Nutrient emissions into river basins of Germany: research report 29625515
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2000
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2000,23 Environmental research of the Federal Ministry of the Environment, Nature Conservation and Nuclear Safety : research project water |
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245 | 1 | 0 | |a Nutrient emissions into river basins of Germany |b research report 29625515 |c Umweltbundesamt. [Ed. by: Section II 3.2. Durchführende Inst. Institut für Gewässerökologie und Binnenfischerei im Forschungsverbund Berlin e.V.]. By Horst Behrendt ... With contributions by Wolf-Gunther Pagenkopf ... |
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adam_text |
Titel: Nutrient emissions into river basins of Germany
Autor: Behrendt, Horst
Jahr: 2000
-1-
Contents
Figures.iii
Tables.v
Maps.viii
Abbreviations.x
Summary.xvi
1 Introduction.1
2 Database.3
2.1 Spatial input data.'.3
2.2 Database for the quantification of nutrients via point sources.8
2.2.1 Municipal wastewater treatment plants in Germany.8
2.2.2 Municipal wastewater treatment plants outside Germany.13
2.2.3 Industrial direct dischargers.14
2.3 Monitoring data.15
2.3.1 Groundwater.15
2.3.2 Catchments and data of surface water monitoring.16
3 Methods.45
3.1 Emission method.45
3.1.1 Inputs via point sources.47
3.1.1.1 Nutrient inputs via municipal wastewater treatment plants in Germany. .47
3.1.1.2 Nutrient inputs via municipal wastewater treatment plants outside
Germany.59
3.1.1.3 Nutrient inputs via direct industrial dischargers.59
3.1.2 Inputs via diffuse sources.59
3.1.2.1 Nutrient surpluses on the agricultural area and their long term change .60
3.1.2.2 Direct nutrient inputs to the surface waters via atmospheric deposition.68
3.1.2.3 Nutrient inputs via surface runoff.72
3.1.2.4 Nutrient inputs via erosion.76
3.1.2.5 Nutrient inputs via tile drainage.91
3.1.2.6 Nutrient inputs via groundwater.100
3.1.2.7 Nutrient inputs via urban areas.114
-11-
3.2 Nutrient load of the rivers.:.124
3.3 Nutrient retention and losses in river systems.130
Results.145
4.1 Emission method according to MONERIS.146
4.1.1 Inputs via point sources in Germany.146
4.1.1.1 Nutrient inputs via municipal wastewater treatment plants in
Germany.146
4.1.1.2 Nutrient inputs via direct industrial dischargers.153
4.1.2 Inputs via diffuse sources in Germany.154
4.1.2.1 Direct nutrient inputs to the surface waters via atmospheric
deposition.154
4.1.2.2 Nutrient inputs via surface runoff.157
4.1.2.3 Nutrient inputs via erosion.'.159
4.1.2.4 Nutrient inputs via tile drainage.162
4.1.2.5 Nutrient inputs via groundwater.167
4.1.2.6 Nutrient inputs via urban areas.170
4.1.2.7 Total nutrient inputs via diffuse sources.178
4.1.3 Total nutrient inputs via diffuse and point sources.190
4.1.4 Nutrient inputs under consideration of sources in other countries.198
4.1.5 Comparison of nutrient inputs according to MONERIS with other estimates.205
4.2 Nutrient load of the rivers.211
4.3 Comparison of nutrient loadings according to MONERIS with loadings calculated from
measurements.215
4.4 Comparison with the results of the immission method.219
Scenarios.247
5.1 Municipal wastewater treatment plants.247
5.2 Diffuse sources.249
5.3 Overall results of the scenarios.'.252
References. .254
Figures
Figure 3.1: Pathways and processes considered in the model MONE.RIS.46
Figure 3.2: Scheme of estimation methods for municipal WWTP's.50
Figure 3.3: Long-term changes in the nitrogen surpluses of agricultural areas of the old and new
German states from 1950 to 1995.63
Figure 3.4: Long-term changes in the phosphorus surpluses of the agricultural areas of the old and new
German states from 1950 to 1995.64
Figure 3.5: Long-term changes in the nitrogen surpluses of the agricultural areas of the old and new
German states for 1950 to 1995 and also averages for the previous 10,20 and 30 years.67
Figure 3.6: Phosphorus accumulation in the agricultural areas of the new and old German states since
1948.68
Figure 3.7: Relationship between the water surface area of German catchments estimated according to
