Skip to main content
Erschienen in: The International Journal of Life Cycle Assessment 2/2017

17.06.2016 | LIFE CYCLE SUSTAINABILITY ASSESSMENT

Comparative life-cycle impact assessment of concrete manufacturing in Singapore

verfasst von: Aysegul Petek Gursel, Claudia Ostertag

Erschienen in: The International Journal of Life Cycle Assessment | Ausgabe 2/2017

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Purpose

For countries like Singapore that is highly dependent on imported goods, it is essential to consider the consequences of consumption of imported cement and other concrete constituents for a fair carbon trading at global and regional levels. Recently, as a result of reduction in trade barriers and costs of materials and fuels, Singapore does not have much incentive in reducing environmental impacts of these imported goods. However, Singapore has set high environmental targets nationally to reduce impacts from building and construction. In addition to its national efforts, Singapore also needs to take action in trade-related consequences of importing energy-intensive products like cement and aggregates to Singapore. The purpose of this study is to quantify and suggest alternatives for reducing the embodied energy and life-cycle impacts of concrete consumption in Singapore on the basis of current trading volumes of these materials from Singapore’s importers.

Methods

A detailed life-cycle assessment of concrete manufacturing in Singapore is performed to suggest possible ways to reduce the environmental impacts from importing cement and aggregates from Singapore’s trade partners based on an earlier life-cycle inventory developed for Singapore and its neighboring countries. Life-cycle impact assessment (LCIA) impact characterization factors are based on a midpoint-oriented and hierarchist approach as defined by ReCiPe method. Following the LCIA, a scenario analysis is conducted to select the best combination of cement and aggregate importers of Singapore based on their environmental performance.

Results and discussion

Results from the scenario analysis show that overall impacts can be reduced by importing the materials from a nearer source with efficient production technologies and greener fuel mixes. About 10–34 % reduction is estimated in embodied energy, acidification, eutrophication, global warming potential, smog, and health impacts by importing from a closer and technologically greener source.

