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Erschienen in: The International Journal of Life Cycle Assessment 5/2013

01.06.2013 | INPUT-OUTPUT AND HYBRID LCA

Towards a triple bottom-line sustainability assessment of the U.S. construction industry

verfasst von: Murat Kucukvar, Omer Tatari

Erschienen in: The International Journal of Life Cycle Assessment | Ausgabe 5/2013

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Abstract

Purpose

The construction industry has considerable impacts on the environment, economy, and society. Although quantifying and analyzing the sustainability implications of the built environment is of great importance, it has not been studied sufficiently. Therefore, the overarching goal of this study is to quantify the overall environmental, economic, and social impacts of the U.S. construction sectors using an economic input–output-based sustainability assessment framework.

Methods

In this research, the commodity-by-industry supply and use tables published by the U.S. Bureau of Economic Analysis, as part of the International System of National Accounts, are merged with a range of environmental, economic, and social metrics to develop a comprehensive sustainability assessment framework for the U.S. construction industry. After determining these sustainability assessment metrics, the direct and indirect sustainability impacts of U.S construction sectors have been analyzed from a triple bottom-line perspective.

Results

When analyzing the total sustainability impacts by each construction sector, “Residential Permanent Single and Multi-Family Structures" and "Other Non-residential Structures" are found to have the highest environmental, economic, and social impacts in comparison with other construction sectors. The analysis results also show that indirect suppliers of construction sectors have the largest sustainability impacts compared with on-site activities. For example, for all U.S. construction sectors, on-site construction processes are found to be responsible for less than 5 % of total water consumption, whereas about 95 % of total water use can be attributed to indirect suppliers. In addition, Scope 3 emissions are responsible for the highest carbon emissions compared with Scopes 1 and 2. Therefore, using narrowly defined system boundaries by ignoring supply chain-related impacts can result in underestimation of triple bottom-line sustainability impacts of the U.S. construction industry.

Conclusions

Life cycle assessment (LCA) studies that consider all dimensions of sustainability impacts of civil infrastructures are still limited, and the current research is an important attempt to analyze the triple bottom-line sustainability impacts of the U.S. construction sectors in a holistic way. We believe that this comprehensive sustainability assessment model will complement previous LCA studies on resource consumption of U.S. construction sectors by evaluating them not only from environmental standpoint, but also from economic and social perspectives.

