Existing CE framework for CDWM
| Authors | Field | Key objectives | Practicality | Effectiveness | Usability | Limitations |
|---|---|---|---|---|---|---|
| Han et al. (2024) | Demolition | Facilitate sustainability-oriented decision-making at the planning stage of demolition activities | The BIM-based framework accommodates inventory analysis using MCDA algorithms to manage demolition waste | Quantifies and visualizes the recycling value of building components | Integrates BIM, inventory analysis tools, and MCDA algorithms for planning demolition activities | Developed based on Chinese culture, requiring a digital database for adoption |
| Herrador (2024) | Construction and Demolition | Explore CE policy framework in the C&D sector to guide the waste transition | Evaluates and monitors CDW in the Cambodian construction sector | Engages multiple mechanisms and actors to improve CDW collection and recycling services | Optimizes CDW management practices and promotes sustainable landfill operations | Developed using only policies and barriers of the Cambodian construction sector |
| Nie et al. (2024) | Construction and Demolition | Explore transition towards CDW management in the pre-construction stage | Enforces the adoption of strategies, policies, and CDW management plans in the pre-construction stage | Discusses the five life cycle stages of construction and associated strategies | Provides suggestions to develop strategies, adopt policies, focus on circular design, and CDW management plan | Specific to the pre-construction stage, lacking broader application |
| Saeed et al. (2023) | Construction | Develop a framework for building construction waste management | Uses multi-objective optimization to determine the optimal material quantity | Monetizes environmental savings and determines the optimal material quantity | Demonstrates how this framework can divert construction waste from landfills | Requires parametric weights to consider stakeholder preferences for determining material quantity |
| Alite et al. (2023) | Construction and Demolition | Assess current practices and operations to manage CDW | Proposes a system integrating policies and instruments to manage CDW | Discusses different CDW phases and their relevant activities with legislation | Guides the adoption of policies and legislation developed by the government | Does not discuss the different phases of CE and its integration with the CDW framework |
| HaitherAli and Anjali (2023) | Construction and Demolition | Develop a six-stage framework to achieve CE in CDW management | Provides a structure to manage CDW in the Indian construction sector | Discusses six different phases to achieve CE in CDW management | Stages include set targets, establish infrastructure, enact regulations, enforce and implement, monitor and control, analyze and improve to achieve CE | Lacks systematic and structured guidelines to implement CE in the construction sector to manage CDW. |
| RİGİLLO et al. (2022) | Construction and Demolition | Extend the scope of CDW through reuse in diversified fields | Helps in reusing the CDW for non-standard manufactures and components | Governs the use of recycled aggregates for building components production | Reuses C&D waste materials through the concept of file-to-factory process | The framework’s nature is deterministic |
| Shooshtarian et al. (2022) | Construction and Demolition | Provide practical solutions to overcome barriers for market development of CDW | Supports CDW market development in the Australian construction sector | Establishes four groups of barriers and enablers to create a market for CDW | Provides solutions for challenges associated with CDW market development | Developed based on barriers and enablers influencing the Australian CDW market development |
| Jahan et al. (2022) | Construction and Demolition | Propose a theoretical framework for life cycle stages of CDW management | Guides how to manage wood waste in the construction sector | Presents six stages of CDW management plans in circular ways | Provides theoretical guidelines to manage wood waste in the construction sector | The framework is specifically provided for wood waste |
| Sharma et al. (2022) | Demolition | Provide knowledge about the lifecycle of buildings from a CE perspective | Guides how to handle and manage demolition waste | Discusses lifecycle phases of building demolition activities | Provides guidelines about the lifecycle stages of building demolition activities | Relies on building demolition activities only |
| Maury-Ramírez et al. (2022) | Construction and Demolition | Develop a CE-based framework for CDW material management | Helps manage CDW in Colombia | Discusses four different phases to adopt CE for CDW management | Phases include raw material extraction, production, construction, use and operation, and end of life to adopt CE | Lacks structured guidelines to adopt CE in the construction sector |
| Superti et al. (2021) | Construction and Demolition | Develop CE framework for CDW management | Helps manage CDW in Switzerland | Discusses four different phases to adopt CE for CDW management | Phases include Research and Realize, Implement, Support, and Enable to adopt CE | Lacks an adoption process |
| Lu et al. (2021) | Construction and Demolition | Develop an analytical framework of “zero waste construction site” | Helps manage CDW in China | Explores the CDW materials circularity process using the 3R concept | Reuse, reduce, and recycle approaches applied to prepare an analytical framework for a zero-waste site | Lacks tools, techniques, and other internal requirements |
| Ruiz et al. (2020) | Construction | Provide knowledge about the construction stages and waste management | Guides how to handle and manage construction waste | Discusses waste management within construction activities | Provides guidelines about building construction lifecycle stages and waste management activities | Relies on building construction waste management activities only |