Conclusions

Despite the limitations due to data and modeling uncertainties, this study constitutes a baseline/benchmark for addressing the current cement and aggregate markets and associated environmental impacts of concrete consumption in Singapore based on historical import quantities of cement and aggregates from neighboring countries of Singapore. In the near future, policy-related action would be influential in achieving Singapore’s national and global environmental targets in buildings and construction sector. Incorporation of an LCA approach into Green Mark Scheme (GMS) by the Building and Construction Authority (BCA) is recommended for Singapore to comply both with its national goals and with its new climate action plan to the UN Framework Convention on Climate Change.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Al-Jabri KS, Hisada M, Al-Oraimi SK, Al-Saidy AH (2009) Copper slag as sand replacement for high performance concrete. Cement Concrete Comp 31:483–488CrossRef Al-Jabri KS, Hisada M, Al-Oraimi SK, Al-Saidy AH (2009) Copper slag as sand replacement for high performance concrete. Cement Concrete Comp 31:483–488CrossRef
Zurück zum Zitat Alsop PA, Chen H, Tseng H (2007) The Cement Plant Operations Handbook, 5th edn. Tradeship Publications, Surrey, UK Alsop PA, Chen H, Tseng H (2007) The Cement Plant Operations Handbook, 5th edn. Tradeship Publications, Surrey, UK
Zurück zum Zitat Asif M, Muneer T, Kelley R (2007) Life cycle assessment: a case study of a dwelling home in Scotland. Build Environ 42:1391–1394CrossRef Asif M, Muneer T, Kelley R (2007) Life cycle assessment: a case study of a dwelling home in Scotland. Build Environ 42:1391–1394CrossRef
Zurück zum Zitat Benetto E, Rousseaux P, Blondin J (2004) Life cycle assessment of coal by-products based electric power production scenarios. Fuel 83:957–970CrossRef Benetto E, Rousseaux P, Blondin J (2004) Life cycle assessment of coal by-products based electric power production scenarios. Fuel 83:957–970CrossRef
Zurück zum Zitat Bhatty JI, Miller FM, Kosmatka SH (2004) Innovations in Portland cement manufacturing. vol SP400. Portland Cement Association [PCA] Bhatty JI, Miller FM, Kosmatka SH (2004) Innovations in Portland cement manufacturing. vol SP400. Portland Cement Association [PCA]
Zurück zum Zitat Boesch ME, Hellweg S (2010) Identifying improvement potentials in cement production with life cycle assessment. Environ Sci Technol 44:9143–9149CrossRef Boesch ME, Hellweg S (2010) Identifying improvement potentials in cement production with life cycle assessment. Environ Sci Technol 44:9143–9149CrossRef
Zurück zum Zitat Boesch ME, Koehler A, Hellweg S (2009) Model for cradle-to-gate life cycle assessment of clinker production. Environ Sci Technol 43:7578–7583CrossRef Boesch ME, Koehler A, Hellweg S (2009) Model for cradle-to-gate life cycle assessment of clinker production. Environ Sci Technol 43:7578–7583CrossRef
Zurück zum Zitat Deru M, Torcellini P (2007) Source energy and emission factors for energy use in buildings. National Renewable Energy Laboratory, Golden, ColoradoCrossRef Deru M, Torcellini P (2007) Source energy and emission factors for energy use in buildings. National Renewable Energy Laboratory, Golden, ColoradoCrossRef
Zurück zum Zitat Dimoudi A, Tompa C (2008) Energy and environmental indicators related to construction of office buildings. Resour Conserv Rec 53:86–95CrossRef Dimoudi A, Tompa C (2008) Energy and environmental indicators related to construction of office buildings. Resour Conserv Rec 53:86–95CrossRef
Zurück zum Zitat EIA (2010) Annual Coal Report 2010. U.S. Energy Information Administration—Office of Oil, Gas, and Coal Supply Statistics. U.S. Department of Energy, Washington, DC EIA (2010) Annual Coal Report 2010. U.S. Energy Information Administration—Office of Oil, Gas, and Coal Supply Statistics. U.S. Department of Energy, Washington, DC
Zurück zum Zitat EIA (2011a) Annual Energy Outlook 2011 with projections to 2035. U.S. Energy Information Administration, Washington, DC EIA (2011a) Annual Energy Outlook 2011 with projections to 2035. U.S. Energy Information Administration, Washington, DC
