CIRCULAR ECONOMY STRATEGIES FOR CONSTRUCTION AND DEMOLITION WASTE MANAGEMENT AT THE DESIGN AND PLANNING STAGES OF THE PROJECT LIFE CYCLE
DOI:
https://doi.org/10.33736/jcest.8888.2026Keywords:
circular economy, construction and demolition, waste management, design and planning stage, systematic reviewAbstract
Most Construction and Demolition (C&D) waste management strategies, both locally and globally, still emphasise end-of-life treatment, leaving limited attention to waste prevention during the early stages of the construction project life cycle. This paper investigates circular economy (CE) strategies for C&D waste management during the design and planning stages, with particular attention to waste minimisation in Malaysia. A systematic literature review (SLR) was conducted through database searching, screening, eligibility checking, and quality filtering using Web of Science, Scopus, Connected Papers, Scite and Google Scholar. This process retained 130 relevant papers for detailed analysis. The review shows that the literature remains dominated by downstream waste treatment, while early-stage intervention is comparatively underdeveloped. It also shows that effective CE implementation depends on coordinated actions across micro, meso and macro levels involving design decisions, stakeholder collaboration, technology adoption, economic support, and regulatory direction. Based on these findings, the study develops the D.E.M.S.T.E.R.P. framework, comprising Design (Early), Education, Material, Stakeholder, Technology, Economic, Regulatory and Policy, as a structured early-stage approach for reducing C&D waste. The framework provides a theoretical basis for more proactive and integrated waste minimisation in the Malaysian construction industry.
References
Esa, M. (2018, March 2). Moving towards sustainable construction in Malaysia: a holistic model for construction and demolition (C&D) waste management. The University of Queensland, School of Earth and Environmental Sciences. Retrieved from http://espace.library.uq.edu.au/view/UQ:721874
Department of Statistics Malaysia. (2019). Current population estimates. Malaysia, 2018–2019.
Nagapan, S., Rahman, I. A., & Asmi, A. (2012). Construction waste management: Malaysian perspective. In Paper presented at the International Conference on Civil and Environmental Engineering Sustainability (IConCEES), Malaysia.
Wahi, N., Joseph, C., Tawie, R., & Ikau, R. (2016). Critical review on construction waste control practices: Legislative and waste management perspective. Procedia - Social and Behavioral Sciences, 224, 276–283. https://doi.org/10.1016/j.sbspro.2016.05.460
Calvo-Porral, C., & Lévy-Mangin, J.-P. (2020). The circular economy business model: Examining consumers’ acceptance of recycled goods. Administrative Sciences, 10(2), 28. https://doi.org/10.3390/admsci10020028
Özçatalbaş, O. (2023). An evaluation of the transition from linear economy to circular economy. In O. Özçatalbaş (Ed.), Sustainable Rural Development Perspective and Global Challenges. IntechOpen. https://doi.org/10.5772/intechopen.107980
Chong, J. H., Liu, M. S., Hernandes, E., & Albescu, M. (2023). Implementation of green materials in construction management system in Malaysia. Civil and Sustainable Urban Engineering, 3(1), 51–69. https://doi.org/10.53623/csue.v3i1.212
Hasmori, M. F., Zin, A. F. M., Nagapan, S., Deraman, R., Abas, N., Yunus, R., & Klufallah, M. (2020). The on-site waste minimization practices for construction waste. In Paper presented at the IOP conference series.
Zainon, N., Myeda, N. E., Bakar, A. A., Chuing, L. S., Rahim, F. A. M., & Zyed, Z. A. S. (2022). The assessment of waste segregation exercise among Malaysian contractors: A descriptive analysis. Journal of Design Built Environment Project, 22(1), 72–87.
