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  • The National Grid electricity control room maps and monitors the flow of high voltage electric power around the entire UK network from their head quarters in Berkshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • The National Grid electricity control room maps and monitors the flow of high voltage electric power around the entire UK network from their head quarters in Berkshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • The Map inside the National Grid electricity control room that monitors the flow of high voltage electric power around the entire UK network from their head quarters in Berkshire, United Kingdom. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • Workers inside the National Grid electricity control room maps and monitors the flow of high voltage electric power around the entire UK network from their head quarters in Berkshire, United Kingdom. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • The National Grid electricity control room maps and monitors the flow of high voltage electric power around the entire UK network from their head quarters  Wokingham, United Kingdom. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • A cross section of high tension electrical power (pylon) line. Made up of 7 strands of steel surrounded by 4 layers of aluminium. Aluminium conductor steel reinforced ACSR Carbon core conductor, the metal cable used to transmit electricity throughout the UK pylon network. Part of a display at Nation Grid Headquarters, Wokingham, United Kingdom. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • A cross section of high tension electrical power (pylon) line. Made up of 7 strands of steel surrounded by 4 layers of aluminium. Aluminium conductor steel reinforced ACSR Carbon core conductor, the metal cable used to transmit electricity throughout the UK pylon network. Part of a display at Nation Grid Headquarters, Wokingham, United Kingdom. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • A National Grid electricity substation where 275 kV and 400 kV overhead power lines or underground cables are switched and where electricity is transformed to 132 kV for distribution to surrounding areas. Oxfordshire, United Kingdom. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • The screens inside the National Grid electricity control room closely monitor weather and  the flow of high voltage electric power around the entire UK network from their head quarters in Berkshire, United Kingdom. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • The National Grid electricity control room maps and monitors the flow of high voltage electric power around the entire UK network from their head quarters  Wokingham, United Kingdom. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • A woman taking a picture inside the Holocaust memorial, a memorial in Berlin, Germany to the Jewish victims of the Holocaust designed by architect Peter Eisenman and engineer Buro Happold. It consists of 2,711 concrete slabs  covering a 19,000-square-metre site arranged in a grid pattern. Berlin. Germany. (photo by Andrew Aitchison / In pictures via Getty Images)
    Germany-Berlin-Holocaust-Memorial-31...jpg
  • Electrical pylons running from Dungeness power station, Kent, United Kingdom. Dungeness supplies 1120 MW to the national grid. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1483.jpg
  • Cathy McClay - Head of commercial operations for the National Grid. Open Energi. ALL publication MUST include the credit © Andrew Aitchison / Ashden
    16-OpenEnergi-7499.jpg
  • Cathy McClay - Head of commercial operations for the National Grid. Open Energi. ALL publication MUST include the credit © Andrew Aitchison / Ashden
    16-OpenEnergi-7483.jpg
  • The National Grid control room at their head quarters in Wokingham. Open Energi. ALL publication MUST include the credit © Andrew Aitchison / Ashden
    16-OpenEnergi-7526.jpg
  • The National Grid control room at their head quarters in Wokingham. Open Energi. ALL publication MUST include the credit © Andrew Aitchison / Ashden
    16-OpenEnergi-7530.jpg
  • The National Grid control room at their head quarters in Wokingham. Open Energi. ALL publication MUST include the credit © Andrew Aitchison / Ashden
    16-OpenEnergi-7533.jpg
  • The 3 cooling towers at Didcot power station in Oxfordshire, UK. Didcot Power Station is a coal-fired station supplying electricity to the National Grid.
    08-didcot_3921.jpg
  • The National Grid control room at their head quarters in Wokingham. Open Energi. ALL publication MUST include the credit © Andrew Aitchison / Ashden
    16-OpenEnergi-7515.jpg
  • The 3 cooling towers at Didcot power station in Oxfordshire, UK. Didcot Power Station is a coal-fired station supplying electricity to the National Grid.