Zurück zum Zitat EIA (2011b) Coal production and number of mines by state and coal rank, 2010. U.S. Energy Information Administration - Assistant Administrator for Energy Statistics Office of Electricity, Renewables, and Uranium Statistics, Washington, DC EIA (2011b) Coal production and number of mines by state and coal rank, 2010. U.S. Energy Information Administration - Assistant Administrator for Energy Statistics Office of Electricity, Renewables, and Uranium Statistics, Washington, DC
Zurück zum Zitat EMEP/CORINAIR (2006) EMEP/CORINAIR Emission Inventory Guidebook. European Environment Agency—Co-operative Programme for Monitoring and Evaluation of the Long Range Transmission of Air Pollutants in Europe (EMEP) and The Core Inventory of Air Emissions in Europe (CORINAIR) EMEP/CORINAIR (2006) EMEP/CORINAIR Emission Inventory Guidebook. European Environment Agency—Co-operative Programme for Monitoring and Evaluation of the Long Range Transmission of Air Pollutants in Europe (EMEP) and The Core Inventory of Air Emissions in Europe (CORINAIR)
Zurück zum Zitat EPA (1993a) Compilation of air pollution emission factors, emission factor documentation for AP-42, vol I: Stationary Sources, Section 1.2 Anthracite Coal Combustion. U. S. Environmental Protection Agency - Office of Air Quality Planning and Standards, Emission Inventory Branch, Research Triangle Park, NC EPA (1993a) Compilation of air pollution emission factors, emission factor documentation for AP-42, vol I: Stationary Sources, Section 1.2 Anthracite Coal Combustion. U. S. Environmental Protection Agency - Office of Air Quality Planning and Standards, Emission Inventory Branch, Research Triangle Park, NC
Zurück zum Zitat EPA (1993b) Emission factor documentation for AP-42 Section 1.1 Bituminous and subbituminous coal combustion. U. S. Environmental Protection Agency - Office of Air Quality Planning and Standards. Office of Air and Radiation, Emission Inventory Branch, Research Triangle Park, NC EPA (1993b) Emission factor documentation for AP-42 Section 1.1 Bituminous and subbituminous coal combustion. U. S. Environmental Protection Agency - Office of Air Quality Planning and Standards. Office of Air and Radiation, Emission Inventory Branch, Research Triangle Park, NC
Zurück zum Zitat EPA (1994) Compilation of air pollution emission factors, emission factor documentation for AP-42. Section 11.6. Portland Cement Manufacturing_Final Report. U. S. Environmental Protection Agency - Office of Air Quality Planning and Standards, Emission Inventory Branch, Research Triangle Park, NC EPA (1994) Compilation of air pollution emission factors, emission factor documentation for AP-42. Section 11.6. Portland Cement Manufacturing_Final Report. U. S. Environmental Protection Agency - Office of Air Quality Planning and Standards, Emission Inventory Branch, Research Triangle Park, NC
Zurück zum Zitat EPA (1998) Emission factor documentation for AP-42 Section 1.4 Natural gas combustion. U. S. Environmental Protection Agency - Office of Air Quality Planning and Standards, Emission Inventory Branch, Research Triangle Park, NC EPA (1998) Emission factor documentation for AP-42 Section 1.4 Natural gas combustion. U. S. Environmental Protection Agency - Office of Air Quality Planning and Standards, Emission Inventory Branch, Research Triangle Park, NC
Zurück zum Zitat Goedkoop M, Heijungs R, Huijbregts MAJ, De Schryver A, Struijs J, van Zelm R (2013) ReCiPe 2008: a life cycle impact assessment method which comprises harmonised category indicators at the midpoint and the endpoint level, First (version 1.08) edn. Ministry of Housing, Spatial Planning and Environment (VROM) Goedkoop M, Heijungs R, Huijbregts MAJ, De Schryver A, Struijs J, van Zelm R (2013) ReCiPe 2008: a life cycle impact assessment method which comprises harmonised category indicators at the midpoint and the endpoint level, First (version 1.08) edn. Ministry of Housing, Spatial Planning and Environment (VROM)
Zurück zum Zitat Goedkoop M, Spriemsma R (2001) The Eco-indicator 99. A damage oriented method for life cycle impact assessment, Methodology Annex, Thirdth edn. PRe Consultants B.V, Amersfoort, Netherlands Goedkoop M, Spriemsma R (2001) The Eco-indicator 99. A damage oriented method for life cycle impact assessment, Methodology Annex, Thirdth edn. PRe Consultants B.V, Amersfoort, Netherlands
