L. O., Omoteso, K., Bilal, M., Akinade, O. O., Ajayi, A. O., Delgado, J. M. D., and Owolabi, H. A. | 2019 | Disassembly and deconstruction analytics system (D-DAS) for construction in a circular economy | 14 |
| 28 | Akanbi, L A, Oyedele, L. O., Akinade, O. O., Ajayi, A. O., Davila Delgado, M., Bilal, M., and Bello, S. A. | 2018 | Salvaging building materials in a circular economy: a BIM-based whole-life performance estimator | 78 |
| 29 | Elmaraghy, A., Voordijk, H., and Marzouk, M. | 2018 | An exploration of BIM and lean interaction in optimizing demolition projects | 8 |
| 30 | Oyinlola, M., Whitehead, T., Abuzeinab, A., Adefila, A., Akinola, Y., Anafi, F., Farukh, F., Jegede, O., Kandan, K., Kim, B., and Mosugu, E. | 2018 | Bottle house: a case study of transdisciplinary research for tackling global challenges | 13 |
| 31 | Missaoui, A., Said, I., Lafhaj, Z., Daoued, S., and Ali, I. B. H. | 2016 | Laboratory study on recycling of sediments in paving blocks | 4 |
Note:
Search string: TITLE-ABS-KEY (“circular economy” AND (“construction industry” OR “construction*” OR “building*” OR “built environment”))
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