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Displaying items by tag: ocean acidification

Surface ocean carbon dioxide observations collected by the Marine Institute’s RV Celtic Explorer have been published in the 2020 version of the Surface Ocean Carbon Atlas (SOCAT).

These data provide scientists, climate researchers and international policy makers with essential information on ocean carbon dioxide measurements.

About 36 billion tonnes of carbon dioxide are added to the atmosphere each year as a result of human activities. The ocean absorbs about one-quarter of these emissions, which helps to slow down climate change by removing CO2 from the atmosphere.

However, absorbing additional CO2 increases the acidity of seawater. This process is known as ocean acidification, and it could have dramatic consequences for marine life.

The impacts of ocean acidification would extend up the food chain, threatening food security for millions of people

If sea water is too acidic, it can make it difficult for marine organisms such as coral, oysters and mussels to form shells and skeletons.

Ocean acidification may impact some plankton species, which form the base of marine food webs and would impact larger animals like fish and whales.

The impacts of ocean acidification would extend up the food chain, affecting fisheries and aquaculture, threatening food security for millions of people, as well as the tourism industry.

Ocean acidification is a global problem. The European Union has committed to cut its greenhouse gas emissions by at least 40% below 1990 levels by 2030 and aims to be climate-neutral — an economy with net-zero greenhouse gas emissions — by 2050.

To understand the Earth’s changing climate, it is essential to collect high-quality data on surface ocean CO2 levels.

Since 2017, the Marine institute has been measuring dissolved carbon dioxide (pCO2) in Irish and Atlantic surface waters using a General Oceanics pCO2 system on board the RV Celtic Explorer. This system enables near-continuous and high-accuracy carbon dioxide measurements in surface water and the atmosphere when the vessel is at sea.

The close collaboration between the Marine Institute and P&O Maritime Services, with support from GEOMAR in Germany, has resulted in the successful collection of this data.

SOCAT has become a milestone in research co-ordination, data access, climate research and in informing policy

The high-quality measurements of CO2 collected by the Marine Institute are now included in the 2020 version of the Surface Ocean Carbon Atlas (SOCAT) and fill “a notable data gap”, according to the Irish State agency for marine research.

The Marine Institute submitted data from nine surveys in 2017 and a further 15 surveys in 2018 to SOCAT, whose data set os used globally by climate researchers and contribute to the work of the Intergovernmental Panel on Climate Change (IPCC).

SOCAT has become a milestone in research co-ordination, data access, climate research and in informing policy, the Marine Institute says.

And this work further contributes to collaborative research on ocean carbon and acidification undertaken over the last decade by the institute and NUI Galway.

Margot Cronin, chemist at the Marine Institute, said: “Measuring carbon dioxide in Irish and Atlantic waters provides essential data that increases the understanding of our oceans and climate.

“The Marine Institute is contributing to global science, providing advanced scientific knowledge which will help inform policy and our response to a changing ocean.”

As previously reported on Afloat.ie, the Marine Institute’s latest Oceans of Learning series focuses on our changing ocean climate with videos, interactive activities and downloadable resources.

Published in Marine Science

#MarineScience - A talk on how pollution is changing the chemistry of the seas around Ireland has been selected as a featured video by TED.com.

The talk by Irish marine scientist and Fulbright Scholar Dr Triona McGrath discusses the process of ocean acidification, caused by the absorption of carbon dioxide in the atmosphere into the world’s oceans.

A post-doctorate researcher at NUI Galway, Dr McGrath presented her talk on 6 February last year to a local audience at TEDxFulbrightDublin, organised by the Fulbright Commission in Ireland and Fulbright alumnus Dr Lorcan Walsh.

Dr McGrath’s team monitors levels of carbon dioxide in Irish marine waters to determine the level of carbon in the ocean and subsequent increase in ocean acidity.

Along with her colleagues, she published the first rates of ocean acidification for Irish offshore waters and the first baseline dataset of carbon parameters in Irish coastal waters.

This data is crucial for our understanding of the future health of our oceans, and can provide information to determine the impacts of ocean acidification on marine ecosystems.