| Authors | Field | Key objectives | Practicality | Effectiveness | Usability | Limitations |
|---|---|---|---|---|---|---|
| Demolition | Facilitate sustainability-oriented decision-making at the planning stage of demolition activities | The BIM-based framework accommodates inventory analysis using MCDA algorithms to manage demolition waste | Quantifies and visualizes the recycling value of building components | Integrates BIM, inventory analysis tools, and MCDA algorithms for planning demolition activities | Developed based on Chinese culture, requiring a digital database for adoption | |
| Construction and Demolition | Explore CE policy framework in the C&D sector to guide the waste transition | Evaluates and monitors CDW in the Cambodian construction sector | Engages multiple mechanisms and actors to improve CDW collection and recycling services | Optimizes CDW management practices and promotes sustainable landfill operations | Developed using only policies and barriers of the Cambodian construction sector | |
| Construction and Demolition | Explore transition towards CDW management in the pre-construction stage | Enforces the adoption of strategies, policies, and CDW management plans in the pre-construction stage | Discusses the five life cycle stages of construction and associated strategies | Provides suggestions to develop strategies, adopt policies, focus on circular design, and CDW management plan | Specific to the pre-construction stage, lacking broader application | |
| Construction | Develop a framework for building construction waste management | Uses multi-objective optimization to determine the optimal material quantity | Monetizes environmental savings and determines the optimal material quantity | Demonstrates how this framework can divert construction waste from landfills | Requires parametric weights to consider stakeholder preferences for determining material quantity | |
| Construction and Demolition | Assess current practices and operations to manage CDW | Proposes a system integrating policies and instruments to manage CDW | Discusses different CDW phases and their relevant activities with legislation | Guides the adoption of policies and legislation developed by the government | Does not discuss the different phases of CE and its integration with the CDW framework | |
| Construction and Demolition | Develop a six-stage framework to achieve CE in CDW management | Provides a structure to manage CDW in the Indian construction sector | Discusses six different phases to achieve CE in CDW management | Stages include set targets, establish infrastructure, enact regulations, enforce and implement, monitor and control, analyze and improve to achieve CE | Lacks systematic and structured guidelines to implement CE in the construction sector to manage CDW. | |
| Construction and Demolition | Extend the scope of CDW through reuse in diversified fields | Helps in reusing the CDW for non-standard manufactures and components | Governs the use of recycled aggregates for building components production | Reuses C&D waste materials through the concept of file-to-factory process | The framework’s nature is deterministic | |
| Construction and Demolition | Provide practical solutions to overcome barriers for market development of CDW | Supports CDW market development in the Australian construction sector | Establishes four groups of barriers and enablers to create a market for CDW | Provides solutions for challenges associated with CDW market development | Developed based on barriers and enablers influencing the Australian CDW market development | |
| Construction and Demolition | Propose a theoretical framework for life cycle stages of CDW management | Guides how to manage wood waste in the construction sector | Presents six stages of CDW management plans in circular ways | Provides theoretical guidelines to manage wood waste in the construction sector | The framework is specifically provided for wood waste | |
| Demolition | Provide knowledge about the lifecycle of buildings from a CE perspective | Guides how to handle and manage demolition waste | Discusses lifecycle phases of building demolition activities | Provides guidelines about the lifecycle stages of building demolition activities | Relies on building demolition activities only | |
| Construction and Demolition | Develop a CE-based framework for CDW material management | Helps manage CDW in Colombia | Discusses four different phases to adopt CE for CDW management | Phases include raw material extraction, production, construction, use and operation, and end of life to adopt CE | Lacks structured guidelines to adopt CE in the construction sector | |
| Construction and Demolition | Develop CE framework for CDW management | Helps manage CDW in Switzerland | Discusses four different phases to adopt CE for CDW management | Phases include Research and Realize, Implement, Support, and Enable to adopt CE | Lacks an adoption process | |
| Construction and Demolition | Develop an analytical framework of “zero waste construction site” | Helps manage CDW in China | Explores the CDW materials circularity process using the 3R concept | Reuse, reduce, and recycle approaches applied to prepare an analytical framework for a zero-waste site | Lacks tools, techniques, and other internal requirements | |
| Construction | Provide knowledge about the construction stages and waste management | Guides how to handle and manage construction waste | Discusses waste management within construction activities | Provides guidelines about building construction lifecycle stages and waste management activities | Relies on building construction waste management activities only |
Source(s): Table created by authors
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