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Literatur
Zurück zum Zitat Bilec M, Ries R, Matthews HS, Sharrard AL (2006) Example of a hybrid life-cycle assessment of construction processes. J Infrast Syst 12:207–215CrossRef Bilec M, Ries R, Matthews HS, Sharrard AL (2006) Example of a hybrid life-cycle assessment of construction processes. J Infrast Syst 12:207–215CrossRef
Zurück zum Zitat Blackhurst BM, Hendrickson CT, Vidal JSI (2010) Direct and indirect water withdrawals for U.S. industrial sectors. Environ Sci Technol 44:2126–2130CrossRef Blackhurst BM, Hendrickson CT, Vidal JSI (2010) Direct and indirect water withdrawals for U.S. industrial sectors. Environ Sci Technol 44:2126–2130CrossRef
Zurück zum Zitat Eurostat (2008) Eurostat manual of supply, use and input–output tables. European Commission, Luxembourg Eurostat (2008) Eurostat manual of supply, use and input–output tables. European Commission, Luxembourg
Zurück zum Zitat Finnveden G, Hauschild MZ, Ekvall T, Guinée J, Heijungs R, Hellweg S, Koehler A (2009) Recent developments in life cycle assessment. J Environ Manage 91:1–21CrossRef Finnveden G, Hauschild MZ, Ekvall T, Guinée J, Heijungs R, Hellweg S, Koehler A (2009) Recent developments in life cycle assessment. J Environ Manage 91:1–21CrossRef
Zurück zum Zitat Foran B, Lenzen M, Dey C (2005) A triple bottom line analysis of the Australian economy. In Csiro (ed) Balancing Act. 1:1–111 Foran B, Lenzen M, Dey C (2005) A triple bottom line analysis of the Australian economy. In Csiro (ed) Balancing Act. 1:1–111
Zurück zum Zitat Forsberg A, Malmborg F (2004) Tools for environmental assessment of the built environment. Build Environ 39:223–228CrossRef Forsberg A, Malmborg F (2004) Tools for environmental assessment of the built environment. Build Environ 39:223–228CrossRef
Zurück zum Zitat Gradel T, Allenby B (2009) Industrial ecology and sustainable engineering, 3rd edn. Prentice Hall, Upper Saddle River, NJ Gradel T, Allenby B (2009) Industrial ecology and sustainable engineering, 3rd edn. Prentice Hall, Upper Saddle River, NJ
Zurück zum Zitat Guinée JB, Heijungs R, Huppes G, Zamagni A, Masoni P, Buonamici R, Ekvall T, Rydberg T (2011) Life cycle assessment: past, present and future. Environ Sci Technol 45:90–96CrossRef Guinée JB, Heijungs R, Huppes G, Zamagni A, Masoni P, Buonamici R, Ekvall T, Rydberg T (2011) Life cycle assessment: past, present and future. Environ Sci Technol 45:90–96CrossRef
Zurück zum Zitat Haapio A, Viitaniemi P (2008) A critical review of building environmental assessment tools. Env Imp Asses Rev 28:469–482CrossRef Haapio A, Viitaniemi P (2008) A critical review of building environmental assessment tools. Env Imp Asses Rev 28:469–482CrossRef
Zurück zum Zitat Hendrickson CT, Horvath A (2000) Resource use and environmental emissions of US construction sectors. J Constr Eng Manage 126:38–44CrossRef Hendrickson CT, Horvath A (2000) Resource use and environmental emissions of US construction sectors. J Constr Eng Manage 126:38–44CrossRef
Zurück zum Zitat Hendrickson CT, Lave LB, Matthews S (2005) Environmental life cycle assessment of goods and services: an input–output approach, 1st edn. RFF Press, Washington, DC Hendrickson CT, Lave LB, Matthews S (2005) Environmental life cycle assessment of goods and services: an input–output approach, 1st edn. RFF Press, Washington, DC
Zurück zum Zitat Hertwich EG, Peters GP (2009) Carbon footprint of nations: a global trade-linked analysis. Environ Sci Technol 43:6414–6420CrossRef Hertwich EG, Peters GP (2009) Carbon footprint of nations: a global trade-linked analysis. Environ Sci Technol 43:6414–6420CrossRef
Zurück zum Zitat Horvath A (2004) Construction materials and the environment. Annu Rev Environ Resour 29:181–2004CrossRef Horvath A (2004) Construction materials and the environment. Annu Rev Environ Resour 29:181–2004CrossRef
Zurück zum Zitat Huang YA, Lenzen M, Weber C, Murray J, Matthews HS (2009a) The role of input–output analysis for the screening of corporate carbon footprints. Econ Syst Res 21:217–242CrossRef Huang YA, Lenzen M, Weber C, Murray J, Matthews HS (2009a) The role of input–output analysis for the screening of corporate carbon footprints. Econ Syst Res 21:217–242CrossRef
Zurück zum Zitat Huang YA, Weber C, Matthews HS (2009b) Categorization of scope 3 emissions for streamlined enterprise carbon footprinting. Environ Sci Technol 43:8509–8515CrossRef Huang YA, Weber C, Matthews HS (2009b) Categorization of scope 3 emissions for streamlined enterprise carbon footprinting. Environ Sci Technol 43:8509–8515CrossRef
