Andreen, Henrik. Project Manager, Consto AB, Sweden. Personal communication on March 8, 2024.
Google Scholar
Andrews, Annalena, and Berith Granath. 2012. “FN-fakta Hållbar utveckling. FN-förbundet. [United Nations facts; Sustainable Development – United Nations Alliance].” Accessed February 14, 2024. https://fn.se/wp-content/uploads/2016/08/Faktablad-2-12-H%C3%A5llbar-utveckling.pdf.
Google Scholar
Avfall Sverige. 2022. “Energiåtervinning [Energy recovery].” Accessed February 5, 2024. https://www.avfallsverige.se/fakta-statistik/avfallsbehandling/energiatervinning/.
Google Scholar
Avfall Sverige. 2024. Personal communication on March 14, 2024.
Google Scholar
Baumann, Henrikke, Anne-Marie Tillman. 2004. The Hitch Hiker’s Guide to LCA: An Orientation in lifecycle assessment methodology and application. Studentlitteratur AB, Lund, Sweden.
Google Scholar
Bizcocho, Nuria, Carmen Llatas. 2018. “Inclusion of prevention scenarios in LCA of construction waste management.” International Journal of Life Cycle Assessment 24(3): 468-484. https://doi.org/10.1007/s11367-018-1462-8.
DOI: https://doi.org/10.1007/s11367-018-1462-8
Google Scholar
Boverket. 2023. “Bygg- och fastighetssektorns uppkomna mängder av avfall [Waste generation in the building and property sector].” Accessed December 19, 2024. https://www.boverket.se/sv/byggande/hallbart-byggande-och-forvaltning/miljoindikatorer---aktuellstatus/avfall/.
Google Scholar
Brunner, Paul, and Helmut Rechberger. 2005. Practical Handbook of Material Flow Analysis. CRC Press, Boca Raton, Florida, USA. Accessed on Taylor & Francis e-Library. https://doi.org/10.1201/9780203507209.
DOI: https://doi.org/10.1007/BF02979426
Google Scholar
Byggföretagen. 2021. “Resurs- och avfallsriktlinjer vid byggande och rivning [Guidelines for resource use and waste management in construction and demolition].” Accessed December 19, 2024. https://byggforetagen.se/app/uploads/2021/09/20210915-Resurs-och-avfallshantering-vidbyggande-och-rivning.pdf.
Google Scholar
CML, University of Leiden. 2016. Version 4.7. CML Method for E-LCA Analysis. Leiden, Netherlands.
Google Scholar
Dunmar, Mats. Business Developer, Skanska Sverige AB. Personal communication on March 15, 2024.
Google Scholar
Eriksson, F. 2024. Section Head, PreZero Recycling AB, Karlstad, Sweden. Personal communication on March 4, 2024.
Google Scholar
Gálvez-Martos, Jose-Luis, David Styles, Harald Schoenberger, and Barbara Zeschmar-Lahl. 2018. “Construction and demolition waste best management practice in Europe.” Resources, Conservation & Recycling, 136:166-178. https://doi.org/10.1016/j.resconrec.2018.04.016.
DOI: https://doi.org/10.1016/j.resconrec.2018.04.016
Google Scholar
Hossain, Mohammed Uzzal, Zezhou Wu, and Chi Sun Poon. 2017. “Comparative environmental evaluation of construction waste management through different waste sorting systems in Hong Kong.” Waste Management 69: 325-335. https://doi.org/10.1016/j.wasman.2017.07.043.
DOI: https://doi.org/10.1016/j.wasman.2017.07.043
Google Scholar
IEA (International Energy Agency). 2023. “CO2 Emissions in 2022.” Accessed February 18, 2024. https://www.iea.org/reports/co2-emissions-in-2022.
Google Scholar
Jalaei, Farzad, Milad Zoghi, and Afshin Khoshand. 2021. “Life cycle environmental impact assessment to manage and optimize construction waste using Building Information Modelling (BIM).” International Journal of Construction Management 21 (8): 784-810. https://doi.org/10.1080/15623599.2019.1583850.
DOI: https://doi.org/10.1080/15623599.2019.1583850
Google Scholar
Johansson, Pernilla, Linus Brander, Anna Jansson, Stefan Karlsson, Pierre Landel, and Kaisa Svennberg. 2017. “Kvalitet hos byggmaterial i cirkulära flöden [The quality of building materials in circular flows].” RI:SE report 2017:55. Accessed February 4, 2024. https://www.divaportal.org/smash/get/diva2:1178464/FULLTEXT01.pdf.
Google Scholar
Kabirifar, Kamyar, Mohammed Mojtahedi, Changxin Wang, Vivian W.Y. Tam. 2020. “Construction and demolition waste management contributing factors coupled with reduce, reuse, and recycle strategies för effective waste management: A review.” Journal of Cleaner production 263: 121265. https://doi.org/10.1016/j.jclepro.2020.121265.
