Developing principles and models for sustainable forestry in Sweden:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Dordrecht [u.a.]
Kluwer Academic Publ.
2002
|
Schriftenreihe: | Managing forest ecosystems
5 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | "Report from a multidisciplinary research programme for Sustainable Forest Management (SUFOR).". - Includes bibliographical references (p. 433-480) |
Beschreibung: | VI, 480 S. Ill., graph. Darst. : 25 cm |
ISBN: | 1402009992 |
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Datensatz im Suchindex
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adam_text | DEVELOPING PRINCIPLES AND MODELS FOR SUSTAINABLE FORESTRY IN SWEDEN
EDITED BY HARALD SVERDRUP DEPARTMENT OF CHEMICAL ENGINEERING AND
DEPARTMENT OF PLANT ECOLOGY, LUND UNIVERSITY, SWEDEN AND INGRID
STJERNQUIST DEPARTMENT OF CHEMICAL ENGINEERING AND DEPARTMENT OF PLANT
ECOLOGY, LUND UNIVERSITY, SWEDEN KLUWER ACADEMIC PUBLISHERS DORDRECHT /
BOSTON / LONDON CONTENTS INTRODUCTION TO THE SUFOR PROGRAMME 1 1.1
FOREWORD BY THE EDITORS 1 1.2 FOREWORD BY THE PROGRAMME DIRECTOR 4 1.3
SUFOR PROGRAMME FORMULATION 5 1.3.1 PROBLEM DESCRIPTION 5 1.3.2
HYPOTHESIZES OF THE PROGRAMME 10 ON SWEDISH FORESTS 13 2.1 THE FORESTS
IN SOUTHERN SWEDEN 13 2.1.1 FOREST CHARACTERISTICS 13 2.1.2 SUFOR
EXPERIMENTAL SITES 16 2.2 FOREST OWNERSHIP IN SWEDEN 16 2.2.1 OWNERSHIP
STRUCTURE 16 2.2.2 PRIVATE OWNERS AND ECOLOGICAL SUSTAINABILITY 18
DENNING SUSTAINABILITY 21 3.1 INTRODUCTION 21 3.2 THE DIMENSIONS OF
SUSTAINABILITY 21 3.3 ASPECTS OF SUSTAINABILITY 23 3.3.1 NATURAL
SUSTAINABILITY 23 3.3.2 SOCIAL SUSTAINABILITY 25 3.3.3 ECONOMIC
SUSTAINABILITY 26 3.3.4 TEMPORAL DIMENSIONS 28 3.3.5 THE SPATIAL
DIMENSIONS 29 3.3.6 BIODIVERSITY 30 3.3.7 HARVEST SUSTAINABILITY 30
3.3.8 THE DYNAMICS OF SUSTAINABILITY 30 3.4 INTEGRATED SUSTAINABILITY 31
PRINCIPLES OF SUSTAINABLE FOREST MANAGEMENT 33 4.1 INTRODUCTION ; 33 4.2
MIXED-SPECIES STANDS AS A COMPONENT 35 4.3 LANDSCAPE AND FORESTS 36 4.4
A TIME OF CHANGES 37 4.4.1 GLOBAL CLIMATE 37 4.4.2 POLLUTION CLIMATE . .
