Sediment and dredged material treatment:
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Amsterdam [u.a.]
Elsevier
2007
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Ausgabe: | 1. ed. |
Schriftenreihe: | Sustainable management of sediment resources
2 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XII, 209 S. Ill., graph. Darst., Kt. |
ISBN: | 9780444519634 0444519637 |
Internformat
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245 | 1 | 0 | |a Sediment and dredged material treatment |c ed. by Giuseppe Bortone ... |
250 | |a 1. ed. | ||
264 | 1 | |a Amsterdam [u.a.] |b Elsevier |c 2007 | |
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490 | 1 | |a Sustainable management of sediment resources |v 2 | |
650 | 4 | |a Umwelt | |
650 | 4 | |a Dredging industry |x Waste disposal | |
650 | 4 | |a Dredging spoil |x Environmental aspects | |
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700 | 1 | |a Bortone, Giuseppe |4 edt | |
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Datensatz im Suchindex
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adam_text | V
CONTENTS
Chapter 1: Sediment treatment - a general introduction 1
G. Bortone
1. Sediment and dredged material treatment 1
2. SedNet 2
3. The background 4
4. The content of the WP4 handbook 8
Chapter 2: Sediment management of nations in Europe 11
L. Palumbo
1. Introduction 11
2. The Netherlands 11
A.L. Hakstege
2.1. Policy on dredged material 12
2.1.1. National policy for dredged material 12
2.1.2. Remediation approach 13
2.1.3. Relocation 15
2.1.4. Treatment and reuse 17
2.1.5. Confined disposal 18
2.1.6. Legislation 19
2.2. Example of an important local site: the port of Rotterdam 19
2.3. Projects 21
3. Germany 22
H.-D. Detzner
3.1. Legislation 23
3.2. National projects 28
3.2.1. Costal waters - estuaries 28
3.2.2. Seaports 29
3.2.3. Inland waters - rivers, canals, ports and dams 32
4. Norway 34
A. Hauge
4.1. Policy on treatment and disposal 35
4.2. Overview on most important local sites and projects 38
5. France 40
D. Grosdemange
5.1. General situation 40
5.2. Policy on treatment and disposal 40
5.3. Most important local dredging sites 43
5.4. Projects 44
vi Contents
6. Italy 46
L. Palumbo, L. De Propris and A. Giordano
6.1. Venice 50
6.2. Livorno 51
6.3. LaSpezia 52
7. Belgium 53
G. van Dessel and T. Cnudde
7.1. Region of Brussels 53
7.2. The Walloon region 53
7.3. Situation in Flanders 53
7.3.1. Sediment quantity and quality 54
7.3.2. Dredging, treatment and disposal 54
7.3.3. Laws and legislation 55
7.3.4. Current limitations and/or bottlenecks 56
Chapter 3: Overview on treatment and disposal options 59
H.-D. Detzner, A.L. Hakstege, K. Hamer and I. Pallemans
1. Introduction 59
2. Key boundary conditions for treatment 60
3. General treatment and disposal technologies 60
3.1. Definition and process principles 60
3.2. Technical criteria of process principles 63
4. Treatment and disposal chains 65
4.1. Technical feasible treatment and disposal chains 65
Chapter 4: Description of the available technology for treatment
and disposal of dredged material 68
A.L. Hakstege
1. Introduction 68
2. In situ chemical techniques 69
G. van Dessel and T. Cnudde
2.1. Technical criteria/applicability 69
2.2. State of the art/experience 71
2.3. Environmental impacts benefits 71
2.4. Economic aspects 71
2.5. Social aspects 71
3. In situ biological techniques 72
A.L. Hakstege
3.1. Technical criteria/applicability 72
3.2. State of the art/experience 72
3.3. Environmental impacts benefits 72
Contents vii
3.4. Economic aspects 73
3.5. Social aspects 73
4. Physical in situ techniques: capping of contaminated sediments 74
A. Hauge and K. Hamer
4.1. Technical criteria/applicability 74
4.2. State of the art/experience 74
4.3. Environmental impacts benefits 75
4.4. Economic aspects 75
4.5. Social aspects 75
5. Separation 77
H.-D. Detzner
5.1. Technical criteria/applicability 77
5.2. State of the art/experience 78
5.3. Environmental impacts benefits 78
5.4. Economic aspects 79
5.5. Social aspects 79
6. Natural dewatering 79
G. van Dessel and T. Cnudde
6.1. Technical criteria/applicability 79
6.2. State of the art/experience 80
6.3. Environmental impacts benefits 80
6.4. Economic aspects 80
6.5. Social aspects 81
7. Mechanical dewatering 81
W. de Weirdt and H.-D. Detzner
7.1. Technical criteria/applicability 81
7.2. State of the art/experience 82
7.3. Environmental aspects 83
7.4. Economic aspects 83
8. Thermal desorption 84
W. de Weirdt
8.1. Introduction into thermal treatment technologies 84
8.2. Technical criteria/applicability 84
8.3. State of the art/experience 85
8.4. Environmental aspects 86
8.5. Economic aspects 86
9. Thermal immobilization: producing bricks 87
K. Hamer and J.-P. Ulbricht
9.1. Technical criteria/applicability 87
9.2. State of the art/experience 87
9.3. Environmental impacts benefits 88
