Amii R. Harwood
University of East Anglia
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Publication
Featured researches published by Amii R. Harwood.
Science | 2013
Ian J. Bateman; Amii R. Harwood; Georgina M. Mace; Robert T. Watson; David James Abson; Barnaby Andrews; Amy Binner; Andrew Crowe; Brett Day; Steve Dugdale; Carlo Fezzi; Jo Foden; David Hadley; Roy Haines-Young; M Hulme; Andreas Kontoleon; Andrew Lovett; Paul Munday; Unai Pascual; James Paterson; Grischa Perino; Antara Sen; G. Siriwardena; D.P. van Soest; Mette Termansen
Monitoring Land Use Land-use decisions are based largely on agricultural market values. However, such decisions can lead to losses of ecosystem services, such as the provision of wildlife habitat or recreational space, the magnitude of which may overwhelm any market agricultural benefits. In a research project forming part of the UK National Ecosystem Assessment, Bateman et al. (p. 45) estimate the value of these net losses. Policies that recognize the diversity and complexity of the natural environment can target changes to different areas so as to radically improve land use in terms of agriculture and greenhouse gas emissions, recreation, and wild species habitat and diversity. The value of using land for recreation and wildlife, not just for agriculture, can usefully factor into planning decisions. Landscapes generate a wide range of valuable ecosystem services, yet land-use decisions often ignore the value of these services. Using the example of the United Kingdom, we show the significance of land-use change not only for agricultural production but also for emissions and sequestration of greenhouse gases, open-access recreational visits, urban green space, and wild-species diversity. We use spatially explicit models in conjunction with valuation methods to estimate comparable economic values for these services, taking account of climate change impacts. We show that, although decisions that focus solely on agriculture reduce overall ecosystem service values, highly significant value increases can be obtained from targeted planning by incorporating all potential services and their values and that this approach also conserves wild-species diversity.
Science | 2013
Ian J. Bateman; Amii R. Harwood; Georgina M. Mace; Robert T. Watson; David James Abson; Barnaby Andrews; Amy Binner; Andrew Crowe; Brett Day; Steve Dugdale; Carlo Fezzi; Jo Foden; David Hadley; Roy Haines-Young; M Hulme; Andreas Kontoleon; Andrew Lovett; Paul Munday; Unai Pascual; James Paterson; Grischa Perino; Antara Sen; G. Siriwardena; Daan P. van Soest; Mette Termansen
Monitoring Land Use Land-use decisions are based largely on agricultural market values. However, such decisions can lead to losses of ecosystem services, such as the provision of wildlife habitat or recreational space, the magnitude of which may overwhelm any market agricultural benefits. In a research project forming part of the UK National Ecosystem Assessment, Bateman et al. (p. 45) estimate the value of these net losses. Policies that recognize the diversity and complexity of the natural environment can target changes to different areas so as to radically improve land use in terms of agriculture and greenhouse gas emissions, recreation, and wild species habitat and diversity. The value of using land for recreation and wildlife, not just for agriculture, can usefully factor into planning decisions. Landscapes generate a wide range of valuable ecosystem services, yet land-use decisions often ignore the value of these services. Using the example of the United Kingdom, we show the significance of land-use change not only for agricultural production but also for emissions and sequestration of greenhouse gases, open-access recreational visits, urban green space, and wild-species diversity. We use spatially explicit models in conjunction with valuation methods to estimate comparable economic values for these services, taking account of climate change impacts. We show that, although decisions that focus solely on agriculture reduce overall ecosystem service values, highly significant value increases can be obtained from targeted planning by incorporating all potential services and their values and that this approach also conserves wild-species diversity.
Archive | 2015
Maria Giovanna Palmieri; Marije Schaafsma; Tiziana Luisetti; Alberto Barausse; Amii R. Harwood; Antara Sen; Rk Turner
Over the last decades, extensive jellyfish blooms have been recorded in several regions worldwide raising concern about a possible “jellification” of global seas. Potential causes of jellyfish blooms include overfishing, global warming, eutrophication, chemical pollution, the increase of artificial hard substrates, and the transport of exotic species in ballast water or for trade. Jellyfish blooms have negative impacts in a number of ways. Impacts on fisheries are the most frequently reported but the evidence base also includes impacts on aquaculture, energy production, tourism, and human health. Very few estimates of the welfare losses due to jellyfish blooms are available. We provide estimates of the potential welfare losses stemming from impacts of blooms on recreation in the UK and fisheries in Italy. Our estimates show that losses can be considerable. The evidence collected here and elsewhere in the literature warrants a consideration of increased efforts towards the monitoring and control of jellyfish blooms.
Environmental and Resource Economics | 2014
Antara Sen; Amii R. Harwood; Ian J. Bateman; Paul Munday; Andrew Crowe; L.M. Brander; Jibonayan Raychaudhuri; Andrew Lovett; Jo Foden; Allan Provins
Environmental and Resource Economics | 2014
Ian J. Bateman; Amii R. Harwood; David James Abson; Barnaby Andrews; Andrew Crowe; Steve Dugdale; Carlo Fezzi; Jo Foden; David Hadley; Roy Haines-Young; M Hulme; Andreas Kontoleon; Paul Munday; Unai Pascual; James Paterson; Grischa Perino; Antara Sen; G. Siriwardena; Mette Termansen
Nature Climate Change | 2015
Carlo Fezzi; Amii R. Harwood; Andrew Lovett; Ian J. Bateman
Environmental and Resource Economics | 2014
Carlo Fezzi; Ian J. Bateman; Tom Askew; Paul Munday; Unai Pascual; Antara Sen; Amii R. Harwood
Science | 2013
Ian J. Bateman; Amii R. Harwood; Georgina M. Mace; Robert T. Watson; David James Abson; Barnaby Andrews; Amy Binner; Andrew Crowe; Brett Day; Steve Dugdale; Carlo Fezzi; Jo Foden; David Hadley; Roy Haines-Young; M Hulme; Andreas Kontoleon; Andrew Lovett; Paul Munday; Unai Pascual; James Paterson; Grischa Perino; Antara Sen; G. Siriwardena; D.P. van Soest; Mette Termansen
Archive | 2017
Amy Binner; G Smith; Ian J. Bateman; Brett Day; Matthew Agarwala; Amii R. Harwood
Landscape and Urban Planning | 2015
Amii R. Harwood; Andrew Lovett; Jenni Turner