4.7 Article

Environmental restoration by aquatic angiosperm transplants in transitional water systems: The Venice Lagoon as a case study

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 795, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.scitotenv.2021.148859

关键词

Ecological status; Habitat 1150*restoration; Nutrient concentration; Angiosperm transplant; Venice lagoon; Water framework directive

资金

  1. European Union [LIFE12 NAT/IT/000331, SIC IT3250031]

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The paper discusses the results of a 4-year project on aquatic angiosperm transplants in the Venice Lagoon, which successfully restored meadows in areas affected by eutrophication, pollution, and overexploitation of resources. The project demonstrated rapid ecological recovery and cost-effectiveness through small-scale interventions and stakeholder participation, making it easily transferable to similar environments.
The paper reports the results obtained after 4 years of aquatic angiosperm transplants in areas of the Venice Lagoon (North Adriatic Sea, Mediterranean) where meadows almost disappeared due to eutrophication, pollution and overexploitation of clam resources. The project LIFE12 NAT/IT/000331-SeResto, funded by the European Union, allowed to recolonize the Habitat 1150* (coastal lagoons) in the northernmost part of the lagoon, by extensive manual transplants of small sods or single rhizomes of Zostera marina, Zostera noltei, Ruppia cirrhosa and, in some stations also of Cymodocea nodosa. Over the 4 years of the project more than 75,000 rhizomes were transplanted in 35 stations with the support of local stakeholders (fishermen, hunters and sport clubs). Plants took root in 32 stations forming extensive meadows on a surface of approx. 10 km(2) even if some failures were recorded in areas affected by outflows of freshwater rich in nutrients and suspended particulatematter. The rapid recovery of the ecological status of the involved areaswas the result of this meadow restoration, which was in compliance with Water Framework Directive (WFD 2000/60/EC) objectives. Moreover, the monitoring of environmental parameters in the water column and in surface sediments allowed to identify the best conditions for successful transplants. Small, widespread interventions and the participation of local stakeholders in the environmental recovery, make this action economically cheap and easily transposable in other similar environments. (C) 2021 The Authors. Published by Elsevier B.V.

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