Zurück zum Zitat Huppes G, Koning A, Suh S, Heijungs R, Van Oers L, Guinee JB (2008) Environmental impacts of consumption in the European Union: high-resolution input–output tables with detailed environmental extensions. J Ind Ecol 10:129–146CrossRef Huppes G, Koning A, Suh S, Heijungs R, Van Oers L, Guinee JB (2008) Environmental impacts of consumption in the European Union: high-resolution input–output tables with detailed environmental extensions. J Ind Ecol 10:129–146CrossRef
Zurück zum Zitat Joshi S (2000) Product environmental life cycle assessment using input–output techniques. J Ind Ecol 3:95–120CrossRef Joshi S (2000) Product environmental life cycle assessment using input–output techniques. J Ind Ecol 3:95–120CrossRef
Zurück zum Zitat Junnila S, Horvath A (2003) Life-cycle environmental effects of an office building. J Infrast Syst 9:157–166CrossRef Junnila S, Horvath A (2003) Life-cycle environmental effects of an office building. J Infrast Syst 9:157–166CrossRef
Zurück zum Zitat Klöpffer W (2008) Life cycle sustainability assessment of products. Int J Life Cycle Assess 13:89–95CrossRef Klöpffer W (2008) Life cycle sustainability assessment of products. Int J Life Cycle Assess 13:89–95CrossRef
Zurück zum Zitat Lenzen M, Murray S (2001) A modified ecological footprint method and its application to Australia. Ecol Econ 37:229–255CrossRef Lenzen M, Murray S (2001) A modified ecological footprint method and its application to Australia. Ecol Econ 37:229–255CrossRef
Zurück zum Zitat Lenzen M, Dey CJ (2002) Economic, energy and emissions impacts of some consumer choices, technologies and government outlays. Energ Econ 24:377–403CrossRef Lenzen M, Dey CJ (2002) Economic, energy and emissions impacts of some consumer choices, technologies and government outlays. Energ Econ 24:377–403CrossRef
Zurück zum Zitat Lenzen M, Murray SA, Korte B, Dey CJ (2003) Environmental impact assessment including indirect effects: a case study using input–output analysis. Environ Imp Assess Rev 23:263–282CrossRef Lenzen M, Murray SA, Korte B, Dey CJ (2003) Environmental impact assessment including indirect effects: a case study using input–output analysis. Environ Imp Assess Rev 23:263–282CrossRef
Zurück zum Zitat Lenzen M, Pade L, Munksgaard J (2004) CO2 multipliers in single-region and multi-region input–output models. Econ Syst Res 16:391–412CrossRef Lenzen M, Pade L, Munksgaard J (2004) CO2 multipliers in single-region and multi-region input–output models. Econ Syst Res 16:391–412CrossRef
Zurück zum Zitat Leontief W (1936) Quantitative input and output relations in the economic system of the United States. Rev Econ Stat 18:105–125CrossRef Leontief W (1936) Quantitative input and output relations in the economic system of the United States. Rev Econ Stat 18:105–125CrossRef
Zurück zum Zitat Leontief W (1970) Environmental repercussions and the economic structure: an input–output approach. Rev Econ Stat 52:262–277CrossRef Leontief W (1970) Environmental repercussions and the economic structure: an input–output approach. Rev Econ Stat 52:262–277CrossRef
Zurück zum Zitat Lippiat B (2007) BEES 4.0: Building for environmental and economic sustainability technical manual and user guide. National Institute of Standards and Technology, Gaithersburg, MD, USA Lippiat B (2007) BEES 4.0: Building for environmental and economic sustainability technical manual and user guide. National Institute of Standards and Technology, Gaithersburg, MD, USA
Zurück zum Zitat Matthews HS, Hendrickson CT, Weber CL (2008) The importance of carbon footprint estimation boundaries. Environ Sci Technol 42:5839–5842CrossRef Matthews HS, Hendrickson CT, Weber CL (2008) The importance of carbon footprint estimation boundaries. Environ Sci Technol 42:5839–5842CrossRef
Zurück zum Zitat McDonald GW, Patterson MG (2004) Ecological footprints and interdependencies of New Zealand regions. Ecol Econ 50:49–67CrossRef McDonald GW, Patterson MG (2004) Ecological footprints and interdependencies of New Zealand regions. Ecol Econ 50:49–67CrossRef
Zurück zum Zitat Miller R, Blair P (2009) Input–output analysis: foundations and extensions, 2nd edn. Cambridge University Place, UKCrossRef Miller R, Blair P (2009) Input–output analysis: foundations and extensions, 2nd edn. Cambridge University Place, UKCrossRef
