Showing posts with label ecosystems. Show all posts
Showing posts with label ecosystems. Show all posts

Monday, 14 April 2014

The Moor House Archive

In a new guest post, Steve Prince, CEH's Head of Library and Archives explains how the Moor House ecological research archive came to be maintained by CEH.

The Moor House area of Upper Teesdale in England was one of Britain’s first National Nature Reserves (NNR), designated in 1952, although its potential as a research area was already apparent through the work of scientists such as Jim Cragg and Gordon Manley. In the early 1950s William Pearsall and Verona Conway of the Nature Conservancy oversaw the purchase of the Moor House Shooting Lodge in order to establish a field station where research into ecological relationships in a mountain and moorland ecosystem could be undertaken.

There were many Nature Conservancy research stations; sadly most are now closed, as the Moor House station was in 1982. But few retained the affection of the researchers who worked there like Moor House did, to the extent that, in 2003, English Nature (now Natural England, operators of the Reserve) hosted a 50th anniversary dinner for researchers. In 2013 there was a 60th anniversary meeting at the site.

Moor House was in the first group of National Nature Reserves when it was
designated in 1952. The Nature Conservancy soon after established a field station
at the site.


The site was supported from the Nature Conservancy’s research station at Merlewood, though Nature Conservancy staff were the minority of researchers working at Moor House – most were University-based, particularly at Durham. (The research station at Merlewood then became part of the Institute of Terrestrial Ecology in the early 1970s after the Nature Conservancy was reorganised.) It is the careers of such researchers that took the name of Moor House around the scientific world.

One major project based at Moor House was the UK contribution to the International Biological Programme (IBP) which ran from 1957 to 1974, looking at ecological productivity and ecosystem function. The level of research decreased after the Programme ended, although the work of monitoring at Moor House picked up again with the creation of the Environmental Change Network in 1993 (indeed much of the work since 1993 is accessible through the ECN website).  Incidentally, ECN's long-term monitoring and data will be featured at a special symposium in Lancaster in May 2014. *

Staff from another research organisation, the Freshwater Biological Association, also worked at Moor House as the site integrated an independent freshwater reserve. In 1989 much of the FBA work transferred to the newly-established Institute for Freshwater Ecology (IFE) at Windermere. In 1994 both the IFE and the ITE (Institute of Terrestrial Ecology) were linked under the Centre for Ecology & Hydrology banner, thus strengthening CEH's ties with Moor House.

Moor House is England's highest and largest terrestrial National Nature Reserve.
The site is part of the Environmental Change Network, coordinated by CEH.



The Moor House Archive is now maintained by CEH at Lancaster. Recently, attempts have been made to make earlier science outputs more accessible, in addition to what was already available. From 1960 through to 1984 an annual report, containing research updates and meteorological reports, was produced and these have been digitized. In addition, an occasional series of 13 reports were issued and these too have been digitized. Full text copies can be downloaded from the NERC Open Research Archive (NORA). Click on the ‘Search’ tab and simply type ‘Moor House’ into the title field.

The final volume of the occasional reports series was a bibliography1, compiled in 1990, of papers and other works which used Moor House data. Due to the fact that a lot of the work at Moor House was supported by Nature Conservancy and later ITE and IFE centres, CEH Library & Archives hold many of the staff reprints and copies of the journals containing the papers.

In the last year attempts to obtain copies of those papers not previously held have been largely successful. With the exception of the dissertations listed, CEH Archive holds more than 95% of the papers listed and these can be consulted at CEH Archives in Lancaster.

For more information on Moor House material, contact:

Claire Wood and Rob Rose (Moor House Archive), or Steve Prince (CEH Library & Archives)

Steve Prince

Gill, J.P. 1990 A guide to the Moor House collection, Nature Conservancy, 62pp (Aspects of the ecology of the northern Pennines, Moor House Occasional Papers, no 13)

Additional information


Environmental Change Network: Moor House

* To celebrate 20 years of terrestrial monitoring at ECN, a symposium will take place at CEH's Lancaster site in May 2014. Further information and registration details are available from the ECN website.

