Major agricultural changes required to mitigate phosphorus losses under climate change
The impact of climate change on phosphorus (P) loss from land to water is unclear. Here, the authors use P flux data, climate simulations and P transfer models to show that only large scale agricultural change will limit the effect of climate change on average winter P loads in three catchments acro...
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Nature Portfolio
2017
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oai:doaj.org-article:fe96d22dc29641da95e4cc1be3a483222021-12-02T13:27:30ZMajor agricultural changes required to mitigate phosphorus losses under climate change10.1038/s41467-017-00232-02041-1723https://doaj.org/article/fe96d22dc29641da95e4cc1be3a483222017-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00232-0https://doaj.org/toc/2041-1723The impact of climate change on phosphorus (P) loss from land to water is unclear. Here, the authors use P flux data, climate simulations and P transfer models to show that only large scale agricultural change will limit the effect of climate change on average winter P loads in three catchments across the UK.M. C. OckendenM. J. HollawayK. J. BevenA. L. CollinsR. EvansP. D. FalloonK. J. ForberK. M. HiscockR. KahanaC. J. A. MacleodW. TychM. L. VillamizarC. WearingP. J. A. WithersJ. G. ZhouP. A. BarkerS. BurkeJ. E. FreerP. J. JohnesM. A. SnellB. W. J. SurridgeP. M. HaygarthNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017) |
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Science Q M. C. Ockenden M. J. Hollaway K. J. Beven A. L. Collins R. Evans P. D. Falloon K. J. Forber K. M. Hiscock R. Kahana C. J. A. Macleod W. Tych M. L. Villamizar C. Wearing P. J. A. Withers J. G. Zhou P. A. Barker S. Burke J. E. Freer P. J. Johnes M. A. Snell B. W. J. Surridge P. M. Haygarth Major agricultural changes required to mitigate phosphorus losses under climate change |
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The impact of climate change on phosphorus (P) loss from land to water is unclear. Here, the authors use P flux data, climate simulations and P transfer models to show that only large scale agricultural change will limit the effect of climate change on average winter P loads in three catchments across the UK. |
format |
article |
author |
M. C. Ockenden M. J. Hollaway K. J. Beven A. L. Collins R. Evans P. D. Falloon K. J. Forber K. M. Hiscock R. Kahana C. J. A. Macleod W. Tych M. L. Villamizar C. Wearing P. J. A. Withers J. G. Zhou P. A. Barker S. Burke J. E. Freer P. J. Johnes M. A. Snell B. W. J. Surridge P. M. Haygarth |
author_facet |
M. C. Ockenden M. J. Hollaway K. J. Beven A. L. Collins R. Evans P. D. Falloon K. J. Forber K. M. Hiscock R. Kahana C. J. A. Macleod W. Tych M. L. Villamizar C. Wearing P. J. A. Withers J. G. Zhou P. A. Barker S. Burke J. E. Freer P. J. Johnes M. A. Snell B. W. J. Surridge P. M. Haygarth |
author_sort |
M. C. Ockenden |
title |
Major agricultural changes required to mitigate phosphorus losses under climate change |
title_short |
Major agricultural changes required to mitigate phosphorus losses under climate change |
title_full |
Major agricultural changes required to mitigate phosphorus losses under climate change |
title_fullStr |
Major agricultural changes required to mitigate phosphorus losses under climate change |
title_full_unstemmed |
Major agricultural changes required to mitigate phosphorus losses under climate change |
title_sort |
major agricultural changes required to mitigate phosphorus losses under climate change |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/fe96d22dc29641da95e4cc1be3a48322 |
work_keys_str_mv |
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