Comparative use of lichens, mosses and tree bark to evaluate nitrogen deposition in Germany.

作者: Stefanie H. Boltersdorf , Roland Pesch , Willy Werner

DOI: 10.1016/J.ENVPOL.2014.02.017

关键词: BarkPollutionMossBiotaEnvironmental scienceDeposition (chemistry)δ15NEnvironmental chemistryLichenBiomonitoring

摘要: To compare three biomonitoring techniques for assessing nitrogen (N) pollution in Germany, 326 lichen, 153 moss and 187 bark samples were collected from 16 sites of the national N deposition monitoring network. The analysed ranges content all investigated biomonitors (0.32%–4.69%) detected δ15N values (−15.2‰–1.5‰), made it possible to reveal species specific spatial patterns concentrations biota indicate atmospheric Germany. comparison with measured modelled data shows that particularly lichens are able reflect local originating agriculture.

参考文章(68)
Gisela Gaio-Oliveira, Maria Amelia Martins-Loucao, Cristina Branquinho, Cristina Maguas, The Concentration of Nitrogen in Nitrophilous and Non-Nitrophilous Lichen Species Symbiosis. ,vol. 31, pp. 187- 199 ,(2001)
William R. Buck, A. Jonathan Shaw, Bernard Goffinet, Bryophyte Biology: Morphology, anatomy, and classification of the Bryophyta Cambridge University Press. pp. 55- 138 ,(2008) , 10.1017/CBO9780511754807.003
H. Schulz, M. Gehre, D. Hofmann, K. Jung, Nitrogen isotope ratios in pine bark as an indicator of N emissions from anthropogenic sources. Environmental Monitoring and Assessment. ,vol. 69, pp. 283- 297 ,(2001) , 10.1023/A:1010705907525
R. Bargagli, I. Mikhailova, Accumulation of Inorganic Contaminants Springer, Dordrecht. pp. 65- 84 ,(2002) , 10.1007/978-94-010-0423-7_6
J. PEARSON, D. M. WELLS, K. J. SELLER, A. BENNETT, A. SOARES, J. WOODALL, M. J. INGROUILLE, Traffic exposure increases natural 15N and heavy metal concentrations in mosses New Phytologist. ,vol. 147, pp. 317- 326 ,(2000) , 10.1046/J.1469-8137.2000.00702.X
J. Neil Cape, Ludger J. van der Eerden, Lucy J. Sheppard, Ian D. Leith, Mark A. Sutton, Reassessment of Critical Levels for Atmospheric Ammonia Springer, Dordrecht. pp. 15- 40 ,(2009) , 10.1007/978-1-4020-9121-6_2
I. D. Leith, P. A. Wolseley, C. E. R. Pitcairn, M. A. Sutton, C. P. Whitfield, N. van Dijk, Biomonitoring methods for assessing the impacts of nitrogen pollution: refinement and testing JNCC. ,(2005)
Winfried Schröder, Marcel Holy, Roland Pesch, Harry Harmens, Hilde Fagerli, Renate Alber, Mahmut Coşkun, Ludwig De Temmerman, Marina Frolova, Laura González-Miqueo, Zvonka Jeran, Eero Kubin, Sébastien Leblond, Siiri Liiv, Blanka Maňkovská, Juha Piispanen, Jesús M. Santamaría, Primož Simonèiè, Ivan Suchara, Lilyana Yurukova, Lotti Thöni, Harald G. Zechmeister, First Europe-wide correlation analysis identifying factors best explaining the total nitrogen concentration in mosses. Atmospheric Environment. ,vol. 44, pp. 3485- 3491 ,(2010) , 10.1016/J.ATMOSENV.2010.06.024
Inga E. Bruteig, The epiphytic lichen hypogymnia physodes as a biomonitor of atmospheric nitrogen and sulphur deposition in Norway Environmental Monitoring and Assessment. ,vol. 26, pp. 27- 47 ,(1993) , 10.1007/BF00555060