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Marine mammal conservation: from policy to bycatch reduction

Summary of the impact

The research resulted in primary legislation and provided government with the evidence used when implementing the measures set out within legislation. Specifically, this concerned:

  • Enabling effective conservation of marine mammals in UK, EU and international waters
  • Defining UK and EU policy objectives for marine mammal conservation
  • Delivering UK obligations arising from EU legal instruments
  • Reducing marine mammal bycatch by over 90% in key fisheries

This work, together with connected public outreach, was awarded the Queen's Anniversary Prize in 2011 for excellence in research supporting better governance of the ocean.

Submitting Institution

University of St Andrews

Unit of Assessment

Biological Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Earth Sciences: Oceanography
Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology

Global Sea Turtle Conservation

Summary of the impact

Research on the status, distribution and ecology of sea turtles at the University of Exeter has driven national and international conservation policy, engaged millions of people worldwide and raised substantial funding for conservation. Governments including the UK, Cayman Islands, Cyprus and Gabon have used this research in making legislation and multi-million pound management decisions. Development of open-access animal tracking tools has facilitated a global network of over 135 countries, with more than 300 projects tracking thousands of animals from 118 species. The ability to adopt tracked animals online has attracted millions of visitors and raised funding for conservation projects world-wide.

Submitting Institution

University of Exeter

Unit of Assessment

Biological Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology
Agricultural and Veterinary Sciences: Fisheries Sciences

Mitigating environmental impacts of naval sonar

Summary of the impact

Research by St Andrews scientists studying the effects of naval Sonar on marine mammals has had the following international impacts:

  • on the environment by developing new ways to manage environmental risks of anthropogenic sound on marine mammals,
  • on public policy and defence as research evidence changed US and European policy and criteria on impacts of Sonar on marine mammals, allowing US and European Navies to continue sonar training with reduced risk to whales,
  • on commerce as a new product with a current sales value of £3.5 million has been commercialised to help navies to predict and manage risk to marine mammals.

Submitting Institution

University of St Andrews

Unit of Assessment

Biological Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology

Impacts of offshore energy developments

Summary of the impact

Achievement of energy security and the UK's 2020 carbon targets economy depends upon a mix of new offshore oil and gas and renewable energy developments, but concern that seismic survey and construction noise could pose an unacceptable risk to marine mammals threatens to delay these plans.

University of Aberdeen ecologists, under the direction of Paul Thompson, have developed long-term studies of marine mammal population dynamics that now underpin frameworks for assessing and mitigating the impacts of such developments on marine mammals in EU protected areas.

The specific impact on commerce and the environment is that this assessment process has been adopted by industry within their consent applications. As a result of academic consultancy in industry, planning decisions have been informed by the research, and the management of environmental risks has changed. This has reduced the consenting risk for industry and provided an assessment framework that allows regulators to ensure that they are implementing current government policy within international legal frameworks for environmental protection.

Submitting Institution

University of Aberdeen

Unit of Assessment

Biological Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Environmental Sciences: Environmental Science and Management
Agricultural and Veterinary Sciences: Fisheries Sciences
Engineering: Mechanical Engineering

Environmental Monitoring/ Sampling in the Marine Environment

Summary of the impact

This impact study deals with the development and implementation of an internationally recognised, statistically-based sampling regime for marine sediment hydrocarbon contamination. Its Economic and Environmental impacts include a reduction in sampling and analysis costs to operators while maintaining a statistically robust monitoring procedure to protect and enhance the environment (including valuable fisheries) and support oil and gas exploration/production. This regime was initially adopted by the UK Government in the UK Marine Monitoring and Assessment Strategy in 2009. These statistical-based sampling protocols have subsequently passed into wider environmental policy and the Random Stratified Statistical Sampling Regime represents the accepted standard for marine monitoring in the £22 billion oil exploration and production industry in the UK Continental Shelf. This regime has now been taken-up internationally by the other 14 countries bordering/discharging to the North East Atlantic through the OSPAR Convention for the Protection of the Marine Environment of the North East Atlantic.

Submitting Institution

Robert Gordon University

Unit of Assessment

General Engineering

Summary Impact Type

Environmental

Research Subject Area(s)

Chemical Sciences: Analytical Chemistry, Other Chemical Sciences
Engineering: Environmental Engineering

Enabling Industry compliance with offshore regulation

Summary of the impact

Research on the distribution, abundance and sensitivity to disturbance of marine predators has been translated into environmental and economic benefits via a series of spin-out companies with a global presence. The research enabled the following impacts:

  • PAMGuard software enables the oil and gas industry to conduct seismic surveys within legal environmental limits, saving the industry ~$100M per annum.
  • The licensing of the world's first grid-connected tidal stream power station (SeaGen) in Strangford loch and offshore developments in the wind-power industry.
  • The progress of major engineering projects, including bridges (Forth Crossing and Hong Kong to Macao) and port extensions (Vancouver).