the digital landuse map and the statistics of municipalities.69
Figure 3.8: Dependence of the water-extractable P-concentration on the P-saturation of soils.74
Figure 3.9: The relationship between erosion values according to DEUMLICH Frielinghaus (1994)
and GOndra et al. (1995) and the used soil losses.77
Figure 3.10: Comparison between SARas and SARMod.81
Figure 3.11: Determination of the critical runoff values - the Regnitz near Pettstadt as an example.82
Figure 3.12: Various loading components for the example of Regnitz near Pettstadt.84
Figure 3.13: Comparison between the critical loads and the estimated sediment inputs.85
Figure 3.14: Relationship between the calculated Enrichment Ratios and the specific load of suspended
solids.91
Figure 3.15: Schematic overview on calculation of the nutrient inputs via tile drainage.92
Figure 3.16: Relationship between actual and calculated proportion of agricultural land in catchment
areas and Water and Soil Associations which is drained.95
Figure 3.17: Comparison of long-term changes in nitrate concentrations or loadings with average N-
surpluses of agricultural land for the Rhine/Lobith, Danube/Jochenstein and
Elbe/Tangermunde stations.106
Figure 3.18: Relationship between the nitrate concentration in groundwater and the nitrogen
concentration in the root-zone for the studied catchment areas.110
Figure 3.19: Dependence of the relationship of N03-N-concentrations in groundwater and beneath the
root-zone on the leakage water level in the studied catchment areas.Ill
Figure 3.20: Relationship between the measured and calculated groundwater nitrate concentrations in
groundwater and the calculated concentrations.113
Figure 3.21: Input paths from urban areas.115
Figure 3.22: Variation in average runoff on a measurement day from average daily runoff in the studied
time periods.126
Figure 3.23: Comparison of suspended solid loadings calculated with different methods.128
Figure 3.24: Relationship between nutrient inputs and the nutrient loadings for various catchment areas
in Europe.131
Figure 3.25: Dependence of the fractions of nutrient loadings to nutrient input from the specific runoff
in the studied catchment areas.132
Figure 3.26: Dependence of the fractions of nutrient loadings to nutrient input from the hydraulic load in
the studied catchment areas.133
Figure 3.27: Relationship between the calculated and measured nutrient loadings for the studied
European catchment areas.135
Figure 4.1: Proportion of EKKN by the people disposed indirectly in municipal wastewater treatment
plants on the whole nitrogen inputs for 1985 and 1995.148
Figure 4.2: Proportion of EKKp by the people disposed indirectly in municipal wastewater treatment
plants on the whole phosphorus inputs for 1985 and 1995.151
Figure 43: Comparison of the estimated erosion derived nutrient inputs for catchment areas of
unconsolidated rock regions according to Werner Wodsak (1994) and MONERIS.160
-IV-
Figure 4.4: Comparison of the estimated nitrogen inputs via tile drainage according to Behrendt
(1996a) and MONERIS for Mecklenburg-Western Pomeranian catchment areas.164
Figure 4.5: Nitrogen inputs in German catchment areas via diffuse pathways for the periods 1983-1987
and 1993-1997.182
Figure 4.6: Proportion of the various diffuse pathways to the total nitrogen inputs in German catchment
areas for the periods 1983-1987 and 1993-1997.183
Figure 4.7: Phosphorus inputs in German catchment areas via diffuse pathways for the periods
1983-1987 and 1993-1997.188
Figure 4.8: Proportion of the various diffuse pathways to the total phosphorus inputs in German
catchment areas for the periods 1983-1987 and 1993-1997.189
Figure 4.9: Nitrogen inputs in German catchment areas via point and diffuse inputs in the periods
1983-1987 and 1993-1997.192
Figure 4.10: Proportions of different pathways to the total nitrogen inputs in German catchment areas in
the periods 1983-1987 and 1993-1997.193
Figure 4.11: Phosphorus inputs in German catchment areas via point and diffuse inputs in tlie periods
1983-1987 and 1993-1997.196
Figure 4.12: Proportions of different pathways to the total phosphorus inputs in German catchment areas
