Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 155 checked references that resolve
resolves10.1073/pnas.1613773114Global socioeconomic material stocks rise 23-fold over the 20th century and require half of annual resource use
resolves10.1111/jiec.12244How Circular is the Global Economy?: An Assessment of Material Flows, Waste Production, and Recycling in the European Union and the World in 2005
resolves10.1016/j.gloenvcha.2018.07.003From resource extraction to outflows of wastes and emissions: The socioeconomic metabolism of the global economy, 1900–2015
resolves10.1111/jiec.12723Geospatial Characterization of Material Stock in the Residential Sector of a Latin‐American City
resolves10.1111/jiec.12271Urban Mining's Potential to Relieve China's Coming Resource Crisis
resolves10.1016/j.wasman.2015.03.036Inventorying Toronto’s single detached housing stocks to examine the availability of clay brick for urban mining
resolves10.1021/acs.est.5b05790Stochastic Analysis and Forecasts of the Patterns of Speed, Acceleration, and Levels of Material Stock Accumulation in Society
resolves10.1016/j.resconrec.2012.05.003Analysis of aluminum stocks and flows in mainland China from 1950 to 2009: Exploring the dynamics driving the rapid increase in China's aluminum production
resolves10.1021/es305108pCentennial Evolution of Aluminum In-Use Stocks on Our Aluminized Planet
resolves10.1111/jiec.12211The Growth of Urban Building Stock: Unintended Lock‐in and Embedded Environmental Effects
resolves10.1016/j.enbuild.2017.04.016Using a segmented dynamic dwelling stock model for scenario analysis of future energy demand: The dwelling stock of Norway 2016–2050
resolves10.1016/j.resconrec.2016.07.003Geospatial characterization of building material stocks for the life cycle assessment of end-of-life scenarios at the urban scale
resolves10.1021/es403506aModeling Metal Stocks and Flows: A Review of Dynamic Material Flow Analysis Methods
resolves10.1080/09613210903186901Exploring built environment stock metabolism and sustainability by systems analysis approaches
resolves10.1080/09613210903189467Towards a very low-energy building stock: modelling the US commercial building sector to support policy and innovation planning
resolves10.1080/09613210802184312Towards modelling of construction, renovation and demolition activities: Norway's dwelling stock, 1900–2100
resolves10.1016/j.enbuild.2016.05.100Dynamic building stock modelling: Application to 11 European countries to support the energy efficiency and retrofit ambitions of the EU
resolves10.1021/es400069bDynamic Analysis of Global Copper Flows. Global Stocks, Postconsumer Material Flows, Recycling Indicators, and Uncertainty Evaluation
resolves10.1021/es900845vLinking Material Flow Analysis and Resource Policy via Future Scenarios of In-Use Stock: An Example for Copper
resolves10.1111/jiec.12284The Weight of Society Over Time and Space: A Comprehensive Account of the Construction Material Stock of Japan, 1945–2010
resolves10.1007/s11625-012-0196-yAnalysis of material stock accumulation in China’s infrastructure and its regional disparity
resolves10.1111/jiec.12395Prospecting and Exploring Anthropogenic Resource Deposits: The Case Study of Vienna's Subway Network
resolves10.1111/jiec.12126Estimates of Lost Material Stock of Buildings and Roads Due to the Great East Japan Earthquake and Tsunami
resolves10.1016/j.ecolecon.2018.09.010Integrating Material Stock Dynamics Into Economy-Wide Material Flow Accounting: Concepts, Modelling, and Global Application for 1900–2050
resolves10.1016/j.resconrec.2012.12.013Materials demand and environmental impact of buildings construction and demolition in China based on dynamic material flow analysis
resolves10.1016/j.wasman.2006.10.009Where will large amounts of materials accumulated within the economy go? – A material flow analysis of construction minerals for Japan
resolves10.13189/ujms.2016.040204The Metabolism Analysis of Urban Building by 4d-GIS – A Useful Method for New-type Urbanization Planning in China
resolves10.3390/rs5063057Potential of NPP-VIIRS Nighttime Light Imagery for Modeling the Regional Economy of China
resolves10.3390/rs6021705Evaluating the Ability of NPP-VIIRS Nighttime Light Data to Estimate the Gross Domestic Product and the Electric Power Consumption of China at Multiple Scales: A Comparison with DMSP-OLS Data
