Life Cycle Assessment on Construction and Demolition Waste: A Systematic Literature Review
暂无分享,去创建一个
Jaime A. Mesa | Jaime Mesa | Carlos Fúquene-Retamoso | Aníbal Maury-Ramírez | J. Mesa | Aníbal Maury-Ramírez | C. Fúquene-Retamoso
[1] Milad Ghanbari,et al. Economic and Environmental Evaluation and Optimal Ratio of Natural and Recycled Aggregate Production , 2017 .
[2] Umberto Arena,et al. An attributional life cycle assessment for an Italian residential multifamily building , 2018, Environmental technology.
[3] R. Mateus,et al. Characterisation and Life Cycle Assessment of Pervious Concrete with Recycled Concrete Aggregates , 2021, Crystals.
[4] Guillaume Habert,et al. Transportation matters – Does it? GIS-based comparative environmental assessment of concrete mixes with cement, fly ash, natural and recycled aggregates , 2018, Resources, Conservation and Recycling.
[5] U. Arena,et al. Life cycle assessment of construction and demolition waste management in a large area of São Paulo State, Brazil. , 2019, Waste management.
[6] Kyle Mason-Jones,et al. An energetic life cycle assessment of C&D waste and container glass recycling in Cape Town, South Africa , 2014 .
[7] L. Walubita,et al. Mechanical performance and environmental impacts of self-compacting concrete with recycled demolished concrete blocks , 2021 .
[8] George Zillante,et al. A review of performance assessment methods for construction and demolition waste management , 2019, Resources, Conservation and Recycling.
[9] T. Fishman,et al. A Life Cycle Thinking Framework to Mitigate the Environmental Impact of Building Materials , 2020 .
[10] E. Hertwich,et al. Material efficiency strategies to reducing greenhouse gas emissions associated with buildings, vehicles, and electronics—a review , 2019, Environmental Research Letters.
[11] Qinghua He,et al. Estimating the environmental costs and benefits of demolition waste using life cycle assessment and willingness-to-pay: A case study in Shenzhen , 2018 .
[12] Miloš Stanić,et al. Multicriteria optimization of natural and recycled aggregate concrete for structural use , 2015 .
[13] Chooi Mei Mah,et al. Environmental impacts of construction and demolition waste management alternatives , 2018 .
[14] Chi Kwan Chau,et al. New Life of the Building Materials- Recycle, Reuse and Recovery , 2015 .
[15] Jiayuan Wang,et al. Considering life-cycle environmental impacts and society's willingness for optimizing construction and demolition waste management fee: An empirical study of China , 2019, Journal of Cleaner Production.
[16] Nele De Belie,et al. Life Cycle Assessment of Completely Recyclable Concrete , 2014 .
[17] Hatice Sözer,et al. Waste capacity and its environmental impact of a residential district during its life cycle , 2020 .
[18] Xavier Roca,et al. Product-specific life cycle assessment of recycled gypsum as a replacement for natural gypsum in ordinary Portland cement: application to the Spanish context , 2016 .
[19] V. Kočí,et al. Sustainable Masonry Made from Recycled Aggregates: LCA Case Study , 2020, Sustainability.
[20] Alfonso Aranda-Usón,et al. Analysis of the environmental performance of life-cycle building waste management strategies in tertiary buildings , 2016 .
[21] I. Deviatkin,et al. An evaluation of thermoplastic composite fillers derived from construction and demolition waste based on their economic and environmental characteristics , 2021, Journal of Cleaner Production.
[22] C. Llatas,et al. Inclusion of prevention scenarios in LCA of construction waste management , 2019, The International Journal of Life Cycle Assessment.
[24] Xiaodong Li,et al. A comparative study of environmental performance between prefabricated and traditional residential buildings in China , 2015 .
[25] Hongwei Tan,et al. A future bamboo-structure residential building prototype in China: Life cycle assessment of energy u , 2011 .