in the periods 1983-1987 and 1993-1997.197
Figure 4.13: Nitrogen inputs in the Danube, Rhine and Elbe catchment areas in the periods 1983-1987
and 1993-1997 under consideration of catchment parts in other countries.200
Figure 4.14: Proportion of point and diffuse nitrogen inputs in the Danube, Rhine and Elbe catchment
areas in Germany and other countries in the periods 1983-1987 and 1993-1997.201
Figure 4.15: Phosphorus inputs in the Danube, Rhine and Elbe catchment areas in the periods 1983-987
and 1993-1997 under consideration of catchment parts in other countries.203
Figure 4.16: Proportion of point and diffuse phosphorus inputs in the Danube, Rhine and Elbe
catchment areas in Germany and other countries in the periods 1983-1987 and 1993-1997.204
Figure 4.17: Comparison of estimated N-inputs according to MONERIS and other authors.207
Figure 4.18: Comparison of estimated P-inputs according to MONERIS and other authors.210
Figure 4.19: Change in flows and DIN-, TN- and TP-loadings between 1983-87 and 1993-97.214
Figure 4.20: Specific DIN-loadings 1983-1987 and 1993-1997.214
Figure 4.21: Specific TP-loadings 1983-1987 and 1993-1997.215
Figure 4.22: Comparison of MONERIS and .measured" estimates of DIN- and TP-loadings for the
studied rivers in the period 1983-1987.216
Figure 4.23: Comparison of MONERIS and .measured" estimates of DIN- and TP-loadings for the
studied rivers in the period 1993-1997.217
Figure 4.24: Comparison of the proportion of diffuse inputs of phosphorus and nitrogen estimated with
the immission method and with MONERIS.221
Figure 4.25: Dependence of the deviation between the estimates of the immission and emission method
on the connection of paved urban areas to the combined sewers for nitrogen in the period
1993-1997.222
Tables
-V-
Table 2.1: Tile drained areas in the districts of the former GDR.7
Table 2.2: Sources of information used for 1995.10
Table 2.3: Sources of information used for 1985.10
Table 2.4: Wastewater treatment plants registered in 1995.11
Table 2.5: Wastewater treatment plants registered in 1985.12
Table 2.6: Table from the processing table program of the statistics of the public wastewater
purification.12
Table 2.7: Nutrient inputs from municipal wastewater treatment plants in the river basins of the
Danube, Rhine and Elbe in other countries.13
Table 2.8: Nutrient inputs in the river basins from direct industrial discharges in Germany and other
countries.15
Table 2.9: Monitoring stations with daily discharge and suspended solid measurements.17
Table 2.10: Monitoring stations, discharge and water quality data in the Danube catchment area.18
Table 2.11: Monitoring stations, discharge and water quality data in the Rhine catchment area.19
Table 2.12: Monitoring stations, discharge and water quality data in the Weser catchment area.20
Table 2.13: Monitoring stations, discharge and water quality data in the Elbe catchment area.21
Table 2.14: Monitoring stations, discharge and water quality data in the catchment area of the Ems and
other North Sea rivers.22
Table 2.15: Monitoring stations, discharge and water quality data in the catchment area of t:ie Odra and
other Baltic Sea rivers.13
Table 3.1: Wastewater statistics for 1995: Capacity, treated population equivalents and rate of
utilization from the AbwV size classes.48
Table 3.2: Key for the ATV-nutrient loading levels.51
Table 3.3: Modified key for concentration calculation from the ATV-nutrient loading levels.52
Table 3.4: Overview of inhabitant-specific phosphorus outputs.54
Table 3.5: N-removal performance for various types of wastewater treatment plants.57
Table 3.6: P-removal performance for various types of wastewater treatment plants.57
Table 3.7: Maxima for N- and P- purification performance of the corrected calculation.58
Table 3.8: Long term changes of nitrogen surplus in agricultural areas in the old and new German states
referred to Bach et al. (1998) and Behrendt (1988) and means of the 10,20 and 30
previous years.65
Table 3.9: Long term changes of phosphorus surplus and phosphorus accumulation in agricultural areas
since 1948 in the old and new German states referred to BACH ET AL. (1998) and BEHRENDT