    08-didcot_3919.jpg
  • 400 kV overhead electricity power lines suspended by pylons are used to transmit electric energy across large distances from Didcot Power staion across Oxfordshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • 400 kV overhead electricity power lines suspended by pylons and used to transmit electric energy across large distances across Oxfordshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • 400 kV overhead electricity power lines suspended by pylons and used to transmit electric energy across large distances across Oxfordshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • 400 kV overhead electricity power lines suspended by pylons and used to transmit electric energy across large distances across Oxfordshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • 400 kV overhead electricity power lines suspended by pylons and used to transmit electric energy across large distances across Oxfordshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • 400 kV overhead electricity power lines suspended by pylons and used to transmit electric energy across large distances across Oxfordshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • 400 kV overhead electricity power lines suspended by pylons and used to transmit electric energy across large distances across Oxfordshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • 400 kV overhead electricity power lines suspended by pylons are used to transmit electric energy across large distances from Didcot Power staion across Oxfordshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK_Electrical_Supply_National_Grid_7...dng
  • Electrical Pylons on the outskirts of Bethesda that run through the valleys in Gwynedd, Wales.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wales-Electricity-Pylons-9587.jpg
  • Electrical pylons coming from Dungeness power station running through the Romney marsh, Kent, United Kingdom. In the distance, the twin reactor power station known as Dungeness B can be seen. <br />
(photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1536.jpg
  • An electrical pylon located near Dungeness, Kent, United Kingdom. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1529.jpg
  • Dungeness Nuclear Power Station, Kent, United Kingdom. This is a twin reactor plant located on the headlands overlooking a nature reserve and Site of Special Scientific Interest. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Dungeness-Power...jpg
  • Smoke and steam bellows from the chimneys and cooling towers of Ratcliffe-on-Soar coal fired power station, owned and operated by Uniper at Ratcliffe-on-Soar in Nottinghamshire, England. The plant emits 8–10 million tonnes of CO2 annually. It has a generating capacity of 2,116 MW,  enough electricity to meet the needs of approximately 2 million homes. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Coal-Fired-Power-Station-7251.jpg
  • The cooling towers of Willington Coal fired power station, first commissioned in 1957 it contains four 104 M.W. generating units, Each unit, when on full load, burns approximately 1,000 tons of coal per day which produces 200 tons of ash. Willington, Derbyshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Willington-Power-Station-1421.jpg
  • Electrical Pylons on the outskirts of Bethesda that run through the valleys in Gwynedd, Wales.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wales-Electricity-Pylons-9595.jpg
  • Electrical Pylons on the outskirts of Bethesda that run through the valleys in Gwynedd, Wales.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wales-Electricity-Pylons-9553.jpg
  • Electrical pylons running from Dungeness alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wind-Farm-Pylons-1468.jpg
  • Electrical pylons running alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom. The wind farm has a nameplate capacity of 59.8 MW.<br />
(photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wind-Farm-Pylons-1460.jpg
  • Electrical pylons running alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom. The wind farm has a nameplate capacity of 59.8 MW.<br />
(photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wind-Farm-Pylons-1446.jpg
  • Electrical pylons running alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom. The wind farm has a nameplate capacity of 59.8 MW.<br />
(photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wind-Farm-Pylons-1449.jpg
  • Electrical pylons running from Dungeness alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wind-Farm-Pylons-1398.jpg
  • Electrical pylons running from Dungeness alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wind-Farm-Pylons-1396.jpg
  • Electrical pylons running alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom. The wind farm has a nameplate capacity of 59.8 MW.<br />
(photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wind-Farm-Pylons-1394.jpg
  • (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1619.jpg
  • The first electrical pylons coming out of Dungeness B nuclear power station in the Romney Marsh, Kent, United Kingdom. The original power station, Dungeness A, closed down in 2006. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1606.jpg
  • A view of the electrical pylons coming from Dungeness B nuclear power plant in the Romney Marsh, Kent, United Kingdom. The 26 turbines from Little Cheyne Court Wind Farm can be seen in the distance. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1572.jpg
  • A view of the electrical pylons coming from Dungeness B nuclear power plant in the Romney Marsh, Kent, United Kingdom. The 26 turbines from Little Cheyne Court Wind Farm can be seen in the distance. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1562.jpg
  • The first electrical pylons coming out of Dungeness B nuclear power station in the Romney Marsh, Kent, United Kingdom. The original power station, Dungeness A, closed down in 2006. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1557.jpg
  • An electrical pylon located near Dungeness, Kent, United Kingdom. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1528.jpg
  • The first electrical pylons running out of Dungeness B nuclear power station in Kent, United Kingdom. The native Romney sheep inhabit all surrounding marshland. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1518.jpg
  • The first electrical pylons running out of Dungeness B nuclear power station in Kent, United Kingdom. The native Romney sheep inhabit all surrounding marshland. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1512.jpg
  • Close-up of a man cleaning a photovoltaic solar energy panel. This panel, or module, is made up of photovoltaic (PV) cells. PV cells convert sunlight into electrical energy. Photovoltaic panels are an economical, efficient way to produce electricity.