*. 37 4.4.3 THE MARKET 38 4.5 A FUTURE MARKET OUTLOOK 38 4.5.1 PAPER AND
PULP MARKET 39 4.5.2 SAWMILL PRODUCTS 40 4.5.3 WOOD FOR ENERGY 41 4.6
CERTIFICATION 42 CONTENTS 4.6.1 INTRODUCTION 42 4.6.2 CERTIFIED
MANAGEMENT 42 4.6.3 FOREST STEWARDSHIP COUNCILS; FSC AND PEFC 42 4.6.4
-CONCLUSION 43 4.7 THE MANAGEMENT PLANNING PROCEDURE 43 4.7.1
INTRODUCTION 43 4.7.2 PLANNING STRUCTURE . 45 4.7.3 ECONOMIC PRINCIPLES
48 4.7.4 THE PROBLEM OF PRICES AND INTEREST RATES 53 4.7.5 RISKS 54
4.7.6 FUTURE DEVELOPMENT 55 4.8 CONCLUDING REMARKS 56 INTEGRATED
MODELLING 57 5.1 ON THE PRINCIPLE OF MODELLING IN GENERAL 57 5.2
MODELLING THE FOREST SYSTEM 62 5.2.1 INTRODUCTION 62 5.2.2 FOREST MODEL
HISTORY 62 5.2.3 THE SPACE/TIME REALM OF FOREST ECOSYSTEM MODELLING 63
5.2.4 MODEL ROLES 64 5.2.5 SCALING 65 5.2.6 DIFFERENT MODEL APPROACHES
66 5.2.7 OVERVIEW OF SELECTED MODELS 68 5.3 THE INTEGRATED FORSAFE MODEL
74 5.3.1 FINDING A FOREST GROWTH MODEL 76 5.3.2 MERGING PNET, SAFE AND
DECOMP 77 5.3.3 THE SAFE MODEL AND SOIL CHEMISTRY 83 5.4 SUMMARY 83
MODELS OF THE RISK OF WINDTHROW AND FROST 85 6.1 INTRODUCTION 85 6.2 THE
RISK OF WINDTHROW 85 6.2.1 MODEL 86 6.2.2 EVALUATIONS . 87 6.2.3
DISCUSSION 88 6.3 THE RELATIVE RISK OF FROST 88 6.3.1 MODEL 89 6.3.2
RESULTS 90 6.3.3 DISCUSSION 90 6.3.4 ACKNOWLEDGEMENTS 90 BIOGEOCHEMICAL
PROCESSES AND MECHANISMS 91 7.1 INTRODUCTION 91 7.2 ASPECTS OF GROWTH
AND NUTRIENT UPTAKE 92 7.2.1 PLANT GROWTH AND NUTRIENT UPTAKE REGULATION
92 7.2.2 NITROGEN TREE UPTAKE PROCESSES 95 7.2.3 BASE CATION UPTAKE
PROCESSES 100 7.2.4 MODELLING FOREST GROWTH 107 7.2.5 ALLOCATION AND
GROWTH 109 7.3 DECOMPOSITION OF ORGANIC MATTER 114 7.3.1 INTRODUCTION
114 7.3.2 OBJECTIVES 115 7.3.3 MODEL CONCEPT 116 CONTENTS III 7.3.4 DATA
AND METHODS 118 7.3.5 RESULTS 119 7.3.6 DISCUSSION OF DATA EVALUATION
134 7.3.7 DECOMP; INTEGRATED DECOMPOSITION MODELLING 134 7.4 NITROGEN
IMMOBILIZATION 146 7.4.1 INTRODUCTION 146 7.4.2 THEORY 146 7.4.3 RESULTS
147 7.5 NITRIFICATION 148 7.5.1 NITRIFICATION PROCESSES 148 7.5.2 THEORY
148 7.5.3 NITRIFICATION DEPENDENCE ON TEMPERATURE 151 7.5.4 DISCUSSION
152 7.6 DENITRIFICATION 153 7.6.1 THEORY 153 7.6.2 DATA 154 7.6.3
RESULTS 155 7.6.4 DISCUSSION 159 7.6.5 CONCLUSION 162 7.7 THE SAFE MODEL
163 7.7.1 MASS BALANCE EQUATIONS 163 7.7.2 SOIL SOLUTION CHEMISTRY 165
7.7.3 CATION EXCHANGE 166 7.8 WEATHERING OF SOIL MINERALS 172 7.8.1
WEATHERING AND THE PROFILE MODEL 173 7.8.2 CALCULATING FIELD WEATHERING
RATES 183 7.8.3 ESTIMATING SOIL MINERALOGY INPUTS TO THE MODEL 183 7.8.4
INCLUDING CLAY MINERALS IN THE MODEL 186 7.8.5 SOME PERSISTENT MYTHS IN
WEATHERING 191 8 FOREST VITALITY AND STRESS IMPLICATIONS 197 8.1
MECHANISMS AND SYSTEMS OF MULTIPLE STRESS 197 8.1.1 INTERACTION OF
STRESS FACTORS 197 8.1.2 MEMORY EFFECTS 200 8.1.3 FORESTS MANAGEMENT AS
A STRESS FACTOR 200 8.1.4 PLANT STRATEGY AND STRESS 201 8.1.5 SYSTEM