Chen, H. L., Nath, T. K., Chong, S., Foo, V., Gibbins, C., & Lechner, A. M. (2021). The plastic waste problem in Malaysia: management, recycling and disposal of local and global plastic waste. SN Applied Sciences, 3(4), 437. https://doi.org/10.1007/s42452-021-04234-y
Voukkali, I., Papamichael, I., Loizia, P., Lekkas, D. F., Rodríguez-Espinosa, T., Navarro-Pedreño, J., & Zorpas, A. A. (2023). Waste metrics in the framework of circular economy. Waste Management & Research: The Journal for a Sustainable Circular Economy, 41(12), 1741–1753. https://doi.org/10.1177/0734242X231190794
Lu, W., Long, W., & Yuan, L. (2023). A machine learning regression approach for pre-renovation construction waste auditing. Journal of Cleaner Production, 397, 136596. https://doi.org/10.1016/j.jclepro.2023.136596
Soto-Paz, J., Arroyo, O., Torres-Guevara, L. E., Parra-Orobio, B. A., & Casallas-Ojeda, M. (2023). The circular economy in the construction and demolition waste management: A comparative analysis in emerging and developed countries. Journal of Building Engineering, 78, 107724. https://doi.org/10.1016/j.jobe.2023.107724
Yu, Y., Yazan, D. M., van den Berg, M., Firdausy, D. R., Junjan, V., & Iacob, M.-E. (2023). Circularity information platform for the built environment. Automation in Construction, 152, 104933. https://doi.org/10.1016/j.autcon.2023.104933
Esguícero, F. J., Deus, R. M., Battistelle, R., Martins, B. L., & Bezerra, B. S. (2021). Construction and demolition waste management process modeling: a framework for the Brazilian context. Journal of Material Cycles and Waste Management, 23(5), 2037–2050. https://doi.org/10.1007/s10163-021-01247-y
Gangolells, M., Casals, M., Forcada, N., & Macarulla, M. (2014). Analysis of the implementation of effective waste management practices in construction projects and sites. Resources, Conservation and Recycling, 93, 99–111. https://doi.org/10.1016/j.resconrec.2014.10.006
Huang, L., Cai, T., Zhu, Y., Zhu, Y., Wang, W., & Sun, K. (2020). LSTM-Based forecasting for urban construction waste generation. Sustainability, 12(20), 8555. https://doi.org/10.3390/su12208555
Fairs, M. (2019). Architects and designers “absolutely vital" in shift to circular economy says Ellen MacArthur.” Retrieved from https://www.dezeen.com/2019/06/11/ellen-macarthur-circular-economy-designers/
Yang, Q. (2021). Understanding of an ‘Enlightened planning’ approach in project risk management. Journal of Management Science & Engineering Research, 4(1), 25–29. https://doi.org/10.30564/jmser.v4i1.2854
Stoiljković, B., Petković, N., Krstić, H., & Petrović, V. (2023). Application of circular economy principles to architectural design: A case study of Serbia. Buildings, 13(8), 1990. https://doi.org/10.3390/buildings13081990
Wijewansha, A. S., Tennakoon, G. A., Waidyasekara, K. G. A. S., & Ekanayake, B. J. (2021). Implementation of circular economy principles during pre-construction stage: the case of Sri Lanka. Built Environment Project and Asset Management, 11(4), 750–766. https://doi.org/10.1108/BEPAM-04-2020-0072
Construction Industry Development Board (CIDB). (2020). Construction 4.0 strategic plan (2021-2025) - Next revolution of the Malaysian construction industry. Retrieved from https://www.cidb.gov.my/wp-content/uploads/2022/12/CR4_web_compressed.pdf
Eberhardt, L. C. M., Birgisdóttir, H., & Birkved, M. (2019). Life cycle assessment of a Danish office building designed for disassembly. Building Research & Information, 47(6), 666–680. https://doi.org/10.1080/09613218.2018.1517458
Van Cauteren, D., Ramon, D., Stroeckx, J., Allacker, K., & Schevenels, M. (2022). Design optimization of hybrid steel/timber structures for minimal environmental impact and financial cost: A case study. Energy and Buildings, 254, 111600. https://doi.org/10.1016/j.enbuild.2021.111600
Apet, R. A. A., Jamal, M. N., Hanapi, N. L., & Samsuddin, M. T. A. (2023). Design for disassembly as an alternative approach towards minimization of construction & demolition waste in Malaysia. In Paper presented at the AIP Conference Proceedings.
Kang, K., Besklubova, S., Dai, Y., & Zhong, R. Y. (2022). Building demolition waste management through smart BIM: A case study in Hong Kong. Waste Management, 143, 69–83. https://doi.org/10.1016/j.wasman.2022.02.027
Na, S., Heo, S., Han, S., Shin, Y., & Lee, M. (2022). Development of an artificial intelligence model to recognise construction waste by applying image data augmentation and transfer learning. Buildings, 12(2), 175. https://doi.org/10.3390/buildings12020175
Honic, M., Kovacic, I., Aschenbrenner, P., & Ragossnig, A. (2021). Material Passports for the end-of-life stage of buildings: Challenges and potentials. Journal of Cleaner Production, 319, 128702.