Zurück zum Zitat Gursel AP (2014) Life-cycle assessment of concrete. Decision-Support Tool and Case Study Application, University of California Gursel AP (2014) Life-cycle assessment of concrete. Decision-Support Tool and Case Study Application, University of California
Zurück zum Zitat Gursel AP, Masanet E, Horvath A, Stadel A (2014) Life-cycle inventory analysis of concrete production: a critical review. Cement Concrete Comp 51:38–48CrossRef Gursel AP, Masanet E, Horvath A, Stadel A (2014) Life-cycle inventory analysis of concrete production: a critical review. Cement Concrete Comp 51:38–48CrossRef
Zurück zum Zitat Gursel AP, Ostertag CP (2016) Impact of Singapore's importers on life-cycle assessment of concrete. J Clean Prod 118:140–150CrossRef Gursel AP, Ostertag CP (2016) Impact of Singapore's importers on life-cycle assessment of concrete. J Clean Prod 118:140–150CrossRef
Zurück zum Zitat Huijbregts MAJ, Gilijamse W, Ragas AMJ, Reijnders L (2003) Evaluating uncertainty in environmental life-cycle assessment. A case study comparing two insulation options for a Dutch one-family dwelling. Environ Sci Technol 37:2600–2608CrossRef Huijbregts MAJ, Gilijamse W, Ragas AMJ, Reijnders L (2003) Evaluating uncertainty in environmental life-cycle assessment. A case study comparing two insulation options for a Dutch one-family dwelling. Environ Sci Technol 37:2600–2608CrossRef
Zurück zum Zitat Huijbregts MJ (1998) Application of uncertainty and variability in LCA. Int J Life Cycle Assess 3:273–280CrossRef Huijbregts MJ (1998) Application of uncertainty and variability in LCA. Int J Life Cycle Assess 3:273–280CrossRef
Zurück zum Zitat IPCC (2006) IPCC Guidelines for National Greenhouse Gas Inventories. Intergovernmental Panel on Climate Change - National Greenhouse Gas Inventories Programme Technical Support Unit, Geneva, Switzerland IPCC (2006) IPCC Guidelines for National Greenhouse Gas Inventories. Intergovernmental Panel on Climate Change - National Greenhouse Gas Inventories Programme Technical Support Unit, Geneva, Switzerland
Zurück zum Zitat IPCC (2007) Climate change 2007: the physical science basis. World Meteorological Organization (WMO) and the United Nations Environment Programme (UNEP), Cambridge, United Kingdom IPCC (2007) Climate change 2007: the physical science basis. World Meteorological Organization (WMO) and the United Nations Environment Programme (UNEP), Cambridge, United Kingdom
Zurück zum Zitat ISO (2006a) Environmental management—life cycle assessment: principles and framework. ISO 14040:2006. International Organization for Standardization, Geneva, Switzerland ISO (2006a) Environmental management—life cycle assessment: principles and framework. ISO 14040:2006. International Organization for Standardization, Geneva, Switzerland
Zurück zum Zitat ISO (2006b) Environmental management—life cycle assessment: requirements and guidelines. ISO 14044:2006. International Organization for Standardization, Geneva, Switzerland ISO (2006b) Environmental management—life cycle assessment: requirements and guidelines. ISO 14044:2006. International Organization for Standardization, Geneva, Switzerland
Zurück zum Zitat Jolliet O, Margni M, Charles R, Humbert S, Payet J, Rebitzer G, Rosenbaum R (2003) IMPACT 2002+: a new life cycle impact assessment methodology. Int J Life Cycle Assess 8:324–330CrossRef Jolliet O, Margni M, Charles R, Humbert S, Payet J, Rebitzer G, Rosenbaum R (2003) IMPACT 2002+: a new life cycle impact assessment methodology. Int J Life Cycle Assess 8:324–330CrossRef
Zurück zum Zitat JRC-IES (2010) Framework and requirements for life cycle impact assessment models and indicators, Firstth edn. European Commission - Joint Research Centre (JRC)- Institute for Environment and Sustainability (IES), Luxembourg JRC-IES (2010) Framework and requirements for life cycle impact assessment models and indicators, Firstth edn. European Commission - Joint Research Centre (JRC)- Institute for Environment and Sustainability (IES), Luxembourg
Zurück zum Zitat Kellenberger D, Althaus HJ, Jungbluth N, Kunniger T, Lehmann M, Thalmmann P (2007) Life cycle inventories of building products. Final Report Ecoinvent Data v2.0.No.7. Ecoinvent—Swiss Centre for Life Cycle Inventories Kellenberger D, Althaus HJ, Jungbluth N, Kunniger T, Lehmann M, Thalmmann P (2007) Life cycle inventories of building products. Final Report Ecoinvent Data v2.0.No.7. Ecoinvent—Swiss Centre for Life Cycle Inventories