(1988).66
Table 3.10: Estimation of used nutrient concentrations in surface runoff for arable land, grassland and
open areas.74
Table 3.11: Crop C-factors.76
Table 3.12: Comparison between SARg1S and various parameters of the catchment areas for the 23 part-
areas of the Spree and the Salza.80
Table 3.13: Average and critical outflow values and also load components for the studied catchment
areas.83
Table 3.14: Calculated enrichment ratios, P-content of suspended material and surface soils for the
studied Danube catchment area in the period 1993-1997.90
Table 3.15: Drained area as the proportion of agricultural land in studied catchments of the Water and
Soil Associations of the new German states.92
Table 3.16: The proportion of agricultural land by soil group for the catchments of the Water and Soil
Associations and the estimated drainage area in the new German states.94
Table 3.17: Weighting factors for the different regional soil types.95
Table 3.18: Comparison of estimates of the size of drained areas for the old and new German states.96
Table 3.19: Average phosphorus concentrations in drainage water from agricultural land.97
-VI-
Table 3.20: Phosphorus concentrations used for drainage water for various soil types.98
Table 3.21: Average N03-N concentrations in drainage water from agricultural areas.99
Table 3.22: P-concentrations in groundwater for various soil types.103
Table 3.23: Average changes in nitrate concentration in groundwater at the Baden-Wurttemberg and
Bavaria observation stations since 1983.105
Table 3.24: Regression coefficients for the relationship between the nitrate concentration or loading and
the long-term nitrogen surplus for the previous years for the Rhine at Lobith, the Danube at
Jochenstein and the Elbe at Tangermiinde.107
Table 3.25: Model coefficients for the determination of N-retention in areas with various hydrological
conditions.112
Table 3.26: P-runoff concentrations in separate sewer systems.117
Table 3.27: N-runoff concentrations in separate sewers systems.118
Table 3.28: Storage volume of rainfall overflow tanks and removal grade for individual German states in
1987, 1991 and 1995.121
Table 3.29: Discharge parameter values used for the calculations in the mixed system with discharge.122
Table 3.30: Comparison of the model results of Brombach Michelbach (1998) and MONERIS for
the nutrient concentrations in the combined sewer systems in the case of discharge for
various removal grades and 50 effective heavy rain days.122
Table 3.31: Variation in loading-calculations from fortnightly and daily measurements at Bad Honnef
and Lobith-Bimmen.126
Table 3.32: Variation of the suspended solid loads calculated from fortnightly and daily measurements.129
Table 3.33: Results of the regression analysis between nutrient retention in the river systems and the
specific runoff or the hydraulic load.134
Table 4.1: Catchment areas of the large river basins and their main tributaries.145
Table 4.2: N-inputs, inhabitant specific N-emissions, average N-elimination performance of German
WWTP's, connected inhabitants and population equivalents caused by indirect industrial
discharges for 1985 and 1995.146
Table 4.3: P-inputs, inhabitant specific P-emissions, average P-elimination performance of German
WWTP's, connected inhabitants and population equivalents caused by indirect industrial
discharges for 1985 and 1995.149
Table 4.4: Comparison of results for N- and P- inputs of municipal wastewater treatment plants in
Germany with other information.152
Table 4.5: Nutrient inputs in German catchment areas via direct industrial discharges for 1985 and 1995
and their changes.153
Table 4.6: Average atmospheric N-deposition in 1985 and 1996 for German catchment areas.155
Table 4.7: Nutrient inputs in German catchment areas via atmospheric deposition on water surfaces in
the periods 1983-1987 and 1993-1997 and their changes.156
Table 4.8: Comparison of nutrient inputs via surface runoff for all of Germany and in the old and new
German states for the period 1983-87 with the years 1987 (OGS) and 1988/89 (NGS)
according to WERNER WODSAK (1994) and MONERIS.157