Wednesday, 2 April 2014

IPCC report: CEH science makes key contributions

Several scientific studies led by the Centre for Ecology & Hydrology (CEH) are cited in
'Climate Change 2014: Impacts, Adaptation, and Vulnerability', a major report from the Intergovernmental Panel on Climate Change which was published this week.

The report, from Working Group II of the IPCC, states that the effects of climate change are already occurring on all continents and across the oceans. It details the impacts of climate change to date, the future risks from a changing climate, and the opportunities for effective action to reduce risks.

CEH's science was cited in chapters examining Freshwater resources, Terrestrial and inland water systems, Food security and Detection and attribution of observed impacts.


CEH authors and publications referenced in the IPCC report include:

CEH Director Professor Mark Bailey said:

“The IPCC’s landmark study warns that climate change is already here and is impacting every continent on planet earth. CEH’s national capability and long-term and large-scale monitoring platforms provide early warning of environmental change and underpin management solutions for land and freshwaters across the UK and globally. Our research, such as that used in the IPCC report, provides robust evidence for policymakers to drive adaptation opportunities and build increased resilience, and shows the importance of long-term and large-scale monitoring.”

Further information on IPCC report


A changing climate creates pervasive risks but opportunities exist for effective responses - IPCC Report (United Nations Environment Programme News Centre)

Assessing and managing the effects of climate change (CEH News Blog)

Further information on CEH science


Meeting the challenges of environmental change (CEH Science Strategy 2014-2019)

Staff page of Professor Mark J Bailey


Posted by Paulette Burns

Tuesday, 1 April 2014

Assessing and managing the risks of climate change

Climate Change 2014: Impacts, Adaptation and Vulnerability report cover
The latest report from the Intergovernmental Panel on Climate Change (IPCC), published this week, says that the effects of climate change are already occurring on all continents and across the oceans. In many cases, it warns, the world is ill-prepared for risks from a changing climate. There are opportunities to respond to such risks, it says, though they will be difficult to manage with high levels of warming.

The report, titled Climate Change 2014: Impacts, Adaptation, and Vulnerability, from Working Group II of the IPCC, details the impacts of climate change to date, the future risks from a changing climate, and the opportunities for effective action to reduce risks.

Responding to its publication, scientists from the Centre for Ecology & Hydrology (CEH) made the following comments:

Dr Richard Harding, Senior Hydrologist
“The first report of the IPCC fifth assessment concluded that human activities were already having an impact on our climate. This second report assesses the considerable number of studies investigating the current and future impacts of these climate changes and possible adaption strategies. The report concludes that warming increases the likelihood of severe, pervasive and irreversible impacts. Some ecosystems and cultures are already at risk from climate change and there is a warning of irreversible changes. In the future we will see increasing water scarcity and negative impacts on food production. Climate change is increasing the risks of extreme events (flooding, high temperatures etc) and the impacts are greatest for the most disadvantaged communities.

These impacts can be moderated by reducing their rate of change by mitigation, i.e. reducing our greenhouse gas emissions, and planning. The impacts from recent climate extremes show a considerable vulnerability and exposure to present day variability. This vulnerability will increase as the climate changes. The impacts, however, can be moderated by adaptive planning, by all sections of society. A first step towards this adaption is reducing our exposure to current extremes - this is a double win, giving protection now and increased resilience in the future.

This report is yet another wake-up call to take action on climate change. It illustrates that it is not too late to take action but the consequences of inaction will be wide-ranging and serious.”

Dr Stephen Thackeray, Lake ecologist and project lead of Shifting seasons, climate change & ecosystems consequences:
“The second report of the IPCC fifth assessment capitalises upon the increasing body of evidence that climate change has already had an effect upon wild plants and animals, and the wider ecosystems within which they interact. The report makes it clear that these effects may be complex because ecosystems respond to the interactive effects of a changing climate and many other stressors, such as habitat modification and pollution. It is clear that we need to understand, and plan for, these interactive effects if we are to successfully manage the natural world under ongoing climate change.”