Zurück zum Zitat Mann MK, Spath PL (1997) Life cycle assessment of a biomass gasification combined-cycle power system. National Renewable Energy Laboratory, Golden, Colorado Mann MK, Spath PL (1997) Life cycle assessment of a biomass gasification combined-cycle power system. National Renewable Energy Laboratory, Golden, Colorado
Zurück zum Zitat Olivier JGJ, Janssens-Maenhout G, Muntean M, Peters JAHW (2014) Trends in global CO2 emissions. 2014 Report, The Hague Olivier JGJ, Janssens-Maenhout G, Muntean M, Peters JAHW (2014) Trends in global CO2 emissions. 2014 Report, The Hague
Zurück zum Zitat PE-international (2015) GaBi software PE-international (2015) GaBi software
Zurück zum Zitat Sonnemann GW, Schuhmacher M, Castells F (2003) Uncertainty assessment by a Monte Carlo simulation in a life cycle inventory of electricity produced by a waste incinerator. J Clean Prod 11:279–292CrossRef Sonnemann GW, Schuhmacher M, Castells F (2003) Uncertainty assessment by a Monte Carlo simulation in a life cycle inventory of electricity produced by a waste incinerator. J Clean Prod 11:279–292CrossRef
Zurück zum Zitat Spath PL, Mann MK (2000) Life cycle assessment of a natural gas combined-cycle power generation system. NREL National Renewable Energy Laboratory, Golden, ColoradoCrossRef Spath PL, Mann MK (2000) Life cycle assessment of a natural gas combined-cycle power generation system. NREL National Renewable Energy Laboratory, Golden, ColoradoCrossRef
Zurück zum Zitat Spath PL, Mann MK, Ker DR (1999) Life cycle assessment of coal-fired power production. National Renewable Energy Laboratory, Golden, ColoradoCrossRef Spath PL, Mann MK, Ker DR (1999) Life cycle assessment of coal-fired power production. National Renewable Energy Laboratory, Golden, ColoradoCrossRef
Zurück zum Zitat UNFCCC (2015) Singapore's Intended Nationally Determined Contribution (INDC) UN Framework Convention on Climate Change UNFCCC (2015) Singapore's Intended Nationally Determined Contribution (INDC) UN Framework Convention on Climate Change
Zurück zum Zitat USDOE (2001) Development and use of GREET 1.6 Fuel-Cycle Model for transportation fuels and vehicle technologies. Center for Transportation Research Argonne National Laboratory - United States Department of Energy, Argonne, Illinois USDOE (2001) Development and use of GREET 1.6 Fuel-Cycle Model for transportation fuels and vehicle technologies. Center for Transportation Research Argonne National Laboratory - United States Department of Energy, Argonne, Illinois
Zurück zum Zitat von Bahr B, Steen B (2004) Reducing epistemological uncertainty in life cycle inventory. J Clean Prod 12:369–388CrossRef von Bahr B, Steen B (2004) Reducing epistemological uncertainty in life cycle inventory. J Clean Prod 12:369–388CrossRef
Zurück zum Zitat WBCSD (2002) Toward a sustainable cement industry: trends, challenges, and opportunities in China’s cement industry. World Business Council for Sustainable Development WBCSD (2002) Toward a sustainable cement industry: trends, challenges, and opportunities in China’s cement industry. World Business Council for Sustainable Development
Zurück zum Zitat Weidema BP, Wesnæs MS (1996) Data quality management for life cycle inventories—an example of using data quality indicators. J Clean Prod 4:167–174CrossRef Weidema BP, Wesnæs MS (1996) Data quality management for life cycle inventories—an example of using data quality indicators. J Clean Prod 4:167–174CrossRef
Zurück zum Zitat Wu W, Zhang W, Ma G (2010) Optimum content of copper slag as a fine aggregate in high strength concrete. Mater Design 31:2878–2883CrossRef Wu W, Zhang W, Ma G (2010) Optimum content of copper slag as a fine aggregate in high strength concrete. Mater Design 31:2878–2883CrossRef
Metadaten
Titel
Comparative life-cycle impact assessment of concrete manufacturing in Singapore
verfasst von
Aysegul Petek Gursel
Claudia Ostertag
Publikationsdatum
17.06.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
The International Journal of Life Cycle Assessment / Ausgabe 2/2017
Print ISSN: 0948-3349
Elektronische ISSN: 1614-7502
DOI
https://doi.org/10.1007/s11367-016-1149-y

Weitere Artikel der Ausgabe 2/2017

The International Journal of Life Cycle Assessment 2/2017 Zur Ausgabe