ANALYSIS OF THE STRESS/HEALTH RELATIONSHIP 203 8.2 FOREST HEALTH
INDICATORS 204 8.2.1 VISIBLE INDICATORS FOR ASSESSING TREE VITALITY 204
8.2.2 NUTRIENT CONCENTRATIONS AND RATIOS TO N AS VITALITY INDICATORS 208
8.2.3 SOIL CHEMISTRY 210 8.2.4 PATHOGENS AND INSECTS AS VITALITY
INDICATORS 211 8.2.5 EVALUATION OF VITALITY INDICATORS FOR TREES AND
ECOSYSTEMS 212 8.3 SENSITIVITY TO FROST AND DROUGHT 213 8.3.1 FROST 213
8.3.2 DROUGHT 214 8.4 AIR POLLUTION EFFECTS . . . .* 216 8.4.1
GROUND-LEVEL OZONE 216 8.4.2 ACID DEPOSITION AND SOIL ACIDITY 222 8.4.3
EXPERIMENTAL RESULTS 230 8.4.4 DISCUSSION 235 8.4.5 NITROGEN AND
NUTRIENT IMBALANCE 236 8.5 STRESS BY PATHOGENS AND PESTS 245 IV CONTENTS
8.5.1 PEST AND PATHOGENS IN SWEDISH FORESTS 245 8.5.2 EFFECTS OF
NUTRIENT IMBALANCES ON PEST AND PATHOGENS 246 8.6 COUNTERMEASURES
AGAINST STRESS SYMPTOMS 249 8.6.1 RESTRICTIONS OF AIR POLLUTANTS 250
8.6.2 ADAPTATION OF SILVICULTURE 250 8.6.3 APPLICATION OF LIME, WOOD-ASH
AND MINERAL FERTILIZERS 253 8.7 FOREST CONDITIONS * A REGIONAL OVERVIEW
256 8.7.1 BACKGROUND 256 8.7.2 REGIONAL CO-OPERATION FOR ASSESSMENT OF
DECLINE AND STRESS 257 8.7.3 REGIONAL FOREST DECLINE SURVEYS 257 8.7.4
SURVEYS OF FOLIAGE CHEMISTRY 262 8.8 ESTIMATION OF TOTAL RISK FOR FOREST
HEALTH 270 9 BIODIVERSITY IN SUSTAINABLE FORESTRY 273 9.1 INTRODUCTION
273 9.2 THE SWEDISH CULTURAL LANDSCAPE AND BIODIVERSITY 275 9.3 THE NEED
FOR SYSTEM ANALYSIS OF BIODIVERSITY 277 9.4 MODELLING STRATEGY IN SUFOR
279 9.4.1 GROUND VEGETATION MODELLING 280 9.4.2 BIODIVERSITY OF INSECTS
281 9.5 CONCLUSIONS 281 9.6 PRINCIPLES OF BIODIVERSITY PRESERVATION IN
FORESTRY 284 9.6.1 INTRODUCTION 284 9.6.2 DEFINITION OF SUSTAINABLE
BIODIVERSITY 285 9.6.3 ESTABLISHING THE BASELINE OF FOREST BIODIVERSITY
285 9.6.4 STRUCTURE AND BIODIVERSITY OF THE NATURAL FORESTS OF EUROPE
286 9.6.5 HUMAN IMPACT IN THE FORESTS OF EUROPE 287 9.6.6 DIFFERENCES
BETWEEN SOUTHERN SWEDEN AND NORTHERN EUROPE 287 9.6.7
PALAEOENTOMOLOGICAL STUDIES OF BIODIVERSITY IN SWEDEN 288 9.6.8
DISTURBANCE REGIMES OF SOUTHERN SWEDEN 288 9.6.9 CRITICAL FEATURES FOR
BIODIVERSITY PRESERVATION IN FORESTS 291 9.6.10 RECOMMENDATIONS FOR
BIODIVERSITY RESTORATION 295 9.6.11 CONCLUSIONS FOR A SUSTAINABLE
FORESTRY 296 10 FORESTS, ACIDIFICATION AND THE SOCIO-ECONOMIC COST 297
10.1 INTRODUCTION 297 10.2 ECOLOGY AND ECONOMICS 298 10.2.1 ACCOUNTING
THE ENVIRONMENT 299 10.2.2 SOCIO-ECONOMIC JUSTIFICATION 301 10.2.3
IMPACT OF THE DISCOUNT RATE 302 10.2.4 ESTIMATING THE ECONOMIC VALUE 302
10.2.5 METHODS FOR VALUING NATURAL RESOURCES 303 10.3 ENVIRONMENTAL
ACCOUNTING IN SWEDEN 304 10.3.1 ESTIMATING THE VALUE OF UTILITIES
AFFECTED BY ACIDIFICATION 306 10.4 ESTIMATING THE ECONOMICALLY
ACCEPTABLE LOSS OF VALUE 307 10.5 AREA AFFECTED BY ACIDIFICATION 308
10.6 DISCUSSION 310 10.7 REFLECTION ON THE TREAT FROM ACIDIFICATION 311
