Biblio

Export 111 results:
Author [ Title(Asc)] Type Year
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P
Leith I.D., Sheppard L.J., Pitcairn C.E.R., Ingleby K., Jones M., Tang Y.S., Skinner R., Carfrae J.A., Cape J.N., Fowler D. et al..  2003.  The processes controlling uptake and storage of N and the effects of N deposition on semi-natural vegetation.. Nitrogen Umbrella Project.
Sutton M.A., Sheppard L.J., Fowler D..  2009.  Potential for the Further Development and Application of Critical Levels to Assess the Environmental Impacts of Ammonia. Atmospheric Ammonia. :41-48.
Carfrae J.A., Sheppard L.J., Raven J.A., Leith I.D., Crossley A..  2007.  Potassium and phosphorus additions modify the response of Sphagnum capillifolium growing on a Scottish ombrotrophic bog to enhanced nitrogen deposition.. Applied Geochemistry. 22(6):1111-1121.
Batista M.  2016.  Plants and Nitrogen – a love & hate relationship.
Larmola T, Kiheri H., Bubier J.L, van Dijk N., Dise N., Fritze H., Hobbie E.A., Juutinen S., Laiho R., Moore T.R. et al..  2017.  Plant-mycorrhizal feedbacks of nitrogen deposition to peatland carbon and nutrient cycling.. Peatlands and Carbon Cycling, Hyytiälä International Peatland Workshop .
Sheppard L.J., Leith I.D., Leeson S., Mizunuma T., de Bakker R., Elustondo D., Garcia-Gomez H..  2013.  PK additions modify the effects of N dose and form on species composition, species litter chemistry and peat chemistry in a Scottish peatland. Biogeochemistry. 116(1-3):39-53.
Manninen S., Woods C., Leith I.D, Sheppard L.J.  2011.  Physiological and morphological effects of long-term ammonium or nitrate deposition on the green and red (shade and open grown) Sphagnum capillifolium. Environmental and Experimental Botany. 72(2):140-148.
N
Leeson SR, Levy PE, van Dijk N, Drewer J, Robinson S, Jones MR, Kentisbeer J, Washbourne I, Sutton MA, Sheppard LJ.  2017.  Nitrous oxide emissions from a peatbog after 13 years of experimental nitrogen deposition.. Biogeosciences. 14(24):5753-5764.
Sheppard L.J., Leith I.D., Leeson S., van Dijk N., Cape J.N., Fowler D., Field C..  2011.  Nitrogen form makes a difference to the responses of a peatland to enhanced reactive nitrogen deposition [abstract]. Book of Abstracts: Joint Society of Wetland Scientists. :289.
Nordin A., Sheppard L.J., Strengbom J., Bobbink R., Gunnarsson U., Hicks W.K., Sutton M.A..  2011.  New science on the effects of nitrogen deposition and concentrations on Natura 2000 sites (theme 3): background documement. Nitrogen deposition and Natura 2000: Science and practice in determining environmental impacts. :115-129.
Strengbom J., Anderson H.V., Aazem K., Adema E.B., Alard D., Bobbink R., Bringmark L., Buchwald E., Cape J.N., Cruz C. et al..  2011.  New science on the effects of nitrogen deposition and concentrations on Natura 2000 sites (theme 3): working group report. Nitrogen deposition and Natura 2000: Science and practice in determining environmental impacts. :129-136.
Nordin A., Sheppard L.J., Strengbom J., Bobbink R., Gunnarsson U., Hicks K., Sutton M.A..  2009.  New science on the effects of N deposition and concentrations on Natura 2000 sites, including bio-indicators, effects of N-form (e.g., NHx vs NOy), and the relationships between critical thresholds and biodiversity loss.. Workshop at the Bedford Hotel and Conference Centre, Brussels.
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Phuyal M., Artz R.RE, Sheppard L., Leith I.D, Johnson D..  2008.  Long-term nitrogen deposition increases phosphorus limitation of bryophytes in an ombrotrophic bog. Plant Ecology. 196(1):111-121.
Phuyal M., Artz R.R.E., Sheppard L., Leith I.D., Johnson D..  2008.  Long-term nitrogen deposition increases phosphorus limitation of bryophytes in an ombrotrophic bog. Plant Ecology. 196:111-121.
Chiwa M, Sheppard L, Leith I, Leeson S, Tang S, Cape N.  2018.  Long-term interactive effects of N addition with P and K availability on N status of Sphagnum.. Environmental Pollution . 237
van Dijk N, Sutton M, Jones M.  2019.  Long-Term Impacts of Nitrogen Deposition & Evidence of Recovery: Whim Bog and Moninea Bog.
Kivimaeki SK, Sheppard LJ, Leith ID, Grace J.  2013.  Long-term enhanced nitrogen deposition increases ecosystem respiration and carbon loss from a Sphagnum bog in the Scottish Borders. Environmental and Experimental Botany. 90:53-61.
Sheppard L.J., Leith I.D., Crossley A., van Dijk N., Cape J.N., Fowler D., Sutton M.A..  2009.  Long-Term Cumulative Exposure Exacerbates the Effects of Atmospheric Ammonia on an Ombrotrophic Bog: Implications for Critical Levels. Atmospheric Ammonia. :49-58.
Lamberley P., Wolsey P..  2004.  Lichens in a changing pollution environment. :84-89.

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