DOI: https://doi.org/10.1016/j.jclepro.2020.121265
Google Scholar
Karlsson, Johan, Lena Brunzell, and G Venkatesh. 2018. “Material-flow analysis, energy analysis and partial environmental-LCA of a district-heating combined heat and power plant in Sweden.” Energy 144: 31-40. https://doi.org/10.1016/j.energy.2017.11.159.
DOI: https://doi.org/10.1016/j.energy.2017.11.159
Google Scholar
Kightlinger, Diana. n.d. “Från linjär till cirkulär ekonomi i byggbranchen [From linear to circular economy in the building sector].” Accessed February 16, 2024. https://blog.bluebeam.com/se/circula r-economy-in-construction/.
Google Scholar
Knoth, Katrin, Selamawit Mamo Fufa, and Erlend Seilskjær. 2022. “Barriers, success factors, and perspectives for the reuse of construction products in Norway.” Journal of Cleaner Production 337: 130494. https://doi.org/10.1016/j.jclepro.2022.130494.
DOI: https://doi.org/10.1016/j.jclepro.2022.130494
Google Scholar
Kofman, Pieter. 2010. “Units, conversion factors and formulae for wood for energy.” Accessed April 6, 2024. http://woodenergy.ie/media/coford/content/publications/projectreports/cofordconnects/ht21.pdf.
Google Scholar
Konsumenternas energimarknadsbyrå (The consumers’ energy market bureau). n.d. “Är naturgas ett förnybart eller fossilt bränsle? [Is natural gas a renewable fuel or a fossil fuel?].” Accessed May 8, 2024. https://www.energimarknadsbyran.se/gas/gasmarknaden-i-sverige/fakta-om-naturgas-ochbiogas/vad-ar-naturgas/ar-naturgas-ett-fornybart-eller-fossilt-bransle/.
Google Scholar
Kucukvar, Murat, Gokhan Egilmez, and Omer Tatari. 2014. “Evaluating environmental impacts of alternative construction waste management approaches using supply-chain-linked life-cycle analysis.” Waste Management & Research 32(32): 500-508. https://doi.org/10.1177/0734242x14536457.
DOI: https://doi.org/10.1177/0734242X14536457
Google Scholar
Kucukvar, Murat, Gokhan Egilmez, and Omer Tatari. 2016. “Life Cycle Assessment and Optimization-Based Decision Analysis of Construction Waste Recycling for a LEED- Certified University Building.” Sustainability 8(1): 89. https://doi.org/10.390/su8010089.
DOI: https://doi.org/10.3390/su8010089
Google Scholar
Lahl, Uwe, and Barbara Zeschmar-Lahl. 2024. “More than 30 Years of PVC Recycling in Europe— A Critical Inventory” Sustainability 16: 3854. https://doi.org/10.3390/su16093854.
DOI: https://doi.org/10.3390/su16093854
Google Scholar
Llatas, Carman, Nuria Bizcocho, Bernardette Soust-Verdaguer, Maria Victoria Montes, and Rocio Quiñones. 2021. “An LCA-based model for assessing prevention versus non-prevention of construction waste in buildings.” Waste Management 126: 608-622. https://doi.org/10.1016/wasman.2021.03.047.
DOI: https://doi.org/10.1016/j.wasman.2021.03.047
Google Scholar
Maraqa, Musab Jamal, Rafael Sacks, and Sabrina Spatari. 2023. “Strategies for reducing construction waste using lean principles.” Resources, Conservation & Recycling Advances 19: 2667-3789. https://doi.org/10.1016/j.rcradv.2023.200180.
DOI: https://doi.org/10.1016/j.rcradv.2023.200180
Google Scholar
Marczak, Halina. 2022. “Energy inputs on the production of plastic products.” Journal of Ecological Engineering, 23(9): 146-156. https://doi.org/10.12911/22998993/151815.
DOI: https://doi.org/10.12911/22998993/151815
Google Scholar
Murray Ciarán J., Bärbel Müller-Karulis, Jacob Carstensen, Daniel J. Conley, Bo Gustafsson and Jesper Andersen. 2019. “Past, Present and Future Eutrophication Status of the Baltic Sea.” Frontiers in Marine Science 6. https://doi.org/10.3389/fmars.2019.00002.
DOI: https://doi.org/10.3389/fmars.2019.00002
Google Scholar
Naturvårdsverket. 2022. “Kartläggning av plastflöden i Sverige 2020 [Mapping of the flows of plastics in Sweden].” Accessed February 4, 2024. https://www.naturvardsverket.se/publikationer/7000/978-91-620-7038-0/.