In her talk, Dr McGrath states: “Ocean acidification is a global threat ... The rate of acidification is ten times faster than any acidification in our oceans for over 55 million years, our marine life has never experienced such a fast rate of change before ... There was a natural acidification event millions of years ago, it was much slower than what we're seeing today, this coincided with the mass extinction of many marine species.”

She also warns: “We will see acidification, we have already put too much carbon dioxide into the atmosphere ... but we can slow this down, we can prevent the worst case scenario. The only way of doing that is by reducing our carbon dioxide emissions.”

As a Fulbright Scholar, Dr McGrath visited the Scripps Institution of Oceanography in San Diego in 2013 to develop her analytical skills in ocean carbon chemistry.

A researcher in ocean climate change since 2008, her latest research project started in February 2017 and for the next four years she will work with colleagues to further develop ocean acidification research through the continuation of an ongoing time series in the Rockall Trough and the determination of seasonal and inter-annual variability of the carbon system in coastal waters.

Dr McGrath has a PhD in Chemical Oceanography and a BSc in Marine Science from NUI Galway.

Published in Marine Science

#MarineScience - NUI Galway will host a public seminar examining ocean acidification next Wednesday 16 September.

Ocean acidification arises as a result of the ongoing decrease in the pH of the Earth’s oceans, caused by the uptake of carbon dioxide from the atmosphere.

One of the world-leading authorities on ocean acidification, Dr Richard Feely of the National Oceanic and Atmospheric Administration (NOAA) Pacific Marine Environmental Laboratory in Seattle will discuss the present and future implications of increased carbon dioxide levels on the health of our ocean ecosystems and related ocean-based economies.

The lecture will take place at 7.30pm in the Aula Maxima at NUI Galway and is free to the public. Advance registration is advised as the number of places is limited. To register click HERE.

Published in Marine Science
The Marine Institute today welcomed the publication of a major international marine environmental status report highlighting evidence of climate change and ocean acidification in the North Atlantic and calling for the creation of more Marine Protected Areas. The Quality Status Report 2010 was compiled by an international team of scientists, including Marine Institute experts, from countries participating in the Oslo-Paris Convention (OSPAR).

Speaking from the launch of the report in Bergen, Norway, Minister of State with responsibility for Sustainable Transport, Horticulture, Planning and Heritage, Mr. Ciaran Cuffe T.D. said that Ireland welcomed this evidence-based assessment of the marine environment as a 'major milestone.'

"Such periodic holistic assessments are essential 'barometers' allowing policy makers to gauge overall progress towards sustainable management and identify those actions essential to deliver clean, diverse, healthy and productive seas around us," said Minister Cuffe. "Such actions are critical to maintaining our seas and oceans as a sustainable resource for this and future generations."

According to the Report, climate change and ocean acidification effects are now evident especially in the northern OSPAR areas. In addition, human uses of the marine environment, such as offshore renewable energy, offshore oil and gas production, mineral extraction and shipping, are increasing and must be managed in a coordinated way, backed up by research on impacts, if environmental damage is to be avoided.

Furthermore, the decline in biodiversity is far from being halted and actions, such as extending the network of offshore Marine Protected Areas (MPAs), are required to improve the protection of threatened and/or declining species and habitats. In December 2009 Ireland designated 19 MPAs including 4 offshore MPAs.

However, the Report states that there has been progress in reducing pollution from nutrients, certain hazardous substances and radioactive substances in our oceans and seas, although continued efforts are needed. In addition, there have been improvements in fisheries management, although fishing activities continue to have large impacts on marine ecosystems in the seas around Ireland.

"The Marine Institute is delighted to have participated closely in the development and production of this assessment by acting as the focal point for Irish involvement in the process and by providing data and scientific input," said Dr. Peter Heffernan, CEO of the Marine Institute. The QSR 2010 Report is a product of cooperation between many experts from 15 OSPAR countries. The Department of Environment, Health and Local Government act as Head of Delegation for Ireland to OSPAR.

Published in Marine Science

Ireland's Offshore Renewable Energy

Because of Ireland's location at the Atlantic edge of the EU, it has more offshore energy potential than most other countries in Europe. The conditions are suitable for the development of the full range of current offshore renewable energy technologies.

