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ICP Forests: Reporting period 2015/2016
Walter Seidling, Thünen Institute of Forest Ecosystems
2nd EMEP / WGE session 13-16 Sept. 2016
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ICP Forests Activies 2015/2016
- 32nd Task Force Meeting, 10-13 May 2016 at Luxembourg, back-to-back with 5th Scientific Conference
- at TFM: Contributions from ICP Integrated Monitoring and ICP Vegetation
- Joint Expert Panel Meeting (Growth, Meteo – Pheno – LAI, Biodiv) 18-21 April 2016 at Peteşti/Romania
- Project Co-ordinating Group Meeting 7-8 Oct. 2015 at Berlin/Germany
- Report at TFM ICP Vegetation, 29 Feb – 4 March 2016 at Dubna/Russia
- Report at TFM M&M, 19-22 April 2016 at Dessau/Germany
13.-16.09. 2016
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5th Scientific Conference of ICP Forests 2016: 23 oral presentations, 15 posters
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Executive Report 2016
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Executive Report 2016
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first results from an ongoing evaluation presented at the Scientific Conference of ICP Forests by Johnson et al. (2016)
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Technical Report 2016
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TR 2016, Chap. 2: THE MONITORING AND RESEARCH INFRASTRUCTURE OF ICP FORESTS
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Survey (selection) N of plots with data submitted 2009 – 2013
Any survey (all plots) 618
Crown condition 294
Foliar chemical analysis 150
Soil solution 129
Deposition 207
Meteorology 164
Litterfall 101
Ground vegetation 23
Phenology 35
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ICP Forests, Level II: Meteo and Depo Measurements
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ntotal = 618
nDepo09-13 = 207
nMeteo 09-13= 164
nDepo+Meteo = 128
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ICP F, Level II: Foliar and Soil Solution Measurements
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ntotal = 618
nFoliar09-13 = 150
nSoil Sol.09-13= 129
nFoiar+SoilSol= 91
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TR 2016, Chap. 2: THE MONITORING AND RESEARCH INFRASTRUCTURE OF ICP FORESTS
ICP Forests, Technical Report 2016: Table 2-3. Co-location or co-operation with infrastructure of other ICPs at 358 active Level II plots (24.3% no co-location); information given by national authorities (NFCs).
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ICP IM ICP Vegetation, moss survey
ICP M&M ICP Waters LTER and E-LTER LTER and E-LTER proposed
42 (11.7%) 69 (19.2%) 33 (9.2%) 37 (10.3%) 81 (22.6%) 9 (2.5%)
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TR 2016, Chap. 2: THE MONITORING AND RESEARCH INFRASTRUCTURE OF ICP FORESTS
ICP Forests, Technical Report 2016, Table 2-5. Nature protection status of 358 active Level II plots, participating in the poll in autumn 2015.
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No nature protection Any kind of national nature protection only
Both, national and Natura 2000 status
Any Natura 2000 status
40 (11.2%) 65 (18.2%) 31 (8.7%)
222 (62.0%) 136 (38.0%)
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ICP Forests Level I
n = 4 818 plots
(in 2015) in
21 countries
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ICP Forests Level I
n = 4 818 plots
(in 2015) in
21 countries;
mean defoliation:
Common beech:
19.6% (-1.7%)
Deciduous oak: 23.4%
(-1.8%)
Scots pine: 21.4%
(+0.7)
Noway spurce: 20.2%
(-0.8%)
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Nem. dec. oaks, s = 0.333***
Med. evergreen oaks, s = 1.000*** Med. dec. oaks, s = 0.333***
Common beech, s = 0.174***
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Properties/options of the ICP Forests network
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Scots pine, s = 0.000 Norway spruce, s = 0.076***
Austrian pine, s = 0.500*** Med. lowland pines, s = 0.800***
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Development of randomly selected plot-specific means (1/10th from each country)
March 2015 Walter Seidling Page 16
Common beech
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TR, Chap. 4: SPATIAL VARIATION OF ATMOSPHERIC DEPOSITION IN EUROPE IN 2014 Aldo Marchetto, Peter Waldner7
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TR, Chap. 4: SPATIAL VARIATION OF ATMOSPHERIC DEPOSITION IN EUROPE IN 2014 Aldo Marchetto, Peter Waldner7
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sea-salt corr. SO4-S
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TR, Chap. 4: SPATIAL VARIATION OF ATMOSPHERIC DEPOSITION IN EUROPE IN 2014 Aldo Marchetto, Peter Waldner7
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sea-salt corr. Ca
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TR: 5 SPATIAL AND TEMPORAL DISTRIBUTION OF OZONE SYMPTOMS ACROSS EUROPE 2002-2014
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Elena Gottardini, Vicent Calatayud, Marco Ferretti,