CONTENTS V 11 ASSESSING EFFECTS OF WILDLIFE ON FORESTRY J 317 11.1
BROWSING DAMAGE TO FORESTS VS. RECREATIONAL VALUES 317 11.1.1
INTRODUCTION 317 11.1.2 BROWSING DAMAGES 317 11.1.3 INFLUENCE ON FORAGE
AVAILABILITY 319 11.1.4 RECREATIONAL VALUE 321 11.1.5 CONCLUSIONS 322
11.2 DYNAMIC MODELING OF BROWSING DAMAGES BY MOOSE 323 11.2.1
INTRODUCTION 323 11.2.2 DIET SELECTION 325 11.2.3 CONCEPTUAL MODELING OF
FORAGE SELECTION 327 11.2.4 MODELLING OF INTAKE RATE 327 11.2.5 MODELING
OF BROWSE UTILISATION ON NATIONAL SCALE 330 11.2.6 PREDICTING MOOSE
POPULATION AND DEGREE OF UTILISATION 332 11.2.7 CONCLUSION 335 12
SUSTAINABILITY IN SPRUCE AND MIXED-SPECIES STANDS 337 12.1 INTRODUCTION
337 12.2 OBJECTIVES 337 12.3 SITE DESCRIPTION 338 12.4 MANAGEMENT
DESCRIPTION 338 12.5 EXPERIMENTAL SETUP AND SAMPLING 338 12.6 CHEMICAL
COMPOSITION AND NUTRIENT DYNAMICS 340 12.7 METHODS AND MODELS 340 12.8
BIOGEOCHEMICAL MAPPING OF A SINGLE STAND 341 12.9 ASSESSMENT OF NUTRIENT
SUSTAINABILITY 346 12.10ASSESSMENT OF ECONOMIC SUSTAINABILITY 349
12.11CONCLUSIONS 352 13 PRODUCTIVITY SCENARIOS FOR THE ASA FOREST PARK
355 13.1 ASA SITE DESCRIPTION 355 13.2 INTRODUCTION 357 13.3 THE
LANDSCAPE MODEL 358 13.3.1 THE TREE COVER MODEL 358 13.3.2 JNUTRIENT
BUDGETS AND NITROGEN LEACHING 362 13.4 INDICATORS 365 13.5 FOREST
MANAGEMENT 366 13.5.1 STAND MANAGEMENT PROGRAMS 366 13.5.2 LANDSCAPE
MANAGEMENT APPROACHES 369 13.6 EVALUATION OF THE MANAGEMENT PROGRAMS 371
13.6.1 EFFECTS ON BIODIVERSITY ON LAND 372 13.6.2 NUTRIENT BUDGETS 373
13.6.3 EFFECTS ON WATER QUALITY 375 13.6.4 EFFECTS ON TREE VITALITY 376
13.6.5 ECONOMIC EFFECTS 377 13.7 CONCLUSIONS 378 14 ASSESSMENT OF
SUSTAINABILITY IN THE ASA FOREST PARK 381 14.1 ASSESSMENT OF THE
SUSTAINABILITY OF MINERAL NUTRIENT USE 381 14.1.1 INTRODUCTION 381
14.1.2 DATA COLLECTION 381 14.1.3 SOIL SAMPLING 382 14.1.4 CALCULATION
FLOWCHART 383 VI CONTENTS 14.1.5 MEASURED SOIL PARAMETERS AND ANALYTICAL
METHODS 384 14.1.6 RESULTS 387 14.1.7 BIOGEOCHEMICAL MASS BALANCES AT
ASA 398 14.2 SUSTAINABLE ECONOMIC PROFITS 416 14.2.1 INTRODUCTION 416
14.2.2 ECONOMIC MODEL 416 14.2.3 RESULTS 416 14.2.4 CONCLUSIONS 417 14.3
APPROXIMATE CARBON BALANCES 419 14.3.1 INTRODUCTION 419 14.3.2 METHODS
420 14.3.3 INPUT DATA 421 14.3.4 CALCULATIONS AND RESULTS 422 14.3.5
DISCUSSION 424 14.3.6 CONCLUSIONS 426 15 NUTRIENT SUSTAINABILITY FOR
SWEDISH FORESTS 427 15.1 INTRODUCTION 427 15.2 INPUT DATA 427 15.3
RESULTS 428 15.4 DISCUSSION 429 15.5 CONCLUSIONS 431 16 GENERAL
CONCLUSIONS 433 16.1 STATEMENTS AND CONCLUSIONS 433 16.2 RISK MANAGEMENT
440 16.3 THE FUTURE 441 17 REFERENCES 443
|
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language | English |
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physical | VI, 480 S. Ill., graph. Darst. : 25 cm |