Table 4.9: Nutrient inputs in German catchment areas via surface runoff in the periods 1983-1987 and
1993-1997 and their changes.158
Table 4.10: Comparison of nutrient inputs via erosion for all of Germany and in the old and new German
states for the period 1983-87 with the years 1987 (OGS) and 1988/89 (NGS) according to
WERNER Wodsak (1994) andMONERIS.159
Table 4.11: Nutrient inputs in German catchment areas via erosion for the periods 1983-1987 and
1993-1997 and their changes.161
Table 4.12: Comparison of nutrient inputs via tile drainage for all of Germany and in the old and new
German states for the period 1983-87 with the years 1987 (OGS) and 1988/89 (NGS)
according to Werner Wodsak (1994) and MONERIS.163
Table 4.13: Phosphorus inputs in German catchment areas via tile drainage in the periods 1983-87 and
1993-97 and their changes, specific emissions in 1993-97 and drained areas covered in
agricultural areas.165
-V11-
Table 4.14: Nitrogen inputs in German catchment areas via tile drainage in the periods 1983-87 and
1993-97 and their changes, specific emissions in 1993-97 and drained areas covered in
agricultural areas.166
Table 4.15: Comparison of nutrient inputs via groundwater for all of Germany and in the old and new
German states for the period 1983-87 with the years 1987 (OGS) and 1988/89 (NGS)
according to WERNER WODSAK (1994) and MONERIS.168
Table 4.16: Nutrient inputs in German catchment areas via groundwater and natural interflow in the
periods 1983-1987 and 1993-1997 and their changes.169
Table 4.17: Comparison of nutrient inputs via separated and combined sewer overflows according to
MONERIS and other authors._.171
Table 4.18: Comparison of nutrient inputs via inhabitants and paved urban areas not connected to
sewerage or neither sewer nor WWTP connection according to MONERIS and other
authors.172
Table 4.19: Phosphorus inputs in German catchment areas via separate sewer systems and combined
sewer overflows in the periods 1983-1987 and 1993-1997 and their changes.173
Table 4.20: Nitrogen inputs in German catchment areas via separate sewer systems and combined sewer
overflows in the periods 1983-1987 and 1993-1997 and their changes.174
Table 4.21: Phosphorus inputs in German catchment areas via inhabitants and paved urban areas not
connected to sewerage or neither sewer nor WWTP connection in the periods 1983-1987 and
1993-1997 and their changes.176
Table 4.22: Nitrogen inputs in German catchment areas via inhabitants and paved urban areas not
connected to sewerage or neither sewer nor WWTP connection in the periods 1983-1987 and
1993-1997 and their changes.177
Table 4.23: Diffuse liifrogen inputs in German catchment areas in the period 1993-1997.179
Table 4.24: Diffuse nitrogen inputs in German catchment areas in the period 1983-1987.180
Table 4.25: Changes in diffuse nitrogen inputs in German catchment areas between 1983-1987 and
1993-1997.181
Table 4.26: Diffuse phosphorus inputs in German catchment areas in the period 1993-1997.185
Table 4.27: Diffuse phosphorus inputs in German catchment areas in the period 1983-1987.186
Table 4.28: Changes in diffuse phosphorus inputs in German catchment areas between 1983-1987 and
1993-1997.187
Table 4.29: Diffuse and total nitrogen inputs in German catchment areas in the periods 1983-1987 and
1993-1997 and changes in total nitrogen inputs.190
Table 4.30: Diffuse and total phosphorus inputs in German catchment areas in the periods 1983-1987
and 1993-1997 and changes in total nitrogen inputs.194
Table 4.31: Point source and diffuse nitrogen inputs in 1983-1987 and 1993-1997 in catchment areas
with more than 10% outside Germany and changes in total inputs based on hydrological
conditions found in 1983-1987.199
Table 4.32: Point source and diffuse phosphorus inputs in 1983-1987 and 1993-1997 in catchment areas
with more than 10% outside Germany and changes in total inputs based on hydrological
conditions found in 1983-1987.202
Table 4.33: Comparison of estimated sums of total and diffuse N-inputs for various catchment areas
according to MONERIS and other authors.206
Table 4.34: Comparison of estimated sums of total and diffuse P-inputs for various catchment areas