resolves10.1021/ez500093sRegional-Scale Estimation of Electric Power and Power Plant CO<sub>2</sub> Emissions Using Defense Meteorological Satellite Program Operational Linescan System Nighttime Satellite Data
resolves10.3390/en3121895Creating a Global Grid of Distributed Fossil Fuel CO2 Emissions from Nighttime Satellite Imagery
resolves10.1016/j.resconrec.2016.04.001Feasibility of a new-generation nighttime light data for estimating in-use steel stock of buildings and civil engineering infrastructures
resolves10.1021/acs.est.5b00408Dynamic Material Flow Modeling: An Effort to Calibrate and Validate Aluminum Stocks and Flows in Austria
resolves10.1109/ICMSE.2014.6930300Economic output and social stock of steel: Evidence from dynamic material flow analysis and statistical time series analysis
resolves10.2355/isijinternational.50.1503Prediction Model of Global Demand for Iron Source by Utility of Stock Hypothesis—Verification of Predictive Power and Outlook for Demand to 2050—
resolves10.2320/jinstmet.72.812Assessment of Recycling Potential of Aluminum in Japan, the United States, Europe and China
resolves10.1021/es100044nOutlook of the World Steel Cycle Based on the Stock and Flow Dynamics
resolves10.1021/es201904cMoving Toward the Circular Economy: The Role of Stocks in the Chinese Steel Cycle
resolves10.1016/j.wasman.2009.06.011Framework for estimating potential wastes and secondary resources accumulated within an economy – A case study of construction minerals in Japan
resolves10.1021/es202211wUnearthing Potentials for Decarbonizing the U.S. Aluminum Cycle
resolves10.1016/j.jclepro.2012.05.041To prospect an urban mine – assessing the metal recovery potential of infrastructure “cold spots” in Norrköping, Sweden
resolves10.1111/jiec.12739Tracking Construction Material over Space and Time: Prospective and Geo‐referenced Modeling of Building Stocks and Construction Material Flows
resolves10.1016/j.jclepro.2015.05.071Urban infrastructure mines: on the economic and environmental motives of cable recovery from subsurface power grids
resolves10.1007/s10163-015-0460-1Evaluation of current material stock and future demolition waste for urban residential buildings in Jakarta and Bandung, Indonesia: embodied energy and CO2 emission analysis
resolves10.1111/jiec.12327Estimating Materials Stocked by Land‐Use Type in Historic Urban Buildings Using Spatio‐Temporal Analytical Tools
resolves10.1111/jiec.12186Greening China's Wastewater Treatment Infrastructure in the Face of Rapid Development: Analysis Based on Material Stock and Flow through 2050
resolves10.1111/jiec.12383Weight under Steel Wheels: Material Stock and Flow Analysis of High‐Speed Rail in China
resolves10.1016/j.resconrec.2016.09.010Material stock's overburden: Automatic spatial detection and estimation of domestic extraction and hidden material flows
resolves10.1162/1088198042442342Long‐term Coordination of Timber Production and Consumption Using a Dynamic Material and Energy Flow Analysis
resolves10.1111/jiec.12890A general data model for socioeconomic metabolism and its implementation in an industrial ecology data commons prototype
resolves10.1111/jiec.12817Transferability of Material Composition Indicators for Residential Buildings: A Conceptual Approach Based on a German‐Japanese Comparison
The 40 references without a DOI — listed, not checked
no DOI — not checkedEconomic Geography
no DOI — not checkedThe Death and Life of Great American Cities
no DOI — not checkedThe Economy of Cities
no DOI — not checkedWeng, C.L.; Yashiro, T. Urban Mining: The City as a Source for Re-Usable Building Materials. 2003.
no DOI — not checkedScience and Technology Agency Tokyo.Government of Japan. Study for Steel Stock in Japan (in Japanese), 1985.
no DOI — not checkedref47/cit47
no DOI — not checkedErgun, D. The Potential Environmental Benefits of Reusable and Recyclable Materials Stocks in Toronto’s Single-Detached Housing, 2014.
no DOI — not checkedQuinn, D.; Fernandez, J. E. Estimating Material Usage of Road Infrastructure in US Cities.Fourth National Conference of IBPSA-USA, August 11 – 13, 2010. New York City, New York 2010.
no DOI — not checkedGlöser, S.; Soulier, M.; Espinoza, L. T.; Faulstich, M. Using Dynamic Stock & Flow Models for Global and Regional Material and Substance Flow Analysis in the Field of Industrial Ecology: The Example of a Global Copper Flow Model.The 31st International Conference of the System Dynamics Society. Cambridge, Massachusetts USA 2013.
