Completed Food & Agriculture Clean Energy

Centre for sustainable energy use in food chains

In plain English

AI plain-English summary

The UK food chain—from farms to fridges—guzzles 18% of the nation's final energy demand and churns out 160 million tonnes of CO₂ equivalent each year. This Centre aims to slash that energy use by taking a hard, holistic look at every link in the chain: how food is processed, shipped, sold, and cooked, and how those steps interact with the energy grid. Quick-fix technologies have already been deployed; further cuts require fundamental redesigns of processes and systems. The researchers will simulate energy and resource flows from farm gate to plate, develop more efficient manufacturing and refrigeration technologies, and explore how the food chain can flex its demand to help balance the UK's electricity supply. They will also study how shifting demographics and consumer habits reshape energy use. If successful, the work could shrink the sector's carbon footprint toward the 2050 target of an 80% reduction, while cutting the 15 million tonnes of food waste generated annually. Many of the innovations—in industrial efficiency, building energy use, and goods transport—are expected to transfer to other sectors of the economy.

View original technical description
The UK food chain, comprising agricultural production, manufacturing, distribution, retail and consumption, involves more than 300,000 enterprises and employs 3.6 million people. The food and drink industry is the largest manufacturing sector, employing 500,000 people and contributing £80 billion to the economy. It is also estimated that the food chain is responsible for 160 MtCO2e emissions and 15 Mt of food waste, causing significant environmental impacts. Energy is an important input in all stages of the food chain and is responsible for 18% of the UK's final energy demand. In recent years, progress has been made in the reduction of energy consumption and emissions from the food chain primarily through the application of well proven technologies that could lead to quick return on investment. To make further progress, however, significant innovations will have to be made in approaches and technologies at all stages of the food chain, taking a holistic view of the chain and the interactions both within the chain and the external environment. The EPSRC Centre for Sustainable Energy Use in Food Chains will make significant contributions in this field. It will bring together multidisciplinary research groups of substantial complementary experience and internationally leading research track record from the Universities of Brunel, Manchester and Birmingham and a large number of key stakeholders to investigate and develop innovative approaches and technologies to effect substantial end use energy demand reductions. The Centre will engage both in cutting edge research into approaches and technologies that will have significant impacts in the future, leading towards the target of 80% reduction in CO2 emissions by 2050, but also into research that will have demonstrable impacts within the initial five year lifetime of the Centre. Taking a whole systems approach, the research themes will involve: i) Simulation of energy and resource flows in the food chain, from farm-gate to plate to enable investigations of energy and resource flows between the stages of the chain and the external environment, and facilitate overall energy and resource use optimisation taking into consideration the impact of policy decisions, future food and energy prices and food consumption trends. ii) Investigation of approaches and technologies for the reduction of energy use at all stages of the chain through reduction of the energy intensity of individual processes and optimisation of resource use. It is expected that a number of new innovative and more efficient technologies and approaches for energy reduction will be developed in the lifetime of the Centre to address processing, distribution, retail and final consumption in the home and the service sector. iii) Identification of optimal ways of interaction between the food chain and the UK energy supply system to help manage varying demand and supply through distributed power generation and demand-response services to the grid. iv) Study of consumer behaviour and the impact of key influencing factors such as changing demographics, increased awareness of the needs and requirements of sustainable living, economic factors and consumption trends on the nature and structure of the food chain and energy use. Even though the focus will be on the food chain, many of the approaches and technologies developed will also be applicable to other sectors of the economy such as industry, commercial and industrial buildings and transportation of goods. The Centre will involve extensive collaboration with the user community, manufacturers of technology, Government Departments, Food Associations and other relevant research groups and networks. A key vehicle for dissemination and impact will be a Food Energy and Resource Network which will organise regular meetings and annual international conferences to disseminate the scientific outputs and engage the national and international research and user communities

View the original record at the funder ↗

Researchers

Adisa Azapagic (Co-Investigator)Andrew Stewart (Co-Investigator)Constantinos Theodoropoulos (Co-Investigator)G. Wossink (Co-Investigator)Ian Norton (Co-Investigator)Jim Song (Co-Investigator)Maria Kolokotroni (Co-Investigator)Michael Bourlakis (Co-Investigator)Peter Fryer (Co-Investigator)Savvas Tassou (Principal Investigator)Serafim Bakalis (Co-Investigator)Yunting Ge (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

The Internet of Food Things
EPSRC Centre for Innovative Manufacturing in Food
End Use Energy Demand Centre titled "Centre for Industrial Energy, Materials, Energy and Products (CIE-MAP)
End Use Energy Demand Research Champion
Development of integrated sustainable processes for food waste valorisation

Original classification

Research Grant

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.