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The water footprint of modern consumer society / Arjen Y. Hoekstra.

By: Material type: TextTextPublication details: London ; New York : Earthscan, from Routledge, 2013.Description: xvi, 204 pages : illustrations ; 25 cmISBN:
  • 9781849714273
Subject(s): DDC classification:
  • 333.91 HOE
Contents:
Drinking ten bathtubs of water a day -- Water for bread and pasta -- The meat eater, a big water user -- How our cotton clothes link to a disappearing sea -- Burning water: the water footprint of biofuels -- The overseas water footprint of cut flowers -- The supply-chain water footprint of paper -- Maximum sustainable water footprint per river basin -- Water-use efficiency -- Allocating the world\'s limited freshwater resources -- Getting trade right -- Product transparency -- Who will be the heroes of change?
Holdings
Item type Current library Call number Copy number Status Date due Barcode
Standard Loan Thurles Library Main Collection 333.91 HOE (Browse shelf(Opens below)) 1 Available 39002100631317

Enhanced descriptions from Syndetics:

Water is not only used in the domestic context, but also in agriculture and industry in the production of commercial goods, from food to paper. The water footprint is an indicator of freshwater use that looks at both direct and indirect use of water by a consumer or producer. The water footprint of an individual, community or business is defined as the total volume of freshwater that is used to produce the goods and services consumed by the individual or community or produced by the business.

This book shows how the water footprint concept can be used to quantify and map the water use behind consumption and how it can guide reduction of water use to a sustainable level. With a number of case studies, it illustrates water use along supply chains and that water consumption at one place is often linked to water use at another. For example, it is calculated that it takes 15,000 litres of water to produce 1 kg of beef, or 8,000 litres of water to produce a pair of jeans. The book shows that imports of water-intensive products can highly benefit water-scarce countries, but also that this creates a dependency on foreign water resources.

The book demonstrates how water-scarce regions sometimes, nevertheless, use lots of water for making export products. It raises the issue of sustainable consumption: how can consumers, businesses and governments get involved in reducing the water footprints of final consumer goods?

Includes bibliographical references (pages [184]-196) and index.

Drinking ten bathtubs of water a day -- Water for bread and pasta -- The meat eater, a big water user -- How our cotton clothes link to a disappearing sea -- Burning water: the water footprint of biofuels -- The overseas water footprint of cut flowers -- The supply-chain water footprint of paper -- Maximum sustainable water footprint per river basin -- Water-use efficiency -- Allocating the world\'s limited freshwater resources -- Getting trade right -- Product transparency -- Who will be the heroes of change?

Table of contents provided by Syndetics

  • List of illustrations (p. ix)
  • Preface (p. xii)
  • 1 Introduction (p. 1)
  • 2 Drinking ten bathtubs of water a day (p. 13)
  • 3 Water for bread and pasta (p. 28)
  • 4 The meat eater, a big water user (p. 51)
  • 5 How our cotton clothes link to a disappearing sea (p. 60)
  • 6 Burning water: the water footprint of biofuels (p. 73)
  • 7 The overseas water footprint of cut flowers (p. 88)
  • 8 The supply-chain water footprint of paper (p. 103)
  • 9 Maximum sustainable water footprint per river basin (p. 118)
  • 10 Water-use efficiency (p. 128)
  • 11 Allocating the world's limited freshwater resources (p. 139)
  • 12 Getting trade right (p. 146)
  • 13 Product transparency (p. 163)
  • 14 Who will be the heroes of change? (p. 175)
  • References (p. 184)
  • Index (p. 199)

Author notes provided by Syndetics

Arjen Y. Hoekstra is Professor in Water Management at the University of Twente in the Netherlands, creator of the water footprint concept and co-founder of the Water Footprint Network. He specializes in integrated water resources planning and management, river basin management and policy analysis.

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