Bibliography

Found 126 results
Author Title [ Type(Desc)] Year
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Journal Article
Hayes F., Mills G., Williams P., Harmens H., Buker P..  2006.  Impacts of summer ozone exposure on the growth and overwintering of UK upland vegetation. Atmospheric Environment. 40:4088-4097.
Harmens H., Mills G., Emberson L.D, Ashmore M.R.  2007.  Implications of climate change for the stomatal flux of ozone: A case study for winter wheat. Environmental Pollution. 146:763-770.
Schroder W., Pesch R., Schonrock S., Harmens H., Mills G., Fagerli H..  2014.  Mapping correlations between nitrogen concentrations in atmospheric deposition and mosses for natural landscapes in Europe. Ecological Indicators. 36:563-571.
Hayes F., Jones M.LM, Mills G., Ashmore M..  2007.  Meta-analysis of the relative sensitivity of semi-natural vegetation species to ozone. Environmental Pollution. 146:754-762.
Schroder W., Pesch R., Englert C., Harmens H., Suchara I., Zechmeister H.G, Thoeni L., Mankovska B., Jeran Z., Grodzinska K. et al..  2008.  Metal accumulation in mosses across national boundaries: Uncovering and ranking causes of spatial variation. Environmental Pollution. 151:377-388.
Harmens H., Norris D.A, Steinnes E., Kubin E., Piispanen J., Alber R., Aleksiayenak Y., Blum O., Coskun M., Dam M. et al..  2010.  Mosses as biomonitors of atmospheric heavy metal deposition: Spatial patterns and temporal trends in Europe. Environmental Pollution. 158:3144-3156.
Mills G., Pleijel H., Braun S., Buker P., Bermejo V., Calvo E., Danielsson H., Emberson L., Fernandez I.G, Grunhage L. et al..  2011.  New stomatal flux-based critical levels for ozone effects on vegetation. Atmospheric Environment. 45:5064-5068.
Mills G., Pleijel H., Braun S., Buker P., Bermejo V., Calvo E., Danielsson H., Emberson L., Fernandez I.G, Grunhage L. et al..  2011.  New stomatal flux-based critical levels for ozone effects on vegetation. Atmospheric Environment. 45:5064-5068.
Dai L., Hayes F., Sharps K., Harmens H., Mills G..  2019.  Nitrogen availability does not affect ozone flux-effect relationships for biomass in birch (Betula pendula) saplings.
Dai L., Hayes F., Sharps K., Harmens H., Mills G..  2019.  Nitrogen availability does not affect ozone flux-effect relationships for biomass in birch (Betula pendula) saplings.
Harmens H., Norris D.A, Cooper D.M, Mills G., Steinnes E., Kubin E., Thoni L., Aboal J.R, Alber R., Carballeira A. et al..  2011.  Nitrogen concentrations in mosses indicate the spatial distribution of atmospheric nitrogen deposition in Europe. Environmental Pollution. 159:2852-2860.
Feng Z.Z, Paoletti E., Bytnerowicz A., Harmens H..  2015.  Ozone and plants. Environmental Pollution. 202:215-216.
Hayes F., Harmens H., Sharps K., Radbourne A..  2020.  Ozone dose-response relationships for tropical crops reveal potential threat to legume and wheat production, but not to millets.
Hayes F., Harmens H., Sharps K., Radbourne A..  2020.  Ozone dose-response relationships for tropical crops reveal potential threat to legume and wheat production, but not to millets.
Mills G., Harmens H., Wagg S., Sharps K., Hayes F., Fowler D., Sutton M., Davies B..  2016.  Ozone impacts on vegetation in a nitrogen enriched and changing climate. Environmental Pollution. 208:898-908.
Mills G., Harmens H., Wagg S., Sharps K., Hayes F., Fowler D., Sutton M., Davies B..  2016.  Ozone impacts on vegetation in a nitrogen enriched and changing climate. Environmental Pollution. 208:898-908.
Mills G., Sharps K., Simpson D., Pleijel H., Broberg M., Uddling J., Jaramillo F., Davies W.J., Dentener F., Van den Berg M. et al..  2018.  Ozone pollution will compromise efforts to increase global wheat production.. Global Change Biology. 24:3560-3574.
Mills G., Sharps K., Simpson D., Pleijel H., Broberg M., Uddling J., Jaramillo F., Davies W.J., Dentener F., Van den Berg M. et al..  2018.  Ozone pollution will compromise efforts to increase global wheat production.. Global Change Biology. 24:3560-3574.
Jones M.LM, Hayes F., Mills G., Sparks T.H, Fuhrer J..  2007.  Predicting community sensitivity to ozone, using Ellenberg Indicator values. Environmental Pollution. 146:744-753.
Harmens H., Schnyder E., Thoni L., Cooper D.M, Mills G., Leblond S., Mohr K., Poikolainen J., Santamaria J., Skudnik M. et al..  2014.  Relationship between site-specific nitrogen concentrations in mosses and measured wet bulk atmospheric nitrogen deposition across Europe. Environmental Pollution. 194:50-59.
Harmens H., Schnyder E., Thoni L., Cooper D.M, Mills G., Leblond S., Mohr K., Poikolainen J., Santamaria J., Skudnik M. et al..  2014.  Relationship between site-specific nitrogen concentrations in mosses and measured wet bulk atmospheric nitrogen deposition across Europe. Environmental Pollution. 194:50-59.
Hayes F., Mills G., Alonso R., González-Fernández I., Coyle M., Grunhage L., Gerosa G., Karlsson P.E., Marzuoli R..  2019.  A Site-Specific Analysis of the Implications of a Changing Ozone Profile and Climate for Stomatal Ozone Fluxes in Europe.
Schroder W., Nickel S., Schonrock S., Meyer M., Wosniok W., Harmens H., Frontasyeva M.V, Alber R., Aleksiayenak J., Barandovski L. et al..  2016.  Spatially valid data of atmospheric deposition of heavy metals and nitrogen derived by moss surveys for pollution risk assessments of ecosystems (vol 23, pg 10457, 2016). Environmental Science and Pollution Research. 23:21123-21124.
Mills G., Buse A., Gimeno B., Bermejo V., Holland M., Emberson L., Pleijel H..  2007.  A synthesis of AOT40-based response functions and critical levels of ozone for agricultural and horticultural crops. Atmospheric Environment. 41:2630-2643.
Harmens H., Norris D.A, Koerber G.R, Buse A., Steinnes E., Ruhling A..  2008.  Temporal trends (1990-2000) in the concentration of cadmium, lead and mercury in mosses across Europe. Environmental Pollution. 151:368-376.

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