Luciano, A., Cutaia, L., Altamura, P., & Penalvo, E. (2022). Critical issues hindering a widespread construction and demolition waste (CDW) recycling practice in EU countries and actions to undertake: The stakeholder’s perspective. Sustainable Chemistry and Pharmacy, 29, 100745. https://doi.org/10.1016/j.scp.2022.100745
Shin, B., Wi, S., & Kim, S. (2023). Assessing the environmental impact of using CLT-hybrid walls as a sustainable alternative in high-rise residential buildings. Energy and Buildings, 294, 113228. https://doi.org/10.1016/j.enbuild.2023.113228
Hossain, M. U., Xuan, D., Ng, S. T., & Amor, B. (2021). Designing sustainable partition wall blocks using secondary materials: A life cycle assessment approach. Journal of Building Engineering, 43, 103035. https://doi.org/10.1016/j.jobe.2021.103035
Brütting, J., Vandervaeren, C., Senatore, G., De Temmerman, N., & Fivet, C. (2020). Environmental impact minimization of reticular structures made of reused and new elements through life cycle assessment and mixed-integer linear programming. Energy and Buildings, 215, 109827. https://doi.org/10.1016/j.enbuild.2020.109827
Mavrigiannaki, A., Pignatta, G., Assimakopoulos, M., Isaac, M., Gupta, R., Kolokotsa, D., Laskari, M., Saliari, M., Meir, I. A., & Isaac, S. (2021). Examining the benefits and barriers for the implementation of net zero energy settlements. Energy and Buildings, 230, 110564. https://doi.org/10.1016/j.enbuild.2020.110564
Kaewunruen, S., Sresakoolchai, J., & Zhou, Z. (2020). Sustainability-Based lifecycle management for bridge infrastructure using 6D BIM. Sustainability, 12(6), 2436. https://doi.org/10.3390/su12062436
Lu, W., Lou, J., Webster, C., Xue, F., Bao, Z., & Chi, B. (2021). Estimating construction waste generation in the Greater Bay Area, China using machine learning. Waste Management, 134, 78–88. https://doi.org/10.1016/j.wasman.2021.08.012
Su, S., Li, S., Ju, J., Wang, Q., & Xu, Z. (2021). A building information modeling-based tool for estimating building demolition waste and evaluating its environmental impacts. Waste Management, 134, 159–169. https://doi.org/10.1016/j.wasman.2021.07.025
Kamma, R. C., & Jha, K. N. (2022). Quantifying building construction and demolition waste using permit data. Journal of Construction Engineering and Management, 148(9), 4022091. https://doi.org/10.1061/(ASCE)CO.1943-7862.0002357
Véliz, K. D., Walters, J. P., Busco, C., & Vargas, M. (2023). Modeling barriers to a circular economy for construction demolition waste in the Aysén region of Chile. Resources, Conservation & Recycling Advances, 18, 200145. https://doi.org/10.1016/j.rcradv.2023.200145
Torgautov, B., Zhanabayev, A., Tleuken, A., Turkyilmaz, A., Mustafa, M., & Karaca, F. (2021). Circular economy: Challenges and opportunities in the construction sector of Kazakhstan. Buildings, 11(11), 501. https://doi.org/10.3390/buildings11110501
Condotta, M., & Zatta, E. (2021). Reuse of building elements in the architectural practice and the European regulatory context: Inconsistencies and possible improvements. Journal of Cleaner Production, 318, 128413. https://doi.org/10.1016/j.jclepro.2021.128413
Hamida, M. B., Remøy, H., Gruis, V., & Jylhä, T. (2025). Circular building adaptability in adaptive reuse: multiple case studies in the Netherlands. Journal of Engineering, Design and Technology, 23(1), 161–183. https://doi.org/10.1108/JEDT-08-2022-0428
Amudjie, J., Agyekum, K., Adinyira, E., Amos-Abanyie, S., & Kumah, V. M. A. (2023). Awareness and practice of the principles of circular economy among built environment professionals. Built Environment Project and Asset Management, 13(1), 140–156. https://doi.org/10.1108/BEPAM-11-2021-0135
Jahan, I., Zhang, G., Bhuiyan, M., Navaratnam, S., & Shi, L. (2022). Experts’ perceptions of the management and minimisation of waste in the Australian construction industry. Sustainability, 14(18), 11319. https://doi.org/10.3390/su141811319
Izquierdo, R. S., Soliu, I., & Migliaccio, G. C. (2024). Enablers and barriers to implementation of circular economy practices in the built environment: An exploratory study. Journal of Legal Affairs and Dispute Resolution in Engineering and Construction, 16(2), 5023009. https://doi.org/10.1061/JLADAH.LADR-1094
Suleman, T., Ezema, I., & Aderonmu, P. (2023). Challenges of circular design adoption in the Nigerian built environment: An empirical study. Cleaner Engineering and Technology, 17, 100686. https://doi.org/10.1016/j.clet.2023.100686