[26] Chi Sun Poon,et al. Environmental and technical feasibility study of upcycling wood waste into cement-bonded particleboard , 2018, Construction and Building Materials.
[27] Fernando López Gayarre,et al. Life cycle assessment for concrete kerbs manufactured with recycled aggregates , 2016 .
[29] Mingming Hu,et al. An approach to LCSA: the case of concrete recycling , 2013, The International Journal of Life Cycle Assessment.
[30] Ola Wik,et al. How Does the European Recovery Target for Construction & Demolition Waste Affect Resource Management? , 2017 .
[31] L. Rigamonti,et al. Is selective demolition always a sustainable choice? , 2019, Waste management.
[32] Eva Martínez,et al. End of life of buildings: three alternatives, two scenarios. A case study , 2013, The International Journal of Life Cycle Assessment.
[33] Enrico Benetto,et al. Geospatial characterization of building material stocks for the life cycle assessment of end-of-life scenarios at the urban scale , 2017 .
[34] Jun Sun,et al. Carbon Emission Assessment for Steel Structure Based on Lean Construction Process , 2015, J. Intell. Robotic Syst..
[35] Jian Zuo,et al. Environmental impact assessment of mobile recycling of demolition waste in Shenzhen, China , 2020 .
[36] G. Blengini,et al. Integrated life cycle management of aggregates quarrying, processing and recycling: definition of a common LCA methodology in the SARMa project , 2011 .
[37] Y. Ali,et al. Sustainable construction , 2020, Construction Innovation.
[38] W. K. Hui,et al. Assessment of CO2 emissions reduction in high-rise concrete office buildings using different material use options , 2012 .
[39] Reben Kurda,et al. A Critical Review on the Influence of Fine Recycled Aggregates on Technical Performance, Environmental Impact and Cost of Concrete , 2020, Applied Sciences.
[40] E. Sanyé-Mengual,et al. Comparative LCA of recycled and conventional concrete for structural applications , 2013, The International Journal of Life Cycle Assessment.
[41] Yan Ma,et al. Greenhouse gases emissions from solid waste: an analysis of Expo 2010 Shanghai, China , 2014 .
[42] Timo Kärki,et al. Construction and demolition waste as a raw material for wood polymer composites – Assessment of environmental impacts , 2019, Journal of Cleaner Production.
[43] Sungjin Kim,et al. Dynamic Modeling for Life Cycle Cost Analysis of BIM-Based Construction Waste Management , 2020, Sustainability.
[44] Hatice Sözer,et al. EVALUATING THE CAPACITY OF A BUILDING’S WASTE AND THE POTENTIAL FOR SAVINGS USING THE LIFE CYCLE ASSESSMENT METHODOLOGY , 2018, Waste Management and the Environment IX.
[45] Chi Sun Poon,et al. Comparative environmental evaluation of construction waste management through different waste sorting systems in Hong Kong. , 2017, Waste management.
[46] Jun-hui Zhang,et al. Recycled aggregates from construction and demolition wastes as alternative filling materials for highway subgrades in China , 2020 .
[47] A. Religa,et al. Economic and Ecological Assessment of Transport of Various Types of Waste , 2020 .
[48] J. de Brito,et al. Environmental life cycle assessment of coarse natural and recycled aggregates for concrete , 2018 .
[49] Gian Andrea Blengini,et al. Resources and waste management in Turin (Italy): the role of recycled aggregates in the sustainable supply mix , 2010 .
[50] K. Verghese,et al. Concrete recycling life cycle flows and performance from construction and demolition waste in Hanoi , 2018 .
[51] Isabela Maria Simion,et al. Life Cycle Assessment Applied to Circular Designed Construction Materials , 2018 .
[52] J. Nußholz,et al. Circular building materials: Carbon saving potential and the role of business model innovation and public policy , 2019, Resources, Conservation and Recycling.