Matthias Haeni, Marcus Schaub*
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TR: 5 SPATIAL AND TEMPORAL DISTRIBUTION OF OZONE SYMPTOMS ACROSS EUROPE 2002-2014
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Elena Gottardini, Vicent Calatayud, Marco
Ferretti, Matthias Haeni, Marcus Schaub*
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TR 2016; Chap. 5:
Elena Gottardini, Vicent
Calatayud, Marco
Ferretti, Matthias Haeni,
Marcus Schaub*
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TR 2016; Chap. 5:
Elena Gottardini, Vicent
Calatayud, Marco Ferretti,
Matthias Haeni, Marcus
Schaub*
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TR 2016, Chap. 6: RING TESTS AS MAIN PARTS OF THE QUALITY
ASSURANCE AND CONTROL PROGRAMME FOR THE COMPARABILITY OF
ANALYTICAL DATA WITHIN THE ICP FORESTS MONITORING
PROGRAMME
Nils König, Nathalie
Cools, Kirsti
Derome, Alfred
Fürst, Tamara
Jakovljević, Aldo
Marchetto
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Name des Wissenschaftlers
TR 2016, Chap. 6: RING TESTS AS MAIN PARTS OF THE QUALITY
ASSURANCE AND CONTROL PROGRAMME FOR THE COMPARABILITY OF
ANALYTICAL DATA WITHIN THE ICP FORESTS MONITORING
PROGRAMME
Nils König,
Nathalie Cools,
Kirsti Derome,
Alfred Fürst,
Tamara Jakovljević,
Aldo Marchetto
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TR 2016, Chap. 7: THE ICP FORESTS LEVEL I BIODIVERSITY DATA
A HARMONIZED DATA SOURCE AND BASELINE FOR PLANT SPECIES
AND STRUCTURAL DIVERSITY ON EUROPEAN FOREST ECOSYSTEMS
Roberto Canullo
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Contribution to SoEF/ Forest Europe
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State of Forests in Europe 2015, Chap. 2.1
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State of Forests in Europe 2015, Chap. 2.1
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In progress: Comparison between EMEP deposition estimates and ICP Forests deposition measurements Third report
Aldo Marchetto, Michela Rogora (CNR-ISE, I) Peter Waldner, Anne Thimonier (WSL, CH), Karin Hansen, Gunilla Pihl Karlsson,
Per Erik Karlsson, (IVL, SE), Dave Simpson, Hilde Fagerli, (Norwegian Meteorological Institute, NO), Tanja Sanders, Thuenen-
Institute, DE), Wim de Vries, (WUR, NL)
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Fig. 3. Measured and modelled open-field deposition (kg ha-1 y-1) in 123 plots for which more than 65% of the analyses passed both ion balance and conductivity tests.
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In progress: Comparison between EMEP deposition estimates and ICP Forests deposition measurements
Marchetto et al. 2016
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R2 modelled / measured, n = 123
S deposition oxN deposition redN deposition N deposition
35% QC, 0.1°, n = 143
0.484 0.324 0.103 0.167
35% QC, 50 km n = 143
0.550 0.327 0.118 0.148
65% QC, 0.1° n = 123
0.463 0.321 0.127 0.198
65% QC, 50 km n = 123
0.528 0.327 0.141 0.166
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In progress: Comparison between EMEP deposition estimates and ICP Forests deposition measurements
Differences between modelled and measured ox. N deposition at ICP Forests and SWETHRO sites.
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In progress: Comparison between EMEP deposition estimates and ICP Forests deposition measurements
Differences between wet modelled and measured open-field red. N deposition at ICP Forests/SWETHRO sites
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In progress: Comparison between EMEP deposition estimates and ICP Forests deposition measurements
In conclusion, the MSC-W model is an important tool to identify areas where N and S deposition may affect forest ecosystems, but is less precise at the highest or lowest deposition levels.
Local measurement of deposition values is needed if high precision data (better than 50% on average) is requested, as needed for case studies on forest ecological processes, aimed at the Level II ICP Forests monitoring network.
Finally, the use of the ICP Forests quality control procedures allowed us to select reliable data and the inclusion of some post-submission validation procedures in the ICP Forests database is strongly recommended [cf. discussion about 2nd or processed layer in ICP Forests database]
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Scientific /technical cooperations with international bodies:
Canada / Alberta
monitoring activities similar to those of ICP Forests
Letter of Intend, TFM 2016
Japan Environment Sanitation Center: Asia Center for Air Pollution Research (ACAP)
Visit by Chair of Scientific Evaluation Committee
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Aggegated soil data base
Data for 286 Level II plots are included.
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Fig. 1 Geographical distribution of Level II plots in the AFSCDB.LII.2.2 database
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Thank you for attention