Ding, Z., Wang, X., & Zou, P. X. W. (2023). Barriers and countermeasures of construction and demolition waste recycling enterprises under circular economy. Journal of Cleaner Production, 420, 138235. https://doi.org/10.1016/j.jclepro.2023.138235
Christensen, T. B., Johansen, M. R., Buchard, M. V., & Glarborg, C. N. (2022). Closing the material loops for construction and demolition waste: The circular economy on the island Bornholm, Denmark. Resources, Conservation & Recycling Advances, 15, 200104. https://doi.org/10.1016/j.rcradv.2022.200104
Al-Otaibi, A., Bowan, P. A., Abdel daiem, M. M., Said, N., Ebohon, J. O., Alabdullatief, A., Al-Enazi, E., & Watts, G. (2022). Identifying the barriers to sustainable management of construction and demolition waste in developed and developing countries. Sustainability, 14(13), 7532. https://doi.org/10.3390/su14137532
Bello, A. O., Isa, R. B., Afolabi, O. P., Arogundade, S., & Khan, A. A. (2025). Drivers for the implementation of circular economy in the Nigerian AECO industry: a structural equation modelling approach. Journal of Engineering, Design and Technology, 23(3), 953–972. https://doi.org/10.1108/JEDT-09-2023-0434
Menegaki, M., & Damigos, D. (2018). A review on current situation and challenges of construction and demolition waste management. Current Opinion in Green and Sustainable Chemistry, 13, 8–15. https://doi.org/10.1016/j.cogsc.2018.02.010
Page, M. J., McKenzie, J. E., Bossuyt, P. M., Boutron, I., Hoffmann, T. C., Mulrow, C. D., Shamseer, L., Tetzlaff, J. M., Akl, E. A., Brennan, S. E., Chou, R., Glanville, J., Grimshaw, J. M., Hróbjartsson, A., Lalu, M. M., Li, T., Loder, E. W., Mayo-Wilson, E., McDonald, S., McGuinness, L. A., Stewart, L. A., Thomas, J., Tricco, A. C., Welch, V. A., Whiting, P., & Moher, D. (2021). The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. BMJ, 372, n71. https://doi.org/10.1136/bmj.n71
Tranfield, D., Denyer, D., & Smart, P. (2003). Towards a methodology for developing evidence‐informed management knowledge by means of systematic review. British Journal of Management, 14(3), 207–222. https://doi.org/10.1111/1467-8551.00375
Murray, A., Skene, K., & Haynes, K. (2017). The circular economy: An interdisciplinary exploration of the concept and application in a global context. Journal of Business Ethics, 140(3), 369–380. https://doi.org/10.1007/s10551-015-2693-2
Fajarwati, A. A. S. (2023). Adaptive reuse of Pos Bloc and M Bloc: The intersection of third place, Nostalgia, and circular economy. Humaniora, 14(3), 215–222.
Balanay, R. M., & Halog, A. (2016). Teaching education for sustainable development at university level: A case study from the Philippines. In Teaching Education for Sustainable Development at University Level (pp. 163–174). https://doi.org/10.1007/978-3-319-32928-4_11
Papamichael, I., Voukkali, I., Loizia, P., & Zorpas, A. A. (2023). Construction and demolition waste framework of circular economy: A mini review. Waste Management & Research: The Journal for a Sustainable Circular Economy, 41(12), 1728–1740. https://doi.org/10.1177/0734242X231190804
Muriithi, J. K., & Ngare, I. O. (2023). Transitioning circular economy from policy to practice in Kenya. Frontiers in Sustainability, 4, 1190470. https://doi.org/10.3389/frsus.2023.1190470
Sehnem, S., Vazquez-Brust, D., Pereira, S. C. F., & Campos, L. M. S. (2019). Circular economy: Benefits, impacts and overlapping. Supply Chain Management: An International Journal, 24(6), 784–804. https://doi.org/10.1108/SCM-06-2018-0213
Wuni, I. Y., & Shen, G. Q. (2022). Developing critical success factors for integrating circular economy into modular construction projects in Hong Kong. Sustainable Production and Consumption, 29, 574–587. https://doi.org/10.1016/j.spc.2021.11.010
Almeida, F., Vieira, C. S., Carneiro, J. R., & Lopes, M. de L. (2022). Drawing a path towards circular construction: An approach to engage stakeholders. Sustainability, 14(9), 5314. https://doi.org/10.3390/su14095314
Sacks, R., Brilakis, I., Pikas, E., Xie, H. S., & Girolami, M. (2020). Construction with digital twin information systems. Data-Centric Engineering, 1, e14. https://doi.org/10.1017/dce.2020.16
Feria, M., & Amado, M. (2019). Architectural design: Sustainability in the decision-making process. Buildings, 9(5), 135.
Moktadir, M. A., Kumar, A., Ali, S. M., Paul, S. K., Sultana, R., & Rezaei, J. (2020). Critical success factors for a circular economy: Implications for business strategy and the environment. Business Strategy and the Environment, 29(8), 3611–3635. https://doi.org/10.1002/bse.2600
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