Offshore Renewable Energy FAQs

Offshore renewable energy draws on the natural energy provided by wind, wave and tide to convert it into electricity for industry and domestic consumption.

Offshore wind is the most advanced technology, using fixed wind turbines in coastal areas, while floating wind is a developing technology more suited to deeper water. In 2018, offshore wind provided a tiny fraction of global electricity supply, but it is set to expand strongly in the coming decades into a USD 1 trillion business, according to the International Energy Agency (IEA). It says that turbines are growing in size and in power capacity, which in turn is "delivering major performance and cost improvements for offshore wind farms".

The global offshore wind market grew nearly 30% per year between 2010 and 2018, according to the IEA, due to rapid technology improvements, It calculated that about 150 new offshore wind projects are in active development around the world. Europe in particular has fostered the technology's development, led by Britain, Germany and Denmark, but China added more capacity than any other country in 2018.

A report for the Irish Wind Energy Assocation (IWEA) by the Carbon Trust – a British government-backed limited company established to accelerate Britain's move to a low carbon economy - says there are currently 14 fixed-bottom wind energy projects, four floating wind projects and one project that has yet to choose a technology at some stage of development in Irish waters. Some of these projects are aiming to build before 2030 to contribute to the 5GW target set by the Irish government, and others are expected to build after 2030. These projects have to secure planning permission, obtain a grid connection and also be successful in a competitive auction in the Renewable Electricity Support Scheme (RESS).

The electricity generated by each turbine is collected by an offshore electricity substation located within the wind farm. Seabed cables connect the offshore substation to an onshore substation on the coast. These cables transport the electricity to land from where it will be used to power homes, farms and businesses around Ireland. The offshore developer works with EirGrid, which operates the national grid, to identify how best to do this and where exactly on the grid the project should connect.

The new Marine Planning and Development Management Bill will create a new streamlined system for planning permission for activity or infrastructure in Irish waters or on the seabed, including offshore wind farms. It is due to be published before the end of 2020 and enacted in 2021.

There are a number of companies aiming to develop offshore wind energy off the Irish coast and some of the larger ones would be ESB, SSE Renewables, Energia, Statkraft and RWE.

There are a number of companies aiming to develop offshore wind energy off the Irish coast and some of the larger ones would be ESB, SSE Renewables, Energia, Statkraft and RWE. Is there scope for community involvement in offshore wind? The IWEA says that from the early stages of a project, the wind farm developer "should be engaging with the local community to inform them about the project, answer their questions and listen to their concerns". It says this provides the community with "the opportunity to work with the developer to help shape the final layout and design of the project". Listening to fishing industry concerns, and how fishermen may be affected by survey works, construction and eventual operation of a project is "of particular concern to developers", the IWEA says. It says there will also be a community benefit fund put in place for each project. It says the final details of this will be addressed in the design of the RESS (see below) for offshore wind but it has the potential to be "tens of millions of euro over the 15 years of the RESS contract". The Government is also considering the possibility that communities will be enabled to invest in offshore wind farms though there is "no clarity yet on how this would work", the IWEA says.

Based on current plans, it would amount to around 12 GW of offshore wind energy. However, the IWEA points out that is unlikely that all of the projects planned will be completed. The industry says there is even more significant potential for floating offshore wind off Ireland's west coast and the Programme for Government contains a commitment to develop a long-term plan for at least 30 GW of floating offshore wind in our deeper waters.

There are many different models of turbines. The larger a turbine, the more efficient it is in producing electricity at a good price. In choosing a turbine model the developer will be conscious of this ,but also has to be aware the impact of the turbine on the environment, marine life, biodiversity and visual impact. As a broad rule an offshore wind turbine will have a tip-height of between 165m and 215m tall. However, turbine technology is evolving at a rapid rate with larger more efficient turbines anticipated on the market in the coming years.

 

The Renewable Electricity Support Scheme is designed to support the development of renewable energy projects in Ireland. Under the scheme wind farms and solar farms compete against each other in an auction with the projects which offer power at the lowest price awarded contracts. These contracts provide them with a guaranteed price for their power for 15 years. If they obtain a better price for their electricity on the wholesale market they must return the difference to the consumer.

