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Non-household Water Demand: The Industrial and Commercial Sectors

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Understanding and Managing Urban Water in Transition

Part of the book series: Global Issues in Water Policy ((GLOB,volume 15))

Abstract

Whereas households are the largest water users in most urban centres, non-residential water use accounts for as much as 30–40 % of a typical water utility’s total output. Thus, for many water utilities facing the rising costs of developing new sources for potable water, improvements in water use efficiency in the industrial and commercial sector are seen as a virtual new source. The purpose of this chapter is to briefly examine what is known regarding the economics of water use by industry and commerce and to investigate how this knowledge could be used to promote efficient water use. The chapter begins by illustrating some of the important characteristics of industrial and commercial water use. Of particular interest is the role of energy consumption in affecting demand for water, as well as the ways in which this sector’s water use differs from its residential counterpart. The chapter then considers economic techniques for modeling and measuring industrial and commercial water use. An important output from these modeling efforts is an estimate of price elasticity of a firm’s demand for intake water. The chapter concludes by presenting several case studies that demonstrate water agencies’ efforts to promote water conservation among industrial and commercial users.

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Notes

  1. 1.

    Readers interested in the economic dimensions of water use in these industries should consult the National Roundtable on the Environment and the Economy (2011).

References

  • Babin, F., Willis, C., & Allen, P. (1982). Estimation of substitution possibilities between water and other production inputs. American Journal of Agricultural Economics, 64(1), 148–151.

    Article  Google Scholar 

  • Brandes, O., Renzetti, S., & Stinchcombe, K. (2010). Worth the charge: A primer on conservation-oriented water pricing. POLIS project on ecological governance. Victoria: University of Victoria.

    Google Scholar 

  • Bruneau, J., Renzetti, S., & Villeneuve, M. (2010). Analysis of the factors influencing water recirculation decisions by Canadian manufacturing firms. Canadian Journal of Agricultural Economics, 58(4), 515–530.

    Article  Google Scholar 

  • California Urban Water Conservation Council. (2002). Implementation of best management practices. http://www.cuwcc.org/home.html. Accessed 18 May 2011.

  • Carbon Disclosure Project. (2011). CDP water disclosure global report 2011. https://www.cdproject.net/water. Accessed 8 Feb 2012.

  • Culp, J., Ciborowski, J., Dubé, M., Liber, K., Munnkittrick, K., & Parker, W. (2001). Industrial point source discharges. In Environment Canada (Ed.), Threats to drinking water and aquatic ecosystem health in Canada (National Water Research Institute scientific assessment report no. 1, pp. 41–51). Burlington: National Water Research Institute.

    Google Scholar 

  • De Gispert, C. (2004). The economic analysis of industrial water demand: A review. Environment and Planning C, 22, 15–30.

    Article  Google Scholar 

  • Dupont, D., & Renzetti, S. (2001). Water’s role in manufacturing. Environmental and Resource Economics, 18(4), 411–432.

    Article  Google Scholar 

  • Dziegielewski, B. (2000). Commercial and institutional end uses of water. Denver: AWWA Research Foundation.

    Google Scholar 

  • Environment Canada. (2010). 2010 Municipal water use report. http://www.ec.gc.ca/Publications. Accessed 24 Aug 2011.

  • Fatih, K., & Yeddir-Tamsamani, Y. (2010). Is technological change biased toward energy? A multi-sectoral analysis for the French economy. Energy Policy, 38(4), 1842–1850.

    Article  Google Scholar 

  • Féres, J., & Reynaud, A. (2005). Assessing the impact of environmental regulation on industrial water use: Evidence from Brazil. Land Economics, 81(3), 396–411.

    Google Scholar 

  • Gleick, P., Haasz, D., Henges-Jeck, C., Srinivasan, V., Wolff, G., Cushing, K., & Mann, A. (2003). Waste not, want not: The potential for urban water conservation in California. The Pacific Institute, Seattle. http://www.pacinst.org/reports/urban_usage/waste_not_want_not_full_report.pdf. Accessed 16 Feb 2012.

  • Kenny, J., Barber, N., Hutson, S., Linsey, K., Lovelace, J., & Maupin, M. (2009). Estimated use of water in the United States in 2005. United States Geological Service Circular 1344. http://water.usgs.gov/watuse/. Accessed 24 Jan 2012.