Additional information


CEH scientists take part in research looking at the impacts of climate change on species and the environment and have an extensive network of long-term monitoring and experimental field sites. Analysis and modelling of these data provide early warning of change and are helping to deliver management solutions for land and freshwaters across the UK and globally.

Climate change is increasing the risk of extreme events.

Comma butterfly
Research involving CEH showed that the
Comma butterfly has expanded its UK range
northwards rapidly. Photo: Shutterstock



Examples of CEH climate change research

Future Flows and Groundwater Levels project details and datasets

Shifting seasons, climate change and ecosystem consequences project details

Ecological Processes & Resilience science area 

Meeting the Challenges of Environmental Change - CEH's Science Strategy 2014-2019

Related CEH news on climate change research

Drought and climate change - an uncertain future?

Water and climate change in the UK - assessing the evidence

Climate impacts evidence for biodiversity changes in the UK's countryside

Butterfly expanding northwards with warming temperatures and changed diet

Accelerating climate change exerts strong pressure on Europe's mountain flora

Wildlife responds increasingly rapidly to climate change

Posted by Paulette Burns

Friday, 28 March 2014

Sustainable Land Management Science Area at CEH

CEH's new Science Strategy identifies three interdependent, major societal and environmental challenges: Securing the Value of Nature, Building Resilience to Environmental Hazards, and Managing Environmental Change. We're delivering our strategy by Science Areas and underpinning activities, and over the next few weeks we are profiling these on our blog. 

This post focuses on our Sustainable Land Management science area, which is led by Dr Richard Pywell. The research we undertake in this area is delivered in the context of ensuring adequate provision of food, fuel and water while conserving biodiversity and vital ecosystem functions.

CEH develops practical solutions to restore and enhance ecosystem
functions that deliver goods and services crucial for human wellbeing,
such as pollination services for crops and biodiversity.


Population increase, climate change, pollution and other environmental stresses are expected to have highly detrimental impacts on ecosystems and natural resources vital for human wellbeing and livelihoods. Therefore novel land management approaches to optimise natural resources are needed.




CEH's sustainable land management science area aims to understand the threats to semi-natural and highly managed ecosystems, and their component resources. From this understanding, we will develop robust strategies to conserve vital resources and increase their resilience to environmental change. We will also develop practical approaches that can be applied at the field, farm and landscape scale to restore and enhance the ecosystem functions and services crucial for human wellbeing and livelihoods.

Our research activity involves experiments, long-term monitoring, the development of practical land management and restoration techniques, engagement with practitioners and industry and the support of policy development.


Our science helps to protect, restore and enhance ecosystem functions that support food production, such as pollination and pest control.



We also engage with practitioners and the farming industry to develop new, innovative eco-intensive farming systems that are practical and commercially viable.


Future objectives include constructing spatial decision-support tools to balance demands on limited land; developing and testing management and restoration strategies; mapping potential deficits and vulnerabilities of pollination and pest control services to environmental stress; and supporting future land management policies that meet the challenges of sustainable intensification and multi-functional land use.

For more details of these and other objectives in our Sustainable Land Management Science Area, see our Science Area Summary [PDF].

Additional information


CEH Science Strategy 2014-2019

CEH Science Areas

Staff page of Dr Richard Pywell, Science Area Lead for Sustainable Land Management

Friday, 14 March 2014

Pollution & Environmental Risk science area at CEH

CEH's new Science Strategy identifies three interdependent, major societal and environmental challenges: Securing the Value of Nature, Building Resilience to Environmental Hazards, and Managing Environmental Change. We're delivering our strategy by Science Areas and underpinning activities, and over the next few weeks we are profiling these on our blog.

This post focuses on our Pollution & Environmental Risk Science Area led by Professor Richard Shore. Through this area, CEH will provide scientific evidence and risk assessment for sustainable management of chemicals while protecting people and the environment.

Chemicals include pharmaceuticals, radionuclides, macronutrients, trace elements and organic and inorganic pollutants. The development, manufacture and use of chemicals contributes billions of pounds to the UK economy per annum, yet they can have hazardous properties that pose risks to human health, food production and the environment.

