2020
DOI: 10.1016/j.jclepro.2019.118658
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Modelling global material stocks and flows for residential and service sector buildings towards 2050

Abstract: Residential buildings and service sector buildings have an important contribution to climate change, directly via energy use in these buildings and indirectly through construction activities and the production and disposal of buildings materials. In this paper, we introduce a model that looks at total global building stock for 26 regions between 1970 and 2050 and calculates the floor space and building materials both in new buildings and in demolished buildings. For residential buildings, we build upon the wor… Show more

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Cited by 133 publications
(81 citation statements)
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“…Continuing on the earlier work by [10,11], Heeren and Fishman summarized 301 building material data points across 21 countries [12]. Using the currently available building data, Marinova et al (2020) and Deetman et al (2020) were able to estimate global building material stocks and flows for residential and service sector buildings [13,14]. MĂŒller, (2006), established the cyclical behavior of demolition and construction materials flows, with the availability of demolition waste lagging behind the construction material demand in size and time [15].…”
Section: Building Materials Stock Dynamics and Reuse Potentialmentioning
confidence: 99%
“…Continuing on the earlier work by [10,11], Heeren and Fishman summarized 301 building material data points across 21 countries [12]. Using the currently available building data, Marinova et al (2020) and Deetman et al (2020) were able to estimate global building material stocks and flows for residential and service sector buildings [13,14]. MĂŒller, (2006), established the cyclical behavior of demolition and construction materials flows, with the availability of demolition waste lagging behind the construction material demand in size and time [15].…”
Section: Building Materials Stock Dynamics and Reuse Potentialmentioning
confidence: 99%
“…Data source of building material intensity: Heeren and Fishman (2019), 3 Huang et al (2018) 4 Marinova et al (2020); 5 data source of annual constructed building area: Deetman et al (2020). 6 can help assess the environmental impacts associated with all the stages of the life of building materials (Figure 3). Material, energy usage, and emissions inventory data from the various stages of building materials need to be captured, either from case investigations or through building material databases such as Ecointent, 25 ELCD (European Life Cycle Database), 26 and US LCI (US Life Cycle Inventory).…”
Section: Life Cycle Thinking For Building Materialsmentioning
confidence: 99%
“…Future metal and material demand has been projected and studied from the perspective of different macro-level scenarios (Deetman et al, 2019(Deetman et al, , 2018Elshkaki et al, 2018Elshkaki et al, , 2016Elshkaki and Graedel, 2013;Hatayama et al, 2010;Schipper et al, 2018;van der Voet et al, 2018;Watari et al, 2019), but those assessments are not linked to resource efficiency, but represent a very important starting point for our work, as we can link our scenarios and data to these studies.…”
Section: Biophysical Modelling Of Materials Efficiencymentioning
confidence: 99%
“…In the simplest case, this would just mean that the regression model equations are replaced by formatted IAM model output. Such approach has already been lined out for the five materials Cu, Co, Li, Nd, and and Ta, where IMAGE model output for the use phase was converted to material in-use stocks, inflows, and outflows of the use phase (Deetman et al, 2019(Deetman et al, , 2018. Also, the implementation of the material cycle consequences of electricity generation installation from MESSAGE is already under way.…”
Section: Interface To Other Modelling Frameworkmentioning
confidence: 99%