Environmental impacts of dredging on seagrasses: A review

被引:386
作者
Erftemeijer, Paul L. A.
Lewis, Roy R. Robin, III
机构
[1] Delft Hydraul, WL, NL-2600 MH Delft, Netherlands
[2] Lewis Environm Serv, Salt Springs, FL 32134 USA
关键词
critical thresholds; dredging impacts; mitigation; review; seagrasses; turbidity;
D O I
10.1016/j.marpolbul.2006.09.006
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Main potential impacts on seagrasses from dredging and sand mining include physical removal and/or burial of vegetation and effects of increased turbidity and sedimentation. For seagrasses, the critical threshold for turbidity and sedimentation, as well as the duration that seagrasses can survive periods of high turbidity or excessive sedimentation vary greatly among species. Larger, slow-growing climax species with substantial carbohydrate reserves show greater resilience to such events than smaller opportunistic species, but the latter display much faster post-dredging recovery when water quality conditions return to their original state. A review of 45 case studies worldwide, accounting for a total loss of 21,023 ha of seagrass vegetation due to dredging, is indicative of the scale of the impact of dredging on seagrasses. In recent years, tighter control in the form of strict regulations, proper enforcement and monitoring, and mitigating measures together with proper impact assessment and development of new environmental dredging techniques help to prevent or minimize adverse impacts on seagrasses. Costs of such measures are difficult to estimate, but seem negligible in comparison with costs of seagrass restoration programmes, which are typically small-scale in approach and often have limited success. Copying of dredging criteria used in one geographic area to a dredging operation in another may in some cases lead to exaggerated limitations resulting in unnecessary costs and delays in dredging operations, or in other cases could prove damaging to seagrass ecosystems. Meaningful criteria to limit the extent and turbidity of dredging plumes and their effects will always require site-specific evaluations and should take into account the natural variability of local background turbidity. (c) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1553 / 1572
页数:20
相关论文
共 189 条
[51]   SEASONAL GROWTH AND BIOMASS OF THE SUBTROPICAL SEAGRASS HALODULE WRIGHTII IN RELATION TO CONTINUOUS MEASUREMENTS OF UNDERWATER IRRADIANCE [J].
DUNTON, KH .
MARINE BIOLOGY, 1994, 120 (03) :479-489
[52]  
DUNTON KH, 1991, P WORKSH EX CAP WAT, P71
[53]  
Dynesen C., 2001, J HYDROINFORM, V3, P105, DOI [10.2166/hydro.2001.0011, DOI 10.2166/HYDRO.2001.0011]
[54]  
EDMUNDS M, 2004, MARINE ECOLOGY SPECI, V16
[55]  
*EEA, 2005, 52005 UNEP EEA
[56]  
*ENV AFF CONS, 2005, 3 ANN PROGR SEAGR MI
[57]  
EPA, 1998, CHANG SEAGR COV LINK
[58]  
EPA, 2001, EPA PUBL, V691
[59]  
ERFTEMEIJER PLA, 2002, Z3419 WL DELFT HYDR
[60]  
ERFTEMEIJER PLA, 2002, Z3401 WL DELFT HYDR