viii Contents
9.4. Economic aspects 89
9.5. Social aspects 89
10. Thermal immobilization: producing LWA (light - weight - aggregates) 90
K. Hamer
10.1. Technical criteria/applicability 90
10.2. State of the art/experience 90
10.3. Environmental impacts benefits 90
10.4. Economic aspects 91
10.5. Social aspects 91
11. Thermal immobilization: artificial basalt 92
A.L. Hakstege
11.1. Technical criteria/applicability 92
11.2. State of the art/experience 92
11.3. Environmental impacts benefits 93
11.4. Economic aspects 93
11.5. Social aspects 93
12. Thermal treatment: producing cement 93
E.A. Stern
12.1. Technical criteria/applicability 94
12.2. State of the art/experience 94
12.3. Environmental impacts benefits 95
12.4. Economic aspects 95
12.5. Social aspects 96
13. Washing extraction: example biogenesis 97
E.A. Stern
13.1. Technical criteria/applicability 97
13.2. State of the art/experience 97
13.3. Environmental impacts benefits 97
13.4. Economic aspects 98
13.5. Social aspects 99
14. Stabilization/chemical immobilization 99
K. Hamer, G. van Dessel and A.L. Hakstege
14.1. Technical criteria/applicability 100
14.2. State of the art/experience 101
14.3. Environmental impacts benefits 102
14.4. Economic aspects 102
14.5. Social aspects 102
15. Bioreactor 104
J. Harmsen
15.1. Technical criteria/applicability 104
15.2. State of the art/experience 104
15.3. Environmental impacts benefits 105
Contents ix
15.4. Economic aspects 105
15.5. Social aspects 105
16. Landfarming 106
J. Harmsen
16.1. Technical criteria/applicability 106
16.2. State of the art/experience 106
16.3. Environmental impacts benefits 107
16.4. Economic aspects 108
16.5. Social aspects 108
17. Phytoremediation/phyto-extraction 109
J. Harmsen
17.1. Technical criteria/applicability 109
17.2. State of the art/experience 109
18. Confined upland disposal 110
H.-D. Detzner
18.1. Technical criteria/applicability 110
18.2. State of the art/experience 111
18.3. Environmental impacts benefits 112
18.4. Economic aspects 112
18.5. Social aspects 112
19. Sub-aquatic confined disposal 113
A.L. Hakstege
19.1. Technical criteria/applicability 113
19.2. State of the art/experience 113
19.2.1. Example - Sandefjord, Norway 114
19.2.2. Island/nearshore CDF 115
19.2.3. Subaquatic CDF in open water 115
19.3. Environmental impacts benefits 116
19.4. Economic aspects 117
19.5. Social aspects 118
Chapter 5: Beneficial use 119
I. Deibel, C. Lampe, J.P. Ulbricht, T. Cnudde and G. van Dessel
1. Introduction 119
2. Some reuse possibilities, a general description 120
3. Products for beneficial use 120
3.1. Products without treatment 121
4. Law and legislation for beneficial use 121
4.1. Germany 121
4.2. Italy 123
4.3. The Netherlands 125
x Contents
4.4. Norway 126
4.5. Belgium - focussed on Flanders 127
5. Current limitations and bottlenecks 128
5.1. Environmental regulations 128
5.2. Costs 128
5.3. Image 129
5.4. Further obstacles 129
6. Measures to promote use of dredged material 129
6.1. Ecological balance and evaluation of sediment treatment methods
from a life-cycle-perspective 130
6.2. Product promotion 130
6.3. Steering measures by economic incentives 131
Chapter 6: Assessment of treatment and disposal options 133
K. Hamer, E. Arevalo, I. Deibel and A.L. Hakstege
1. Introduction 133
2. A new frame: assessment on a river basin scale 134
3. Types of assessment during sediment management 135
4. Assessment of the environmental impact of treatment options 137
4.1. Principles to minimize effects on the environment 137
4.2. Objects of environmental assessment and protection 138
4.3. Criteria of environmental assessment 139
4.3.1. Chemical and biological methods to asses the environmental
impact of sediments and products 140
4.3.2. The life-cycle of products and sediments: time dependent changes
on emissions 142
4.3.3. Climate, space consumption and resources and their link
to sustainability 143
5. Economic aspects 147
5.1. Variable economic boundary conditions I: duration of contract
and development of legal regulations 147
5.2. Variable economic boundary conditions II: interfaces between
treatment steps 148
5.3. Opposite public and private interests - or public-private partnership? 149
6. Social aspects 149
6.1. Negative social aspects 149
6.2. Positive socio-economic aspects of dredged material 150
6.3. Communication with the society 151
7. Decision support system 151
7.1. State of the art in decision making 151
7.2. Topics for improvement to reach a sustainable decision support system 152
Contents xi
7.2.1. River basin scale 152
7.2.2. Assessment of environmental impacts applying LCA and other tools 152
7.2.3. Treatment chain level 153
7.2.4. Long-term contracts 153
7.2.5. Responsibility and budget and evaluation of benefits
outside the responsibility 154
7.2.6. Decision making under multiple criteria 154
