Increased yield and CO 2 sequestration potential with the C 4 cereal Sorghum bicolor cultivated in basaltic rock dust‐amended agricultural soil

Author:

Kelland Mike E.1ORCID,Wade Peter W.1ORCID,Lewis Amy L.1ORCID,Taylor Lyla L.1ORCID,Sarkar Binoy2ORCID,Andrews M. Grace3,Lomas Mark R.1,Cotton T. E. Anne1ORCID,Kemp Simon J.4ORCID,James Rachael H.3ORCID,Pearce Christopher R.5ORCID,Hartley Sue E.1ORCID,Hodson Mark E.6ORCID,Leake Jonathan R.1ORCID,Banwart Steven A.78ORCID,Beerling David J.1ORCID

Affiliation:

1. Leverhulme Centre for Climate Change Mitigation Department of Animal and Plant Sciences University of Sheffield Sheffield UK

2. Lancaster Environment Centre Lancaster University Lancaster UK

3. School of Ocean and Earth Science University of Southampton Waterfront Campus Southampton UK

4. British Geological Survey Environmental Science Centre Nottingham UK

5. National Oceanography Centre Southampton UK

6. Department of Environment and Geography University of York York UK

7. School of Earth and Environment University of Leeds Leeds UK

8. Global Food and Environment Institute University of Leeds Leeds UK

Funder

Leverhulme Trust

Publisher

Wiley

Subject

General Environmental Science,Ecology,Environmental Chemistry,Global and Planetary Change

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