Direct company earnings were ~£6 million turnover in the assessment period and this supported 24 employees two-thirds of whom are skilled specialists.

Submitting Institution

University of St Andrews

Unit of Assessment

Biological Sciences

Summary Impact Type

Technological

Research Subject Area(s)

Mathematical Sciences: Statistics
Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology

Porpoise deterrent pinger for the reduction of accidental by-catch in international fisheries

Summary of the impact

Loughborough University research led to the development of a porpoise deterrent pinger, which, by generating ultrasonic acoustic signals, deters harbour porpoise from accidental capture in fishing nets. The research of Professor Bryan Woodward has led to the development of a commercially available pinger (AQUAmark100) with over 14,000 system sales internationally.

The impact of the research has:

1) Influenced changes in government / EU policy

2) Influenced worldwide debate around achieving reductions in accidental by-catch by fisheries.

3) Contributed to commercial growth of UK business through sales.

Submitting Institution

Loughborough University

Unit of Assessment

Electrical and Electronic Engineering, Metallurgy and Materials

Summary Impact Type

Technological

Research Subject Area(s)

Biological Sciences: Ecology
Agricultural and Veterinary Sciences: Fisheries Sciences

Development of Marine Energy: Testing, planning and wider economic impacts in Orkney

Summary of the impact

The International Centre for Island Technology (ICIT) based at Heriot-Watt University's Orkney campus is a multi-disciplinary research team whose focus for over a decade has been research into the socio-economic and environmental barriers to the development of marine renewable energy, particularly in the Pentland Firth and Orkney Waters (PFOW) area and its establishment as a Marine Energy park. This has enabled 1.2GW of marine energy leases by the Crown Estates including an estimated £3billion of related capital investment, as well as the establishment of the European Marine Energy Centre (EMEC), which continues to maintain its impact on the development of marine renewable energy.

Research at the International Centre for Island Technology at Heriot-Watt University has led to a substantial boost to Orkney with £8.8m in Gross Value Added to the local economy, with the creation of 119 jobs (Biggar Economics, 2012) through a dozen spin-out companies.

Submitting Institution

Heriot-Watt University

Unit of Assessment

Earth Systems and Environmental Sciences

Summary Impact Type

Technological

Research Subject Area(s)

Earth Sciences: Oceanography
Environmental Sciences: Environmental Science and Management

Producing European policies for the conservation and enhancement of freshwater fisheries

Summary of the impact

Researchers at the Hull International Fisheries Institute (HIFI) in the School of Biological, Biomedical and Environmental Sciences, have shaped policies that govern the regulation, conservation and enhancement of freshwater fisheries for national and trans-national governments and their agencies and institutions.

The reach of this research is international as it underpins fisheries policies and guidelines across Europe. Its significance is considerable because these policies regulate the sustainable use of freshwater fisheries; it protects them from alien and genetically-modified fishes; and they prohibit genetically-modified fish in Europe. Our research also shapes European legislation on controlling fish-eating birds. As a result this research has produced significant and broad impact.

Submitting Institution

University of Hull

Unit of Assessment

Geography, Environmental Studies and Archaeology

Summary Impact Type

Environmental

Research Subject Area(s)

Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology
Agricultural and Veterinary Sciences: Fisheries Sciences

Understanding the consequences of Ocean Acidification on the environment and society

Summary of the impact

The Plymouth University marine carbon team was the first to investigate ecological consequences of ocean acidification, and carbon capture and storage leakage. The findings have impacted on US legislation and are key to the UK ocean acidification research programme. The research is highlighted in the European Science Foundations' Science Policy Briefing on Impacts of Ocean Acidification (2009), the United Nations' Emerging Issues Bulletin on `Environmental consequence of ocean acidification: a threat to food security' (2010), the US `National Strategy to Meet the Challenges of a Changing Ocean' (2010) and the Intergovernmental Panel on Climate Change `Ocean Acidification Report' (2011).

Submitting Institution

Plymouth University

Unit of Assessment

Earth Systems and Environmental Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Earth Sciences: Geochemistry, Oceanography
Biological Sciences: Ecology

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