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publisher | Kluwer Academic Publ. |
record_format | marc |
series | Managing forest ecosystems |
series2 | Managing forest ecosystems |
spelling | Developing principles and models for sustainable forestry in Sweden edited by Harald Sverdrup and Ingrid Stjernquist Dordrecht [u.a.] Kluwer Academic Publ. 2002 VI, 480 S. Ill., graph. Darst. : 25 cm txt rdacontent n rdamedia nc rdacarrier Managing forest ecosystems 5 "Report from a multidisciplinary research programme for Sustainable Forest Management (SUFOR).". - Includes bibliographical references (p. 433-480) Foresterie durable - Suède Sustainable forestry Sweden Nachhaltigkeit (DE-588)4326464-5 gnd rswk-swf Forstwirtschaft (DE-588)4017966-7 gnd rswk-swf Schweden Schweden (DE-588)4077258-5 gnd rswk-swf Schweden (DE-588)4077258-5 g Forstwirtschaft (DE-588)4017966-7 s Nachhaltigkeit (DE-588)4326464-5 s DE-604 Sverdrup, Harald Ulrik 1954- Sonstige (DE-588)1211590526 oth Stjernquist, Ingrid Sonstige oth Managing forest ecosystems 5 (DE-604)BV013701624 5 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010019689&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Developing principles and models for sustainable forestry in Sweden Managing forest ecosystems Foresterie durable - Suède Sustainable forestry Sweden Nachhaltigkeit (DE-588)4326464-5 gnd Forstwirtschaft (DE-588)4017966-7 gnd |
subject_GND | (DE-588)4326464-5 (DE-588)4017966-7 (DE-588)4077258-5 |
title | Developing principles and models for sustainable forestry in Sweden |
title_auth | Developing principles and models for sustainable forestry in Sweden |
title_exact_search | Developing principles and models for sustainable forestry in Sweden |
title_full | Developing principles and models for sustainable forestry in Sweden edited by Harald Sverdrup and Ingrid Stjernquist |
title_fullStr | Developing principles and models for sustainable forestry in Sweden edited by Harald Sverdrup and Ingrid Stjernquist |
title_full_unstemmed | Developing principles and models for sustainable forestry in Sweden edited by Harald Sverdrup and Ingrid Stjernquist |
title_short | Developing principles and models for sustainable forestry in Sweden |
title_sort | developing principles and models for sustainable forestry in sweden |
topic | Foresterie durable - Suède Sustainable forestry Sweden Nachhaltigkeit (DE-588)4326464-5 gnd Forstwirtschaft (DE-588)4017966-7 gnd |
topic_facet | Foresterie durable - Suède Sustainable forestry Sweden Nachhaltigkeit Forstwirtschaft Schweden |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010019689&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV013701624 |
work_keys_str_mv | AT sverdrupharaldulrik developingprinciplesandmodelsforsustainableforestryinsweden AT stjernquistingrid developingprinciplesandmodelsforsustainableforestryinsweden |