  • Lallana, C., & Marcuello, C. (2004). Indicator fact sheet (WQ2): Water use by sectors. European Environment Agency, Copenhagen. http://www.eea.europa.eu/themes/water. Accessed 4 Jan 2012.

  • Lynn, G. D., Luppold, W. G., & Kiker, C. (1993). Water price responsiveness of commercial establishments. Journal of the American Water Resources Association, 14, 719–729.

    Article  Google Scholar 

  • Millock, K., & Nauges, C. (2010). Household adoption of water-efficient equipment: The role of socio-economic factors, environmental attitudes and policy. Environmental and Resource Economics, 46(2), 539–565.

    Article  Google Scholar 

  • Murty, M. N. (2002). Measuring the cost of environmentally sustainable industrial development in India: A distance function approach. Environment and Development Economics, 7, 467–486.

    Article  Google Scholar 

  • National Roundtable on the Environment and the Economy. (2011). Charting a course: Sustainable water use by Canada’s natural resource sectors, Ottawa. http://nrtee-trnee.ca/charting-a-course-sustainable-water. Use-by-canadas-natural-resource-sectors. Accessed 12 Dec 2011.

  • North Carolina Department of Environment and Natural Resources. (2009). Water efficiency manual for commercial, industrial and institutional facilities, Raleigh. http://savewaternc.org/Documents/water-efficiency-business.pdf. Accessed 16 Jan 2012.

  • Renzetti, S. (1992). Estimating the structure of industrial water demands: The case of Canadian manufacturing. Land Economics, 68(4), 396–404.

    Article  Google Scholar 

  • Renzetti, S. (1993). Examining the differences between self and publicly supplied firms’ water demands. Land Economics, 69(2), 181–188.

    Article  Google Scholar 

  • Renzetti, S. (2002a). The economics of water demands. Norwell: Kluwer Academic Press.

    Book  Google Scholar 

  • Renzetti, S. (2002b). Introduction. In S. Renzetti (Ed.), The economics of industrial water use. Cheltenham: Edward Elgar.

    Google Scholar 

  • Reynaud, A. (2003). An econometric estimation of industrial water demand in France. Environmental and Resource Economics, 25, 213–232.

    Article  Google Scholar 

  • Schneider, M., & Whitlatch, E. (1991). User-specific water demand elasticities. Journal of Water Resources Planning and Management-ASCE, 117(1), 52–73.

    Article  Google Scholar 

  • Solley, W., Pierce, R., & Perlman, H. (1999). Estimated use of water in the United States in 1995. United States Geological Survey Circular 1200. http://water.usgs.gov/watuse/pdf1995/html/. Accessed 16 July 2011.

  • Statistics Canada. (2008). Industrial water use 2005. Catalogue no. 16-401-X, Ottawa.

    Google Scholar 

  • United Kingdom Environment Agency. (2006). Waterwise: Good for business and good for the environment. London: The National Water Demand Management Centre. http://www.environment-agency.gov.uk/research/library/publications/33993.aspx. Accessed 9 Jan 2012.

  • United Kingdom Office of Water. (2012). Water today, water tomorrow: Future price limits – a consultation on the framework, London. http://www.ofwat.gov.uk/consultations/pap_con201111fpl_app11.pdf. Accessed 4 Jan 2012.

  • Vickers, A. (2001). Handbook of water use and conservation. Los Angeles: Californian Urban Water Conservation Council.

    Google Scholar 

  • Water Services Association of Australia. (2009). Meeting Australia’s water challenges: Case studies in commercial and industrial water savings. WSSA Occasional Paper #23. http://www.waterforlife.nsw.gov.au. Accessed 22 Jan 2012.

  • Worthington, A. C. (2010). Commercial and industrial water demand estimation: Theoretical and methodological guidelines for applied economics research. Estudios de Economica Aplicada, 28(2), 237–258.

    Google Scholar 

  • Zhou, Y., & Tol, R. (2005). Water use in China’s domestic, industrial and agricultural sectors: An empirical analysis. Water Science and Technology, 5(6), 85–93.

    Google Scholar 

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Renzetti, S. (2015). Non-household Water Demand: The Industrial and Commercial Sectors. In: Grafton, Q., Daniell, K., Nauges, C., Rinaudo, JD., Chan, N. (eds) Understanding and Managing Urban Water in Transition. Global Issues in Water Policy, vol 15. Springer, Dordrecht. https://doi.org/10.1007/978-94-017-9801-3_14

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