[53] D. Apul,et al. Life cycle assessment of seismic retrofit alternatives for reinforced concrete frame buildings , 2020 .
[54] Jian Zuo,et al. Improving waste management in construction projects: An Australian study , 2015 .
[55] Farzad Jalaei,et al. Life cycle environmental impact assessment to manage and optimize construction waste using Building Information Modeling (BIM) , 2019, International Journal of Construction Management.
[56] V. Ducman,et al. Life Cycle Assessment of Prefabricated Geopolymeric Façade Cladding Panels Made from Large Fractions of Recycled Construction and Demolition Waste , 2020, Materials.
[57] S. Kalidindi,et al. Environmental benefits of construction and demolition debris recycling: Evidence from an Indian case study using life cycle assessment , 2020 .
[58] G. M. Cuenca-Moyano,et al. Environmental assessment, mechanical behavior and new leaching impact proposal of mixed recycled aggregates to be used in road construction , 2021 .
[59] S. Elias-Ozkan,et al. Assessing potential environmental impact and construction cost of reclaimed masonry walls , 2020, The International Journal of Life Cycle Assessment.
[60] Jorge de Brito,et al. Environmental analysis of a construction and demolition waste recycling plant in Portugal--Part I: energy consumption and CO2 emissions. , 2013, Waste management.
[61] André Coelho,et al. Environmental analysis of a construction and demolition waste recycling plant in Portugal--Part II: Environmental sensitivity analysis. , 2013, Waste management.
[62] D. Waldmann,et al. Modelling of mineral construction and demolition waste dynamics through a combination of geospatial and image analysis. , 2021, Journal of environmental management.
[63] Mariano Angelo Zanini,et al. Sustainable management and supply of natural and recycled aggregates in a medium-size integrated plant. , 2016, Waste management.
[64] Jack Chin Pang Cheng,et al. Evaluation of environmental friendliness of concrete paving eco-blocks using LCA approach , 2016, The International Journal of Life Cycle Assessment.
[65] A. Tukker,et al. Eco-efficiency assessment of technological innovations in high-grade concrete recycling , 2019, Resources, Conservation and Recycling.
[66] A. C. Santos,et al. Social life cycle analysis as a tool for sustainable management of illegal waste dumping in municipal services , 2019, Journal of Cleaner Production.
[67] Zezhou Wu,et al. An off-site snapshot methodology for estimating building construction waste composition - a case study of Hong Kong , 2019, Environmental Impact Assessment Review.
[68] B. Soust-Verdaguer,et al. An LCA-based model for assessing prevention versus non-prevention of construction waste in buildings. , 2021, Waste management.
[69] Giovanni Andrea Blengini,et al. Life cycle of buildings, demolition and recycling potential: A case study in Turin, Italy , 2009 .
[70] Lawrence C. Bank,et al. Comparative LCA of concrete with natural and recycled coarse aggregate in the New York City area , 2018, The International Journal of Life Cycle Assessment.
[71] I. Valverde-Palacios,et al. Development of the life cycle inventory of masonry mortar made of natural and recycled aggregates , 2017 .
[72] Valeria Ibáñez-Forés,et al. Life cycle assessment of construction and demolition waste management systems: a Spanish case study , 2012, The International Journal of Life Cycle Assessment.
[73] D. Zou,et al. A novel approach for recycling engineering sediment waste as sustainable supplementary cementitious materials , 2021 .
[74] Jingkuang Liu,et al. Economic and Environmental Assessment of Carbon Emissions from Demolition Waste Based on LCA and LCC , 2020 .
[75] T. Astrup,et al. Life cycle assessment of construction and demolition waste management. , 2015, Waste management.
[76] Liselotte Schebek,et al. Closed-loop recycling of construction and demolition waste in Germany in view of stricter environmental threshold values , 2006, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.