according to MONERIS and other authors.209
Table 4.35: Discharges and nutrient loadings for the period 1983-1987.211
Table 436: Discharges and nutrient loadings for the 1993-1997 period.212
Table 4.37: Changes in discharges and nutrient loadings between 1983-1987 and 1993-1997.213
Table 4.38: Comparison of estimated proportions of diffuse inputs in the nutrient loadings of chosen
rivers according to MONERIS and with the immission method for the periods 1983-1987
and 1993-1997.220
Table 5.1: Changes in nitrogen and phosphorus emissions of municipal wastewater treatment plants
according to the realisation of various scenarios.248
Table 5.2: Changes in nitrogen and phosphorus emissions from diffuse sources according to the
realisation of various scenarios.251
Maps
-Vlll-
Map2.1: Landuse.24
Map 2.2: Soil regions of Germany.25
Map 2.3: Hydrogeology.;.26
Map 2.4: River network.27
Map 2.5: River basins and monitoring stations.,.28
Map 2.6: Topography.29
Map 2.7: Density of population.30
Map 2.8: Livestock for municipalities resp. districts.31
Map 2.9: Recorded tile drained areas.32
Map 2.10: Portion of tile drained areas on agricultural areas in the river catchments of Germany.33
Map 2.11: Soil erosion for municipalities resp. districts.34
Map 2.12: Atmospheric deposition of nitrogen 1996.35
Map 2.13: Location of municipal wastewater treatment plants in Germany 1995.36
Map 2.14: Groundwater monitoring stations.37
Map 2.15: Monitoring stations with daily flow and suspended solids measurements.38
Map 2.16: Monitoring stations in the Danube catchment.39
Map 2.17: Monitoring stations in the Rhine catchment.40
Map 2.18: Monitoring stations in the Weser catchment.41
Map 2.19: Monitoring stations in the Elbe catchment.42
Map 2.20: Monitoring stations in the Ems and North Sea catchments.43
Map 2.21: Monitoring stations in the Odra and Baltic Sea catchments.44
Map 3.1: Nitrogen surplus for agricultural areas in German districts 1995.136
Map 3.2: Phosphorus surplus for agricultural areas in German districts 1995.137
Map 3.3: Grid map of soil erosion.138
Map 3.4: Soil erosion of the agricultural area.139
Map 3.5: SARGis-Catchments.140
Map 3.6: SRP concentration in groundwater 1993-95.141
Map 3.7: Nitrate concentration in groundwater 1993-95.142
Map 3.8: Changes of the N-concentration in groundwater for the period 1985 to 1995 in Bavaria and
Baden- Wurttemberg.143
Map 3.9: TN-concentration in leakage water 1995.144
Map 4.1: Overview of the selected catchment areas.223
Map 4.2: Population specific N-emissions via municipal wastewater treatment plants 1985.224
Map 4.3: Population specific N-emissions via municipal wastewater treatment plants 1995.225
Map 4.4: Population specific P-emissions via municipal wastewater treatment plants 1985.226
Map 4.5: Population specific P-emissions via municipal wastewater treatment plants 1995.227
Map 4.6: Specific N-emissions via surface runoff 1995.228
Map 4.7: Specific P-emissions via surface runoff 1995.229
Map 4.8: Specific N-emissions via erosion 1995.230
Map 4.9: Specific P-emissions via erosion 1995.231
Map 4.10: Specific N-emissions via tile drainage 1995.232
Map 4.11: Specific P-emissions via tile drainage 1995.233
Map 4.12: Specific N-emissions via groundwater 1995.234
Map 4.13: N-retention in unsaturated and saturated zone.235
Map 4.14: Specific P-emissions via groundwater 1995.236
Map 4.15: Specific N-emissions via urban areas 1995.237
Map 4.16: Specific P-emissions via urban areas 1995.238
Map 4.17: Specific N-emissions via diffuse pathways 1985.239
-IX-
Map 4.18: Specific N-emissions via diffuse pathways 1995.240
Map 4.19: Specific P-emissions via diffuse pathways 1985.241
Map 4.20: Specific P-emissions via diffuse pathways 1995.242
Map 4.21: Total specific N-emissions 1985.243
Map 4.22: Total specific N-emissions 1995.244
Map 4.23: Total specific P-emissions 1985.245
Map 4.24: Total specific P-emissions 1995.246 |
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geographic | Deutschland (DE-588)4011882-4 gnd |
geographic_facet | Deutschland |
id | DE-604.BV013413213 |
illustrated | Illustrated |
indexdate | 2024-10-09T14:00:42Z |