no DOI — not checkedref76/cit76
no DOI — not checkedref77/cit77
no DOI — not checkedref88/cit88
no DOI — not checkedBellstedt, C. Material Flow Analysis for a Circular Economy Development, September, 2015.
no DOI — not checkedMurase, T.; Kawase, R.; Matsuoka, Y. Material Stock and Waste Generation by Human Activities Over the Past 100 Years.The Third World Congress of the Environmental and Resource Economists. Kyoto, Japan 2006.
no DOI — not checkedVos, S. E.; de Keijzer, E. E.; Mulder, G. G. C.; Bonte, H.; Bastein, A. G. T. M. Een Verkenning van de Milieu-Impact van Circulair Bouwen in de Woning- En Utiliteitssector (TNO); 2017.
no DOI — not checkedKeijzer, E.; Verstraeten-Jochemsen, J.; Yu, V.; Leeuwen, S. Van; Visschedijk, A.; Vos-Effting, S. de. Bottom-up Policy Support: Using a Construction Materials Model to Identify and Quick Scan Circular Opportunities. InHISER conference 2017. Delft, 21–23 June 2017, Conference Proceedings, 2017; pp 221–225.
no DOI — not checkedref117/cit117
no DOI — not checkedref118/cit118
no DOI — not checkedref119/cit119
no DOI — not checkedref120/cit120
no DOI — not checkedref121/cit121
no DOI — not checkedref122/cit122
no DOI — not checkedMarcellus-zamora, K. A. An Evaluation of Material Stocks and Flows Found during Construction and Demolition Activities in the Philadelphia Region of the United States, 2015.
no DOI — not checkedBuildings as Material Banks (BAMB). Material Passports https://www.bamb2020.eu/topics/materials-passports/ (accessed June 10, 2018).
no DOI — not checkedMaterial Stock Accumulation in Society : Modeling, Forecasts, and Socio-Economic Drivers
no DOI — not checkedLong-Term Production, Energy Consumption and CO2 Emission Scenarios for the Worldwide Iron and Steel Industry
no DOI — not checkedref155/cit155
no DOI — not checkedAluminium Recycling of the Norwegian Building Stock System
no DOI — not checkedBrunner, P. H.; Baccini, P.; Deistler, M.; Lahner, T. Materials Accounting as a Tool for Decision Making in Environmental Policy: Mac TEmPo Summary Report.4th Eur. Comm. Program. Environ. Clim. Res. Area III, Econ. Soc. Asp. Environ. Inst. Water Qual. Waste Manag. Vienna Univ. Technol.1998.
no DOI — not checkedref168/cit168
no DOI — not checkedEnvironnement Bruxelles, R. compilé par B. E. et I. Métabolisme de La Région De Bruxelles-Capitale: Identification Des Flux, Acteurs et Activités Économiques Sur Le Territoire et Pistes de Réflexion Pour l’optimization Des Resources, 2015.
no DOI — not checkedRouvreau, L.; Michel, P.; Serrand, M.; Montfort-Climent, D.; Jayr, E.; Papinot, P.E. Rapport Final Du Projet ANR ASURET : Analyse de Flux de Matière Du Secteur de La Construction à l’échelle de l’ouvrage et Du Territoire, 2012; p 132.
no DOI — not checkedLa Dimension Matérielle de l’urbanisation - Flux et Stocks de Matériaux de Construction En Ile-de-France
no DOI — not checkedTanikawa, H.; Hashimoto, S.; Moriguchi, Y. Estimation of Material Stock in Urban Civil Infrastructures and Buildings for the Prediction of Waste Generation.Proc. Fifth Int. Conf. Ecobalance, 6–8 November 20022002, pp 1–4.
no DOI — not checkedref175/cit175
no DOI — not checkedref176/cit176
no DOI — not checkedWoodframe Housing Durability and Disaster Issues
no DOI — not checkedPathways to Urban Sustainability: Challenges and Opportunities for the United States
no DOI — not checkedref185/cit185
no DOI — not checkedBoulding, K. E.The Economics of the Coming Spaceship Earth. In Environmental Quality in a Growing Economy; Jarrett, H., Ed. Johns Hopkins University Press for Resources for the Future: Baltimore, MD, 1966; pp 3–14.
checked 2026-07-25 — re-checked daily as this page is visited;
titles and statuses come from Crossref and DataCite and are not part of the signed record
Both snippets point at the live badge image and link back to this page. The
badge re-renders from the daily check, so an embed never goes stale by more than a day of visits.