[77] Laddu Bhagya Jayasinghe,et al. BIM-Based End-of-Lifecycle Decision Making and Digital Deconstruction: Literature Review , 2020 .
[78] Sourabh Jain,et al. Environmental life cycle assessment of construction and demolition waste recycling: A case of urban India , 2020 .
[79] Maria Gavrilescu,et al. Comparing environmental impacts of natural inert and recycled construction and demolition waste processing using LCA , 2013 .
[80] Kasun Hewage,et al. How “green” are the green roofs? Lifecycle analysis of green roof materials , 2012 .
[81] Seungjun Roh,et al. Analysis of Life Cycle Environmental Impact of Recycled Aggregate , 2019, Applied Sciences.
[82] S. Singh,et al. Alternative fine aggregates in production of sustainable concrete- A review , 2020 .
[83] Laís Peixoto Rosado,et al. Comparison of scenarios for the integrated management of construction and demolition waste by life cycle assessment: A case study in Brazil , 2016, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.
[84] W. Park,et al. Identifying the Major Construction Wastes in the Building Construction Phase Based on Life Cycle Assessments , 2020 .
[85] Xin Shan,et al. Life cycle assessment of adoption of local recycled aggregates and green concrete in Singapore perspective , 2017 .
[86] Massimo Pizzol,et al. Consequential LCA modelling of building refurbishment in New Zealand- an evaluation of resource and waste management scenarios , 2017 .
[87] Petr Hradil,et al. Economic potential and environmental impacts of reused steel structures , 2020, Structure and Infrastructure Engineering.
[88] Yaolin Liu,et al. Evaluating extended land consumption in building life cycle to improve land conservation: A case study in Shenyang, China , 2016 .
[89] Beatriz Palacios-Munoz,et al. Simplified structural design and LCA of reinforced concrete beams strengthening techniques , 2018 .
[90] Mingming Hu,et al. Co-benefits of urban concrete recycling on the mitigation of greenhouse gas emissions and land use change: A case in Chongqing metropolis, China , 2018, Journal of Cleaner Production.
[91] Umberto Arena,et al. Life cycle assessment of the end-of-life phase of a residential building. , 2017, Waste management.
[92] Stefanie Hellweg,et al. Tracking Construction Material over Space and Time: Prospective and Geo‐referenced Modeling of Building Stocks and Construction Material Flows , 2019 .
[93] Ardavan Yazdanbakhsh. A bi-level environmental impact assessment framework for comparing construction and demolition waste management strategies. , 2018, Waste management.
[94] Kasun Hewage,et al. Probabilistic social cost-benefit analysis for green roofs: A lifecycle approach , 2012 .
[95] Thiago Melo Grabois,et al. An Experimental and Environmental Evaluation of Mortars with Recycled Demolition Waste from a Hospital Implosion in Rio de Janeiro , 2020, Sustainability.
[96] Rosario Vidal,et al. Life cycle assessment of a residential building with cross-laminated timber structure in Granada-Spain , 2019 .
[97] Milad Ghanbari,et al. Production of natural and recycled aggregates: the environmental impacts of energy consumption and CO2 emissions , 2018 .
[98] Heriberto Maury,et al. Developing an indicator for material selection based on durability and environmental footprint: A Circular Economy perspective , 2020 .
[99] Monia Niero,et al. Review of LCA studies of solid waste management systems--part I: lessons learned and perspectives. , 2014, Waste management.
[100] Daniel M. Martínez,et al. Interaction between global warming potential, durability, and structural properties of fiber-reinforced concrete with high waste materials inclusion , 2021 .
[101] Umberto Arena,et al. Life cycle assessment of natural and mixed recycled aggregate production in Brazil , 2017 .
[102] M. M. Mortaheb,et al. INTEGRATED CONSTRUCTION WASTE MANAGEMENT, A HOLISTIC APPROACH , 2016 .
[103] V. Kočí,et al. Environmental Assessment of Two Use Cycles of Recycled Aggregate Concrete , 2019, Sustainability.