Solardomes at CEH's Bangor research site: state-of-the-art exposure
facilities to study the impacts of ozone on a range of plant species.


CEH research objectives include short and long-term monitoring to quantify concentrations, pools, fluxes and impacts of key environmental pollutants.


We study pollutant transport, fate, exposure, effects to discover or predict impact on organisms, human health, ecosystems and their services. We aim to reduce uncertainty with which we predict environmental dynamics, bioavailability and impacts of environmental pollutants, improve hazard screening and risk assessment processes for current and emerging technologies and provide training, tools and approaches for the more realistic assessment of environmental exposure concentrations and risks from manufactured nanomaterials.


CEH runs the Predatory Bird Monitoring Scheme, a long-term, national monitoring scheme that quantifies the concentrations of contaminants in the livers and eggs of selected species of predatory and fish-eating birds in Britain. We monitor the levels of contaminants to determine how and why they vary between species and regions, how they are changing over time, and the effects that they may have on individual birds and on their populations.


The Predatory Bird Monitoring Scheme is also a part of the WILDCOMS collaborative network, formed between the various UK surveillance schemes that monitor disease and contaminants in vertebrate wildlife.

CEH also has a well-established international reputation in radioecology research, the study of the behaviour of radioactive elements in the environment and measuring exposure to radiation of humans and other organisms.


Temporary storage site for radioactive waste at Kawauchi, Japan. In October 2013 Dr Brenda Howard
of CEH was part of an International Atomic Energy Agency international expert mission to
review remediation efforts in areas affected by the Fukushima Daiichi accident.


Read more about our Pollution & Environmental Risk Science Area, including a Science Area Summary [PDF], on the CEH website.

Additional information


CEH Science Strategy 2014-2019

Staff page of Professor Richard Shore, Pollution & Environmental Risk Science Area Lead



Monday, 28 October 2013

British lakes - boldly going where no lakes have gone before

Three scientists at CEH, Natural Resources Wales and Queen Mary University London discuss the findings of a collaborative lake ecosystems project:

"British lakes are on a new environmental trajectory. For the last half century scientists and managers have focused on how acidification and eutrophication affect the structure and function of lakes and their ecological quality. Now, as the effects of climate change are increasing in magnitude, it is interacting with other pressures, such as the expansion of non-native invasive species. We are therefore facing a situation where management strategies will need to be revised and restoration targets reconsidered as novel ecosystems emerge."

This was one of the main messages derived from a recent workshop convened at the Centre for Ecology & Hydrology's Lancaster site by CEH and Queen Mary University of London (QMUL).

The purpose was to discuss the outcomes of a NERC-funded project, "Whole lake responses to species invasion mediated by climate change", with colleagues in the regulatory and conservation agencies: Natural Resources Wales, Scottish Natural Heritage, Natural England, the Environment Agency and the Cumbria Freshwater Invasive Non-Native Species Initiative. The research is based on Windermere, England's largest natural lake, where unrivalled long-term records and archives exist. The project builds on more than two decades of research on lakes around the world that have revealed that climate change is affecting a range of lake properties throughout the whole lake ecosystem and that some of the changes will be hard to forecast. More specific information can be found at the Windermere Science website.

The John Lund - the CEH vessel used to carry out the long-term
monitoring on Windermere. Photo: Dr Ian Winfield.

 The project found that climate change has:
  • increased water temperature and prolonged the period of stratification
  • favoured species, such as the roach, from southern latitudes
  • disfavoured species, such as the Arctic charr, from northern latitudes
  • changed the fish community, leading to altered fish diet and food-web linkages
  • altered the zooplankton community structure
  • led to earlier phytoplankton growth in the spring and later growth in the autumn

These findings will directly inform the future management of one of the most important lakes in England. However, there are lessons to be learned as well, as many of the changes are likely to be common across lakes in different regions.