Google Scholar
Naturvårdsverket. 2023A. “Åtgärder för att förebygga avfall [Measures to prevent waste generation].” Accessed February 5, 2024. https://www.naturvardsverket.se/4acc83/globalassets/vagledning/avfalloch-kretslopp/forebygga-avfall/atgarder-forebygga-avfall-information-erfarenheter-larandeexempel.pdf.
Google Scholar
Naturvårdsverket. 2023B. “Bygg- och rivningsavfall [Building and demolition wastes].” Accessed February 2, 2024. https://www.naturvardsverket.se/vagledning-och-stod/avfall/bygg--ochrivningsavfall/materialinventering-och-sortering/#E1464144996.
Google Scholar
Naturvårdsverket. 2023C. “Svaveldioxid, utsläpp till luft [Sulphur dioxide, emissions to air].” Accessed May 2, 2024. https://www.naturvardsverket.se/data-och-statistik/luft/utslapp/svaveldioxidutslapp-till-luft/.
Google Scholar
Naturvårdsverket. 2024A. “Klimatförändringar: En översikt [Climate changes: An overview].” Accessed February 2, 2024. https://www.naturvardsverket.se/amnesomraden/klimatforandringar/.
Google Scholar
Naturvårdsverket. 2024B. “Bedömning av när avfall upphör att vara avfall [Assessment of when wastes cease to be wastes].” Accessed February 5, 2024. https://www.naturvardsverket.se/vagledning-och-stod/avfall/bedomning-av-nar-avfall-upphor-attvara-avfall/.
Google Scholar
Naturvårdsverket. n.d.A. “Deponering av avfall [Landfilling of wastes].” Accessed February 5, 2024. https://www.naturvardsverket.se/vagledning-och-stod/avfall/deponering-av-avfall/.
Google Scholar
Naturvårdsverket. n.d.B. “Avfallsheirakin visar stegen vi behöver ta [The waste hierarchy is a pointer to the steps we need to take].” Accessed March 2, 2024. https://www.naturvardsverket.se/amnesomraden/avfall/pagaende-arbeten/avfallshierarkin-visarstegen-vi-behover-ta/.
Google Scholar
Naturvårdsverket. n.d.C. “Utsläpp i siffror [Emissions in numbers].” Accessed April 4, 2024. https://utslappisiffror.naturvardsverket.se/sv/Amnen/Organiska-amnen/Kvave/.
Google Scholar
Naturvårdsverket. n.d.D. “Biogena koldioxidutsläpp och klimatpåverkan [Biogenic carbon dioxide emissions and climate change].” Accessed April 4, 2024. https://www.naturvardsverket.se/amnesomraden/klimatomstallningen/omraden/klimatet-ochskogen/biogena-koldioxidutslapp-och-klimatpaverkan/.
Google Scholar
Ortiz-Rodiguez, Oscar, Jorgelina C. Pasqualino, and Francesc Castells. 2010. “Environmental performance of construction waste: Comparing three scenarios from a case study in Catalonia, Spain.” Waste Management 30: 646-654. https://doi.org/j.wasman.2009.11.013.
DOI: https://doi.org/10.1016/j.wasman.2009.11.013
Google Scholar
Papamichael, Iliana, Irene Voukkali, Pantelitsa Loizia, and Antonis Zorpas. 2023. “Construction and demolition waste framework of circular economy: A mini review.” Waste management & Research, 41 (12):1728-1740. https://doi.org/10.1177/0734242X231190804.
DOI: https://doi.org/10.1177/0734242X231190804
Google Scholar
Park, Won-Jun, Rakhyun Kim, Seungjun Roh, and Hoki Ban. 2020. “Identifying the Major Construction Wastes in the Building Construction Phase Based on Life Cycle Assessments.” Sustainability 12(19): 8096. https://doi.org/10.3390/su12198096.
DOI: https://doi.org/10.3390/su12198096
Google Scholar
Picvisa. n.d. “Plastics Basics: Types of plastics and which ones can be recycled.” Accessed May 12, 2024. https://picvisa.com/plastics-basics-types-recycled/
Google Scholar
Plasticseurope. 2021. “Overview plastic waste from building & Construction by polymer type and by recycling, energy recovery and disposal-1.” Accessed March 5, 2024. https://plasticseurope.org/wpcontent/uploads/2021/10/BC_Table.pdf.
Google Scholar
PRé Consultants, SimaPro 9.4. Amersfoort, PRé Consultants, Netherlands, Accessed in April-May 2024.
Google Scholar
Ragnsells. n.d.A “En hållbar lösning för träavfall. [A sustainable solution for wood waste].” Accessed February 5, 2024. https://www.ragnsells.se/vara-tjanster/material/tra/.