[104] F. Cherubini,et al. Estimating dynamic climate change effects of material use in buildings—Timing, uncertainty, and emission sources , 2021 .
[105] Yasuhiro Dosho,et al. Development of a Sustainable Concrete Waste Recycling System , 2007 .
[106] M.D. Bovea,et al. Developments in life cycle assessment applied to evaluate the environmental performance of construction and demolition wastes. , 2016, Waste management.
[107] Rehan Sadiq,et al. An overview of construction and demolition waste management in Canada: a lifecycle analysis approach to sustainability , 2013, Clean Technologies and Environmental Policy.
[108] Nicolas Antheaume,et al. Decision-based territorial life cycle assessment for the management of cement concrete demolition waste , 2020, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.
[109] Murat Kucukvar,et al. Life Cycle Assessment and Optimization-Based Decision Analysis of Construction Waste Recycling for a LEED-Certified University Building , 2016 .
[110] J. Eyckmans,et al. Downcycling versus recycling of construction and demolition waste: Combining LCA and LCC to support sustainable policy making. , 2018, Waste management.
[111] Ardavan Yazdanbakhsh,et al. The effect of geographic boundaries on the results of a regional life cycle assessment of using recycled aggregate in concrete , 2019, Resources, Conservation and Recycling.
[112] Sylvain Guignot,et al. Recycling Construction and Demolition Wastes as Building Materials: A Life Cycle Assessment , 2015 .
[113] Timo Jouttijärvi,et al. Construction and demolition waste management – a holistic evaluation of environmental performance , 2015 .
[114] S. Zanni,et al. Sustainability in Building and Construction within the Framework of Circular Cities and European New Green Deal. The Contribution of Concrete Recycling , 2021, Sustainability.
[115] Ligia Tiruta-Barna,et al. Environmental impact and risk assessment of mineral wastes reuse strategies : Review and critical analysis of approaches and applications , 2007 .
[116] U. Arena,et al. Environmental performances of residential buildings with a structure in cold formed steel or reinforced concrete , 2018, Journal of Cleaner Production.
[117] Ahmed AbdelMonteleb M. Ali,et al. Assessment of eco-rehabilitation plans: Case study ‘Richordi Berchet’ palace , 2020 .
[118] Xavier Roca,et al. Multi-criteria decision analysis to assess the environmental and economic performance of using recycled gypsum cement and recycled aggregate to produce concrete: The case of Catalonia (Spain) , 2018, Resources, Conservation and Recycling.
[119] Darli Rodrigues Vieira,et al. Life cycle assessment (LCA) applied to the manufacturing of common and ecological concrete: A review , 2016 .
[120] Cristina Rivero-Camacho,et al. What are we discarding during the life cycle of a building? Case studies of social housing in Andalusia, Spain. , 2019, Waste management.
[121] Jack Chin Pang Cheng,et al. Comparative environmental evaluation of aggregate production from recycled waste materials and virgin sources by LCA , 2016 .
[122] George Zillante,et al. Combining life cycle assessment and Building Information Modelling to account for carbon emission of building demolition waste: A case study , 2018 .
[123] J. Ayuso,et al. Correlation analysis between sulphate content and leaching of sulphates in recycled aggregates from construction and demolition wastes. , 2012, Waste management.
[124] Hatice Sözer,et al. Waste Potential of a Building Through Gate-to-Grave Approach Based on Life Cycle Assessment (LCA) , 2020 .
[125] A. Petrillo,et al. Comparative LCA of concrete with recycled aggregates: a circular economy mindset in Europe , 2020, The International Journal of Life Cycle Assessment.
[126] Dz Z. Li,et al. A methodology for estimating the life-cycle carbon efficiency of a residential building , 2013 .
[127] Anders Klang,et al. Sustainable management of demolition waste*/ an integrated model for the evaluation of environmental, economic and social aspects , 2003 .