Taking a zooplankton net tow. Photo: Dr Peter Smyntek


There was common agreement at the workshop that our lakes are a critical national resource delivering a range of ecosystem services, but they are under threat. In particular, they are sensitive to invasive species which favour already disturbed environments. The importance of having access to long-term datasets and archived samples was acknowledged but the insights they provide will be strengthened by using other techniques, such as stable isotopes to trace food-webs and by modelling. Other research priorities specific to invasive species included identification of introduction pathways, early detection, likely spatial and temporal impact of specific species, and the effectiveness of biosecurity measures.

Guest blog by Dr Catherine Duigan (Head of the Marine and Freshwater Ecosystems Group, Natural Resources Wales, Bangor, @NatResWales), Prof Stephen Maberly (Head of the Lake Ecosystems Group at CEH), and Dr Jonathan Grey (Reader in Aquatic Ecology, QMUL).

Additional information


Windermere Science

Lake Ecosystems Group at CEH

Tuesday, 16 April 2013

Reflections on the science underpinning the EU Biodiversity Strategy

Science underpinning the EU 2020 Biodiversity Strategy
CEH is involved in a number of cross-European partnerships and initiatives – international collaboration is a major feature of our science. One such initiative is ALTER-Net (a Long-Term Biodiversity, Ecosystem and Awareness Research Network), which comprises 26 partner institutes from 18 European countries. ALTER-Net integrates research capacities across Europe: assessing changes in biodiversity, analysing the effect of those changes on ecosystem services and informing policy makers and the public about this at a European scale.
Together with the European Commission, ALTER-Net has organized a major conference which has been taking place in Ghent, Belgium this week, during which participants are discussing the implementation of the 2020 European Biodiversity Strategy. Specifically, conference members are looking for scientifically sound, evidence-based recommendations on how to implement and realize the strategy. More than 200 scientists from 66 research institutes and more than 25 countries are taking part – not only is CEH among those helping to organise the event, along with Belgian lead organisers INBO, we also have scientists speaking during the main programme, and have organised some of the side events.
The location for the conference is an Augustinian monastery, probably an ideal place to “retreat” to for focused thought and discussion (the whole conference lasts for four days).
Outcomes
The conference recommendations will be presented to EU policy makers and it is expected they will form a starting point for the European Platform on Biodiversity Research Strategy (EPBRS) meeting to be held under the Irish EU Presidency in Dublin in May.
Why an EU 2020 Biodiversity Strategy?
After the overall failure of the previous European strategy to halt the loss of biodiversity by 2010, the EU adopted a new strategy in 2011, with a 2050 vision and a 2020 headline target. This 2020 target was defined as:
"Halting the loss of biodiversity and the degradation of ecosystem services in the EU by 2020, and restoring them in so far as feasible, while stepping up the EU contribution to averting global biodiversity loss."
The EU 2020 Biodiversity Strategy includes six mutually supportive and interdependent targets that respond to the objectives of the 2020 headline target:
1. Conserving and restoring nature
2. Maintaining and enhancing ecosystems and their services
3. Ensuring the sustainability of agriculture, forestry and fisheries
4. Combating invasive alien species
5. Addressing the global biodiversity crisis
6. Contributions of other environmental policies and initiatives
In a series of workshops, groups of scientists and policy makers will discuss the targets, before presenting their recommendations during the final plenary session on Thursday afternoon (April 18 2013).
More about the conference can be found on the ALTER-Net website. Dr Terry Parr from CEH was one of the speakers during Tuesday morning's plenary session on  "Biodiversity, ecosystems and sustainability - how to maintain, enhance and convince in the future". Others taking part in the session included the Finnish research institute SYKE, IRSTEA of France, the European Commission's DG Environment, and the University of Paris-Sud. On Wednesday, Dr Helen Roy of CEH will take part in a session focused on invasive alien species, while on the same day Dr Andrew Sier of CEH leads a side event which will look at developing new initiatives for ALTER-Net to undertake.
Get updates from the event on Twitter using #ALTERNetConf. More information on CEH's international collaborative work can be found on our main website.

Related CEH links