institution | BVB |
institution_GND | (DE-588)5123614-X |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-009152735 |
oclc_num | 76189159 |
open_access_boolean | |
owner | DE-12 DE-634 DE-83 DE-M490 |
owner_facet | DE-12 DE-634 DE-83 DE-M490 |
physical | XXIII, 4, 261 S. graph. Darst., Kt. : 29 cm |
publishDate | 2000 |
publishDateSearch | 2000 |
publishDateSort | 2000 |
publisher | Umweltbundesamt |
record_format | marc |
series2 | Deutschland / Umweltbundesamt: Texte Environmental research of the Federal Ministry of the Environment, Nature Conservation and Nuclear Safety : research project water |
spelling | Nutrient emissions into river basins of Germany research report 29625515 Umweltbundesamt. [Ed. by: Section II 3.2. Durchführende Inst. Institut für Gewässerökologie und Binnenfischerei im Forschungsverbund Berlin e.V.]. By Horst Behrendt ... With contributions by Wolf-Gunther Pagenkopf ... Berlin Umweltbundesamt 2000 XXIII, 4, 261 S. graph. Darst., Kt. : 29 cm txt rdacontent n rdamedia nc rdacarrier Deutschland / Umweltbundesamt: Texte 2000,23 Environmental research of the Federal Ministry of the Environment, Nature Conservation and Nuclear Safety : research project water Literaturverz. S. 254 - 261. - Dt. Ausg. u.d.T.: Nährstoffbilanzierung der Flußgebiete Deutschlands Fluss (DE-588)4131972-2 gnd rswk-swf Nährstoffbilanz (DE-588)4219547-0 gnd rswk-swf Einzugsgebiet (DE-588)4151469-5 gnd rswk-swf Deutschland (DE-588)4011882-4 gnd rswk-swf Deutschland (DE-588)4011882-4 g Fluss (DE-588)4131972-2 s Einzugsgebiet (DE-588)4151469-5 s Nährstoffbilanz (DE-588)4219547-0 s DE-604 Behrendt, Horst Sonstige oth Institut für Gewässerökologie und Binnenfischerei Sonstige (DE-588)5123614-X oth Parallele Sprachausgabe deutsch Nährstoffbilanzierung der Flußgebiete Deutschlands Umweltbundesamt: Texte Deutschland 2000,23 (DE-604)BV005532599 2000,23 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009152735&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Nutrient emissions into river basins of Germany research report 29625515 Fluss (DE-588)4131972-2 gnd Nährstoffbilanz (DE-588)4219547-0 gnd Einzugsgebiet (DE-588)4151469-5 gnd |
subject_GND | (DE-588)4131972-2 (DE-588)4219547-0 (DE-588)4151469-5 (DE-588)4011882-4 |
title | Nutrient emissions into river basins of Germany research report 29625515 |
title_auth | Nutrient emissions into river basins of Germany research report 29625515 |
title_exact_search | Nutrient emissions into river basins of Germany research report 29625515 |
title_full | Nutrient emissions into river basins of Germany research report 29625515 Umweltbundesamt. [Ed. by: Section II 3.2. Durchführende Inst. Institut für Gewässerökologie und Binnenfischerei im Forschungsverbund Berlin e.V.]. By Horst Behrendt ... With contributions by Wolf-Gunther Pagenkopf ... |
title_fullStr | Nutrient emissions into river basins of Germany research report 29625515 Umweltbundesamt. [Ed. by: Section II 3.2. Durchführende Inst. Institut für Gewässerökologie und Binnenfischerei im Forschungsverbund Berlin e.V.]. By Horst Behrendt ... With contributions by Wolf-Gunther Pagenkopf ... |
title_full_unstemmed | Nutrient emissions into river basins of Germany research report 29625515 Umweltbundesamt. [Ed. by: Section II 3.2. Durchführende Inst. Institut für Gewässerökologie und Binnenfischerei im Forschungsverbund Berlin e.V.]. By Horst Behrendt ... With contributions by Wolf-Gunther Pagenkopf ... |
title_short | Nutrient emissions into river basins of Germany |
title_sort | nutrient emissions into river basins of germany research report 29625515 |
title_sub | research report 29625515 |
topic | Fluss (DE-588)4131972-2 gnd Nährstoffbilanz (DE-588)4219547-0 gnd Einzugsgebiet (DE-588)4151469-5 gnd |
topic_facet | Fluss Nährstoffbilanz Einzugsgebiet Deutschland |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009152735&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV005532599 |
work_keys_str_mv | AT behrendthorst nutrientemissionsintoriverbasinsofgermanyresearchreport29625515 AT institutfurgewasserokologieundbinnenfischerei nutrientemissionsintoriverbasinsofgermanyresearchreport29625515 |