Google Scholar
Ragnsells. n.d.B “En hållbar lösning för metall [A sustainable solution for metal].” Accessed February 5, 2024. https://www.ragnsells.se/vara-tjanster/material/Metall/.
Google Scholar
Rehnström, Carina. Researcher, Department of Engineering and Chemical Sciences, Karlstad University, Sweden. Personal communication on April 25, 2024.
Google Scholar
Science History Institute. n.d. “Science of plastic.” Accessed April 11, 2024. http://www.sciencehistory.org/science-of-plastics/.
Google Scholar
Skanska. 2024. “Skanska i Sverige [Skanska in Sweden].” Accessed April 11, 2024. https://www.skanska.se/om-skanska/skanska-i-sverige/.
Google Scholar
Stenqvist, Erik. 2023. “Byggindustrin i Sverige: En översikt och betydelse [The building sector in Sweden: An overview and importance].” Accessed February 2, 2024. https://www.infrahub.se/2023/09/21/byggindustrin-i-sverige-en-oversikt-och-betydelse/.
Google Scholar
Strand Nyhlin, Martina, and Johanna Åfreds. 2022. Återbruk av byggmaterial [Reuse of building materials]. Stockholm: Svensk byggtjänst.
Google Scholar
Svenska FN-förbundet (Swedish UN Alliance). 2015. “Globala mål för hållbar utveckling [Sustainable development goals].” Accessed December 25, 2023. https://fn.se/globala-malen-forhallbar-utveckling/.
Google Scholar
Svenska FN-förbundet (Swedish UN Alliance). 2024. “Agenda 2030 och de globala målen för hållbar utveckling [Agenda 2030 and the sustainable development goals].” Accessed February 2, 2024. https://fn.se/vi-gor/vi-utbildar-och-informerar/fn-info/vad-gor-fn/fns-arbete-for-utveckling-ochfattigdomsbekampning/agenda2030-och-de-globala-malen/.
Google Scholar
Svensson, Anders, Madelene Almarstrand, Miranda Nilsson, Jakob Axelsson, Erik Timmermann, G Venkatesh. 2024. “Valorising agricultural residues into pellets in a sustainable circular bioeconomy: A brief, structured review of selected journal publications.” Problemy Ekorozwoju 19(2): 272-278. https://doi.org/10.35784/preko.5808.
DOI: https://doi.org/10.35784/preko.5808
Google Scholar
Swedish Environmental Research Institute. 2021. “New report shows continued problems with acidification and eutrophication in southern Sweden.” Accessed May 11, 2024. https://ivl.se/english/ivl/press/press-releases/2021-07-06-new-report-shows-continued-problemswith-acidification-and-eutrophication-in-southern-Sweden.html.
Google Scholar
Swiss Center for Life-Cycle Inventories. 2023. Technical Report. Ecoinvent database V3.10. Accessible at www.ecoinvent.org.
Google Scholar
Takano, Atsushi, Annette Hafner, Lauri Linkosalmi, Stephan Ott, Mark Hughes, and Stefan Winter. 2015. “Life cycle assessment of wood construction according to the normative standards.” Journal of Wood and Wood Products 73(3): 299-312. https://doi.org/10.1007/s00107-015-0890-4.
DOI: https://doi.org/10.1007/s00107-015-0890-4
Google Scholar
United Nations Environment Programme (UNEP). 2023. “Building Materials and the Climate: Constructing a New Future.” Accessed March 15, 2024. https://wedocs.unep.org/handle/20.500.11822/43293.
Google Scholar
Vattenfall. n.d. “Naturgas [Natural gas].” Accessed May 8, 2024. https://group.vattenfall.com/se/varverksamhet/vara-energislag/naturgas.
Google Scholar
Venkatesh, G. 2023A. “Environment, Economy, Society – The ‘body, mind and soul’ of sustainable building design.” Problemy Ekorozwoju 18(2): 249-253.
DOI: https://doi.org/10.35784/preko.4038
Google Scholar
Venkatesh, G. 2023B. “Eight Years to Go, to Meet the SDG Targets: Waste Management as Enabler and Enabled.” Chapter 12 in Book – Urban Metabolism and Climate Change: Perspective for Sustainable Cities. Edited by Rahul Bhadouria et al. Springer Nature. https://doi.org/10.1007/978-3031-29422-8.
DOI: https://doi.org/10.1007/978-3-031-29422-8_12
Google Scholar
Wang, Jiayuan, Zhengdao Li, and Vivian W.Y. Tam. 2015. “Identifying best design strategies for construction waste minimization.” Journal of Cleaner Production 92: 237–247. https://doi.org/10.1016/j.jclepro.2014.12.076.
DOI: https://doi.org/10.1016/j.jclepro.2014.12.076
Google Scholar