Zurück zum Zitat NRC (2009) Sustainable critical infrastructure systems: a framework for meeting 21st century imperatives. Toward sustainable critical infrastructure systems: framing the challenges workshop committee. National Research Council, Washington, DC NRC (2009) Sustainable critical infrastructure systems: a framework for meeting 21st century imperatives. Toward sustainable critical infrastructure systems: framing the challenges workshop committee. National Research Council, Washington, DC
Zurück zum Zitat Ochoa L, Hendrickson CT, Matthews HS (2002) Economic input–output life-cycle assessment of U.S. residential buildings. J Infrast Syst 8:132–138CrossRef Ochoa L, Hendrickson CT, Matthews HS (2002) Economic input–output life-cycle assessment of U.S. residential buildings. J Infrast Syst 8:132–138CrossRef
Zurück zum Zitat Rebitzer G, Ekvall T, Frischknecht R, Hunkeler D, Norris G, Rydberg T, Schmidt WP (2004) Life cycle assessment part 1: framework, goal and scope definition, inventory analysis, and applications. Environ Int 30(5):701–720CrossRef Rebitzer G, Ekvall T, Frischknecht R, Hunkeler D, Norris G, Rydberg T, Schmidt WP (2004) Life cycle assessment part 1: framework, goal and scope definition, inventory analysis, and applications. Environ Int 30(5):701–720CrossRef
Zurück zum Zitat Seo S, Hwang Y (2001) Estimation of CO2 emissions in life cycle of residential buildings. J Constr Eng Manage 127(5):414–418CrossRef Seo S, Hwang Y (2001) Estimation of CO2 emissions in life cycle of residential buildings. J Constr Eng Manage 127(5):414–418CrossRef
Zurück zum Zitat Sharrard AL, Matthews HS, Ries RJ (2005) Estimating construction project environmental effects using an input–output-based hybrid life-cycle assessment model. J Infrast Syst 14:327–336CrossRef Sharrard AL, Matthews HS, Ries RJ (2005) Estimating construction project environmental effects using an input–output-based hybrid life-cycle assessment model. J Infrast Syst 14:327–336CrossRef
Zurück zum Zitat Suh S, Lenzen M, Treloar GJ, Hondo H, Horvath A, Huppes G et al (2004) System boundary selection in life-cycle inventories using hybrid approaches. Environ Sci Technol 38(3):657–664CrossRef Suh S, Lenzen M, Treloar GJ, Hondo H, Horvath A, Huppes G et al (2004) System boundary selection in life-cycle inventories using hybrid approaches. Environ Sci Technol 38(3):657–664CrossRef
Zurück zum Zitat Suh S, Lippiat BC (2012) Framework for hybrid life cycle inventory databases—a case study on the Building for Environmental and Economic Sustainability (BEES) database. Int J Life Cycle Assess 17:604–612CrossRef Suh S, Lippiat BC (2012) Framework for hybrid life cycle inventory databases—a case study on the Building for Environmental and Economic Sustainability (BEES) database. Int J Life Cycle Assess 17:604–612CrossRef
Zurück zum Zitat Tatari O, Kucukvar M (2012a) Eco-efficiency of construction materials: a data envelopment analysis. J Constr Eng Manage 138(6):733–741CrossRef Tatari O, Kucukvar M (2012a) Eco-efficiency of construction materials: a data envelopment analysis. J Constr Eng Manage 138(6):733–741CrossRef
Zurück zum Zitat Tatari O, Kucukvar M (2012b) Sustainability assessment of U.S. construction industry: an ecosystems perspective. J Constr Eng Manage 138(8):918–922CrossRef Tatari O, Kucukvar M (2012b) Sustainability assessment of U.S. construction industry: an ecosystems perspective. J Constr Eng Manage 138(8):918–922CrossRef
Zurück zum Zitat Tatari O, Nazzal M, Kucukvar M (2012) Comparative sustainability assessment of warm-mix asphalts: a thermodynamic based hybrid life cycle analysis. Res Conser Recy 58:18–24CrossRef Tatari O, Nazzal M, Kucukvar M (2012) Comparative sustainability assessment of warm-mix asphalts: a thermodynamic based hybrid life cycle analysis. Res Conser Recy 58:18–24CrossRef
Zurück zum Zitat UN (1999) Studies in methods: handbook of national accounting. United Nations Department for Economic and Social Affairs, Statistics Division, New York, USA UN (1999) Studies in methods: handbook of national accounting. United Nations Department for Economic and Social Affairs, Statistics Division, New York, USA
Zurück zum Zitat UNEP (2012) 21 Issues for the 21st century: result of the UNEP foresight process on emerging environmental issues. United Nations Environment Programme, Nairobi, Kenya UNEP (2012) 21 Issues for the 21st century: result of the UNEP foresight process on emerging environmental issues. United Nations Environment Programme, Nairobi, Kenya