7.3. An example: The Netherlands and their policy on treatment disposal 154
8. Summary 156
Chapter 7: Applications of the principles of life-cycle-assessment
to evaluate contaminated sediment treatment chains 160
E. Arevalo, R. Cesaro, H. Stichnothe, A.L. Hakstege and W. Calmano
1. Introduction 160
2. Sustainability and life cycle thinking methodologies to evaluate processes
for treating contaminated dredged sediment 161
3. The life-cycle assessment (LCA) 163
4. On the potential uses of life-cycle approaches to assess dredged treatment chains 164
4.1. Holistic thinking: inclusion of indirect impacts 164
4.2. System definition and long term effects 164
4.3. Quantification of relevant life-cycle indicators 165
4.4. Sustainable decision-making and the life-cycle assessment 167
5. Application of the principles of LCA to assess dredged sediment
treatment chains 168
5.1. Treatment chain 1: mechanical sand separation and dewatering process
combined with reuse of sand fraction and disposal of the silt fraction 169
5.2. Treatment chain 2: production of bricks out of dredged material 175
6. Conclusion 180
7. Outlook 181
Chapter 8: Costs of treatment chains 185
F. Elskens and J. Harmsen
1. Introduction 185
2. Costs 186
2.1. Costs of dredging 186
2.2. Costs of transport 187
2.3. Costs of treatment 187
2.4. Costs of follow up 189
3. Revenues 189
3.1. Social economic 189
3.2. Beneficial use 190
3.3. Stimulation of treatment of dredged sediment 190
xii Contents
Chapter 9: Cases studies 193
L. Palumbo
1. Introduction 193
2. Confined disposal: IJsseloog confined disposal facility (subaquatic confined disposal) 193
A.L. Hakstege
3. Separation and mechanical dewatering: METHA - classification, sorting
and dewatering of dredged material 194
H.-D. Detzner
4. Construction material: building material for dikes 195
4.1. Place of development and/or application: operator and time operation 195
4.2. Description of the solution 195
4.3. Scale of operation and experience 195
4.4. State of feasibility 195
4.5. Costs and market aspects 195
4.6. Uncertainties and open questions 195
5. Bricks 196
5.1. Place of development and/or application: operator and time operation 196
5.2. Description of the solution 196
5.3. Scale of operation and experience 196
5.4. State of feasibility 196
5.5. Costs and market aspects 196
5.6. Uncertainties and open questions 196
6. Sediment washing process: biogenesis
E.A. Stern
6.1. Place of development and/or application: operator and time operation 198
6.2. Description of the solution 198
6.3. Scale of operation and experience 198
6.4. State of feasibility 198
6.5. Costs and market aspects 198
6.6. Uncertainties and open questions 199
7. Fasiver project, in Flanders, Belgium: a public-private partnership 200
G. van Dessel and T. Cnudde
Chapter 10: Summary treatment and disposal of dredged material 202
1. Introduction 202
2. Sediment management 203
3. Treatment and confined disposal options 203
4. Economic aspects 205
5. Assessment and sustainability 205
6. Recommendations 207
Index 209
|
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institution | BVB |
isbn | 9780444519634 0444519637 |
language | English |
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spelling | Sediment and dredged material treatment ed. by Giuseppe Bortone ... 1. ed. Amsterdam [u.a.] Elsevier 2007 XII, 209 S. Ill., graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Sustainable management of sediment resources 2 Umwelt Dredging industry Waste disposal Dredging spoil Environmental aspects (DE-588)1071861417 Konferenzschrift gnd-content Bortone, Giuseppe edt Sustainable management of sediment resources 2 (DE-604)BV035291221 2 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017711151&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Sediment and dredged material treatment Sustainable management of sediment resources Umwelt Dredging industry Waste disposal Dredging spoil Environmental aspects |
subject_GND | (DE-588)1071861417 |
title | Sediment and dredged material treatment |
title_auth | Sediment and dredged material treatment |
title_exact_search | Sediment and dredged material treatment |
title_full | Sediment and dredged material treatment ed. by Giuseppe Bortone ... |
title_fullStr | Sediment and dredged material treatment ed. by Giuseppe Bortone ... |
title_full_unstemmed | Sediment and dredged material treatment ed. by Giuseppe Bortone ... |
title_short | Sediment and dredged material treatment |
title_sort | sediment and dredged material treatment |
topic | Umwelt Dredging industry Waste disposal Dredging spoil Environmental aspects |
topic_facet | Umwelt Dredging industry Waste disposal Dredging spoil Environmental aspects Konferenzschrift |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017711151&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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