Using biophysical modelling and marine connectivity to assess the risk of natural dispersal of non-indigenous species to comply with the Ballast Water Management Convention

被引:0
作者
Hansen, Flemming Thorbjorn [1 ,2 ]
Pastor, Ane [3 ]
Christensen, Asbjorn [1 ]
Stuer-Lauridsen, Frank [4 ]
机构
[1] Natl Inst Aquat Resources, DTU AQUA, Kemitorvet 1, DK-2800 Lyngby, Denmark
[2] DHI A S, Agern 5, DK-2970 Horsholm, Denmark
[3] Deakin Univ, Ctr Marine Sci, Sch Life & Environm Sci, Queenscliff, Vic 3220, Australia
[4] Litehauz Aps, DK-2800 Lyngby, Denmark
关键词
Marine bioinvasions; Agent-based modelling; Marine management; Same-Risk-Area; Marine invasive species; LARVAL DISPERSAL; SELF-RECRUITMENT; CONSERVATION; BIODIVERSITY; TEMPERATURE; TRANSPORT; DURATION; DISTANCE; BEHAVIOR; ECOLOGY;
D O I
10.1007/s10530-024-03327-0
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
The introduction of Marine Non-Indigenous Species (NIS) poses a significant threat to global marine biodiversity and ecosystems. To mitigate this risk, the Ballast Water Management Convention (BWMC) was adopted by the UN International Maritime Organisation (IMO), setting strict criteria for discharges of ballast water. However, the BWMC permits exemptions for shipping routes operating within a geographical area, known as a Same-Risk-Area (SRA). An SRA can be established in areas where a risk assessment (RA) can conclude that the spread of NIS via ballast water is low relative to the predicted natural dispersal. Despite the BWMC's requirement for RAs to be based on modelling of the natural dispersal of NIS, no standard procedures have been established. This paper presents a methodology utilizing biophysical modelling and marine connectivity analyses to conduct SRA RA and delineation. Focusing on the Kattegat and & Oslash;resund connecting the North Sea and Baltic Sea, we examine two SRA candidates spanning Danish and Swedish waters. We provide an example on how to conduct an RA including an RA summary, and addressing findings, challenges, and prospects. Our study aims to advance the development and adoption of consistent, transparent, and scientifically robust SRA assessments for effective ballast water management.
引用
收藏
页码:2539 / 2560
页数:22
相关论文
共 101 条
[1]  
AGBM, 2023, SO OSC IND
[2]  
Alidoost Salimi Parisa, 2021, Marine Biodiversity Records, V14, P11, DOI 10.1186/s41200-021-00206-8
[3]   Low Connectivity between Mediterranean Marine Protected Areas: A Biophysical Modeling Approach for the Dusky Grouper Epinephelus marginatus [J].
Andrello, Marco ;
Mouillot, David ;
Beuvier, Jonathan ;
Albouy, Camille ;
Thuiller, Wilfried ;
Manel, Stephanie .
PLOS ONE, 2013, 8 (07)
[4]  
[Anonymous], 2015, Information system on Aquatic Non-Indigenous and Cryptogenic Species
[5]   Potential Biodiversity Connectivity in the Network of Marine Protected Areas in Western Africa [J].
Assis, Jorge ;
Failler, Pierre ;
Fragkopoulou, Eliza ;
Abecasis, David ;
Touron-Gardic, Gregoire ;
Regalla, Aissa ;
Sidina, Ebaye ;
Dinis, Herculano ;
Serrao, Ester A. .
FRONTIERS IN MARINE SCIENCE, 2021, 8
[6]  
Baetens K., 2018, OPER DIRECTORATE NAT, V71, P96
[7]   The current application of ecological connectivity in the design of marine protected areas [J].
Balbar, Arieanna C. ;
Metaxas, Anna .
GLOBAL ECOLOGY AND CONSERVATION, 2019, 17
[8]   Kelps' Long-Distance Dispersal: Role of Ecological/Oceanographic Processes and Implications to Marine Forest Conservation [J].
Batista, Manuela Bernardes ;
Anderson, Antonio Batista ;
Sanches, Paola Franzan ;
Polito, Paulo Simionatto ;
Lima Silveira, Thiago Cesar ;
Velez-Rubio, Gabriela M. ;
Scarabino, Fabrizio ;
Camacho, Olga ;
Schmitz, Caroline ;
Martinez, Ana ;
Ortega, Leonardo ;
Fabiano, Graciela ;
Rothman, Mark D. ;
Liu, Gang ;
Ojeda, Jaime ;
Mansilla, Andres ;
Barreto, Luis M. ;
Assis, Jorge ;
Serrao, Ester A. ;
Santos, Rui ;
Horta, Paulo Antunes .
DIVERSITY-BASEL, 2018, 10 (01)
[9]   Marine invasive alien species: a threat to global biodiversity [J].
Bax, N ;
Williamson, A ;
Aguero, M ;
Gonzalez, E ;
Geeves, W .
MARINE POLICY, 2003, 27 (04) :313-323
[10]  
Bayne B.L., 1976, International Biological Programme, V10, P261