Zurück zum Zitat U.S. EPA (2010) Buildings and the environment: a statistical summary. US Environmental Protection Agency, Washington, DC, USA U.S. EPA (2010) Buildings and the environment: a statistical summary. US Environmental Protection Agency, Washington, DC, USA
Zurück zum Zitat USGBC (2009) LEED 2009 for new construction and major renovations rating system. United States Green Building Council, Washington DC, USA USGBC (2009) LEED 2009 for new construction and major renovations rating system. United States Green Building Council, Washington DC, USA
Zurück zum Zitat Wachsmann U, Wood R, Lenzen M, Schaeffer R (2009) Structural decomposition of energy use in Brazil from 1970 to 1996. App Energ 86:578–587CrossRef Wachsmann U, Wood R, Lenzen M, Schaeffer R (2009) Structural decomposition of energy use in Brazil from 1970 to 1996. App Energ 86:578–587CrossRef
Zurück zum Zitat Wackernagel M (2009) Methodological advancements in footprint analysis. Ecol Econ 68:1925–1927CrossRef Wackernagel M (2009) Methodological advancements in footprint analysis. Ecol Econ 68:1925–1927CrossRef
Zurück zum Zitat Waehrer GM, Dong XS, Miller T, Haile E, Men Y (2007) Costs of occupational injuries in construction in the United States. Accid Analy Prev 39:1258–1266CrossRef Waehrer GM, Dong XS, Miller T, Haile E, Men Y (2007) Costs of occupational injuries in construction in the United States. Accid Analy Prev 39:1258–1266CrossRef
Zurück zum Zitat Weber CL, Matthews HS (2007) Embodied emissions in U.S. international trade: 1997–2004. Environ Sci Technol 41:4875–4881CrossRef Weber CL, Matthews HS (2007) Embodied emissions in U.S. international trade: 1997–2004. Environ Sci Technol 41:4875–4881CrossRef
Zurück zum Zitat Wiedmann T, Lenzen M (2008) Unraveling the impacts of supply chains: a new triple-bottom-line accounting approach and software tool. Env Man Acc Clean Prod 24:65–90CrossRef Wiedmann T, Lenzen M (2008) Unraveling the impacts of supply chains: a new triple-bottom-line accounting approach and software tool. Env Man Acc Clean Prod 24:65–90CrossRef
Zurück zum Zitat Wiedmann T, Lenzen M, Barrett J (2009) Companies on the scale: comparing and benchmarking the sustainability performance of businesses. J Ind Ecol 13:361–383CrossRef Wiedmann T, Lenzen M, Barrett J (2009) Companies on the scale: comparing and benchmarking the sustainability performance of businesses. J Ind Ecol 13:361–383CrossRef
Zurück zum Zitat Wiedmann T, Suh S, Feng K, Lenzen M, Acquaye A, Scott K, Barrett JR (2011) Application of hybrid life cycle approaches to emerging energy technologies—the case of wind power in the UK. Environ Sci Technol 45:5900–5907CrossRef Wiedmann T, Suh S, Feng K, Lenzen M, Acquaye A, Scott K, Barrett JR (2011) Application of hybrid life cycle approaches to emerging energy technologies—the case of wind power in the UK. Environ Sci Technol 45:5900–5907CrossRef
Zurück zum Zitat Williams E (2004) Energy intensity of computer manufacturing: hybrid assessment combining process and economic input–output methods. Environ Sci Technol 38:6166–6174CrossRef Williams E (2004) Energy intensity of computer manufacturing: hybrid assessment combining process and economic input–output methods. Environ Sci Technol 38:6166–6174CrossRef
Zurück zum Zitat Wood R, Dey CJ (2009) Australia’s carbon footprint. Econ Syst Res 21:243–266CrossRef Wood R, Dey CJ (2009) Australia’s carbon footprint. Econ Syst Res 21:243–266CrossRef
Zurück zum Zitat WRI and WBCSD (2004) Greenhouse gas protocol: a corporate accounting and reporting standard. Washington, DC, USA WRI and WBCSD (2004) Greenhouse gas protocol: a corporate accounting and reporting standard. Washington, DC, USA
Zurück zum Zitat Zamagni A (2012) Life cycle sustainability assessment. Int J Life Cycle Assess 17:373–376CrossRef Zamagni A (2012) Life cycle sustainability assessment. Int J Life Cycle Assess 17:373–376CrossRef
Metadaten
Titel
Towards a triple bottom-line sustainability assessment of the U.S. construction industry
verfasst von
Murat Kucukvar
Omer Tatari
Publikationsdatum
01.06.2013
Verlag
Springer-Verlag
Erschienen in
The International Journal of Life Cycle Assessment / Ausgabe 5/2013
Print ISSN: 0948-3349
Elektronische ISSN: 1614-7502
DOI
https://doi.org/10.1007/s11367-013-0545-9

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