[128] S. Martínez-Ramírez,et al. Behaviour and Properties of Eco-Cement Pastes Elaborated with Recycled Concrete Powder from Construction and Demolition Wastes , 2021, Materials.
[129] Hamad Al Jassmi,et al. Life cycle assessment of roadworks in United Arab Emirates: Recycled construction waste, reclaimed asphalt pavement, warm-mix asphalt and blast furnace slag use against traditional approach , 2020, Journal of Cleaner Production.
[130] S. Monavari,et al. Assessment of carbon footprint in the construction phase of high-rise constructions in Tehran , 2019, International Journal of Environmental Science and Technology.
[131] G. Foster,et al. A review of environmental impact indicators of cultural heritage buildings: a circular economy perspective , 2020, Environmental Research Letters.
[132] L. Rigamonti,et al. A LCA study to investigate resource-efficient strategies for managing post-consumer gypsum waste in Lombardy region (Italy) , 2019, Resources, Conservation and Recycling.
[133] Pasquale De Toro,et al. WASTE AND WASTED LANDSCAPES: FOCUS ON ABANDONED INDUSTRIAL AREAS , 2020, Detritus.
[134] J. Eyckmans,et al. Use of LCA and LCC to help decision-making between downcycling versus recycling of construction and demolition waste , 2020 .
[135] Tarja Häkkinen,et al. Material Efficiency of Building Construction , 2014 .
[136] A. Seco,et al. Sustainable unfired bricks manufacturing from construction and demolition wastes , 2018 .
[137] Muhammad Mustafa Hussain,et al. Design Analysis and Human Tests of Foil-Based Wheezing Monitoring System for Asthma Detection , 2020, IEEE Transactions on Electron Devices.
[138] O Ortiz,et al. Environmental performance of construction waste: Comparing three scenarios from a case study in Catalonia, Spain. , 2010, Waste management.
[139] L. Courard,et al. Use of recycled concrete aggregates from precast block for the production of new building blocks: An industrial scale study , 2020 .
[140] P. Walker,et al. Mechanical and thermal properties, and comparative life-cycle impacts, of stabilised earth building products , 2020 .
[141] Murat Kucukvar,et al. Evaluating environmental impacts of alternative construction waste management approaches using supply-chain-linked life-cycle analysis , 2014, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.
[142] Lucia Rigamonti,et al. Life cycle assessment of non-hazardous Construction and Demolition Waste (CDW) management in Lombardy Region (Italy) , 2018 .
[143] G. M. Cuenca-Moyano,et al. Environmental assessment of masonry mortars made with natural and recycled aggregates , 2018, The International Journal of Life Cycle Assessment.
[144] André Coelho,et al. Influence of construction and demolition waste management on the environmental impact of buildings. , 2012, Waste management.
[145] Valeria Ibáñez-Forés,et al. Life cycle assessment of ceramic tiles. Environmental and statistical analysis , 2011 .
[146] Wahidul K. Biswas. Carbon footprint and embodied energy assessment of a civil works program in a residential estate of Western Australia , 2013, The International Journal of Life Cycle Assessment.
[147] W I Sou,et al. Sustainability assessment and prioritisation of bottom ash management in Macao , 2016, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.
[148] Vladimir Strezov,et al. An evaluation of the potential of waste to energy technologies for residual solid waste in New South Wales, Australia , 2019, Renewable and Sustainable Energy Reviews.
[149] Takeshi Fujiwara,et al. Concrete Waste Management Decision Analysis Based on Life Cycle Assessment , 2017 .
[150] L Rigamonti,et al. Towards resource-efficient management of asphalt waste in Lombardy region (Italy): Identification of effective strategies based on the LCA methodology. , 2018, Waste management.
[151] Laís Peixoto Rosado,et al. Municipal management of construction and demolition waste: influence of disposal fees , 2020 .