Yes. The first auction for offshore renewable energy projects is expected to take place in late 2021.

Cost is one difference, and technology is another. Floating wind farm technology is relatively new, but allows use of deeper water. Ireland's 50-metre contour line is the limit for traditional bottom-fixed wind farms, and it is also very close to population centres, which makes visibility of large turbines an issue - hence the attraction of floating structures Do offshore wind farms pose a navigational hazard to shipping? Inshore fishermen do have valid concerns. One of the first steps in identifying a site as a potential location for an offshore wind farm is to identify and assess the level of existing marine activity in the area and this particularly includes shipping. The National Marine Planning Framework aims to create, for the first time, a plan to balance the various kinds of offshore activity with the protection of the Irish marine environment. This is expected to be published before the end of 2020, and will set out clearly where is suitable for offshore renewable energy development and where it is not - due, for example, to shipping movements and safe navigation.

YEnvironmental organisations are concerned about the impact of turbines on bird populations, particularly migrating birds. A Danish scientific study published in 2019 found evidence that larger birds were tending to avoid turbine blades, but said it didn't have sufficient evidence for smaller birds – and cautioned that the cumulative effect of farms could still have an impact on bird movements. A full environmental impact assessment has to be carried out before a developer can apply for planning permission to develop an offshore wind farm. This would include desk-based studies as well as extensive surveys of the population and movements of birds and marine mammals, as well as fish and seabed habitats. If a potential environmental impact is identified the developer must, as part of the planning application, show how the project will be designed in such a way as to avoid the impact or to mitigate against it.

A typical 500 MW offshore wind farm would require an operations and maintenance base which would be on the nearby coast. Such a project would generally create between 80-100 fulltime jobs, according to the IWEA. There would also be a substantial increase to in-direct employment and associated socio-economic benefit to the surrounding area where the operation and maintenance hub is located.

The recent Carbon Trust report for the IWEA, entitled Harnessing our potential, identified significant skills shortages for offshore wind in Ireland across the areas of engineering financial services and logistics. The IWEA says that as Ireland is a relatively new entrant to the offshore wind market, there are "opportunities to develop and implement strategies to address the skills shortages for delivering offshore wind and for Ireland to be a net exporter of human capital and skills to the highly competitive global offshore wind supply chain". Offshore wind requires a diverse workforce with jobs in both transferable (for example from the oil and gas sector) and specialist disciplines across apprenticeships and higher education. IWEA have a training network called the Green Tech Skillnet that facilitates training and networking opportunities in the renewable energy sector.

It is expected that developing the 3.5 GW of offshore wind energy identified in the Government's Climate Action Plan would create around 2,500 jobs in construction and development and around 700 permanent operations and maintenance jobs. The Programme for Government published in 2020 has an enhanced target of 5 GW of offshore wind which would create even more employment. The industry says that in the initial stages, the development of offshore wind energy would create employment in conducting environmental surveys, community engagement and development applications for planning. As a site moves to construction, people with backgrounds in various types of engineering, marine construction and marine transport would be recruited. Once the site is up and running , a project requires a team of turbine technicians, engineers and administrators to ensure the wind farm is fully and properly maintained, as well as crew for the crew transfer vessels transporting workers from shore to the turbines.

The IEA says that today's offshore wind market "doesn't even come close to tapping the full potential – with high-quality resources available in most major markets". It estimates that offshore wind has the potential to generate more than 420 000 Terawatt hours per year (TWh/yr) worldwide – as in more than 18 times the current global electricity demand. One Terawatt is 114 megawatts, and to put it in context, Scotland it has a population a little over 5 million and requires 25 TWh/yr of electrical energy.

Not as advanced as wind, with anchoring a big challenge – given that the most effective wave energy has to be in the most energetic locations, such as the Irish west coast. Britain, Ireland and Portugal are regarded as most advanced in developing wave energy technology. The prize is significant, the industry says, as there are forecasts that varying between 4000TWh/yr to 29500TWh/yr. Europe consumes around 3000TWh/year.

The industry has two main umbrella organisations – the Irish Wind Energy Association, which represents both onshore and offshore wind, and the Marine Renewables Industry Association, which focuses on all types of renewable in the marine environment.

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