    08-pv_1152.jpg
  • Close-up of a man cleaning a photovoltaic solar energy panel. This panel, or module, is made up of photovoltaic (PV) cells. PV cells convert sunlight into electrical energy. Photovoltaic panels are an economical, efficient way to produce electricity.
    08-pv_1147.jpg
  • Solar PV Photo Voltaic panels on the roof of Ringmer community college, Ringmer; East Sussex. This panel, or module, is made up of photovoltaic (PV) cells. PV cells convert sunlight into electrical energy.
    08-solar_0403.jpg
  • A row of electricity pylons coming from Hartlepool Power Station in Hartlepool, North East England, UK.  The tall steel lattice transmission tower supports overhead power lines. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Energy-Electricity-Pylons-1593.jpg
  • The Brent Bravo Delta oil platform topsides in Able Seaton Port, Hartlepool, North East England, UK.   This was the heaviest single cargo ever to be lifted in the history of the oil and gas industry was brought to Seaton to be scrapped. The aim is to recycle 98% of the structure.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Brent-Delta-Oil-Rig-1613.jpg
  • Electricity Pylons leading from Hartlepool Power Station pass the decommissioned Brent Delta Oil Rig in Able Seaton Port, Hartlepool, North East England, UK.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Brent-Delta-Oil-Rig-1612.jpg
  • The Brent Bravo Delta oil platform topsides in Able Seaton Port, Hartlepool, North East England, UK.   This was the heaviest single cargo ever to be lifted in the history of the oil and gas industry was brought to Seaton to be scrapped. The aim is to recycle 98% of the structure.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Brent-Delta-Oil-Rig-1616.jpg
  • A maintenance person uses a ladder and harnesses to install equipment around a Solar panel array on the roof of a house to stop birds nesting underneath. Folkestone, Kent, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Renewable-Energy-Solar-PV-7074.jpg
  • The Old Lighthouse of Dungeness, Kent, United Kingdom. A Historic Grade II listed building, it is the fourth lighthouse built on Dungeness and was built in 1904. Behind the lighthouse is Dungeness Nuclear Power Station.  This is a twin reactor plant located on the headlands overlooking a nature reserve and Site of Special Scientific Interest. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Dungeness-Power...jpg
  • Dungeness Nuclear Power Station, Kent, United Kingdom. This is a twin reactor plant located on the headlands overlooking a nature reserve and Site of Special Scientific Interest. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Dungeness-Power...jpg
  • Smoke and steam bellows from the chimneys and cooling towers of Ratcliffe-on-Soar coal fired power station, owned and operated by Uniper at Ratcliffe-on-Soar in Nottinghamshire, England. The plant emits 8–10 million tonnes of CO2 annually. It has a generating capacity of 2,116 MW,  enough electricity to meet the needs of approximately 2 million homes. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Coal-Fired-Power-Station-7335.jpg
  • Smoke and steam bellows from the chimneys and cooling towers of Ratcliffe-on-Soar coal fired power station, owned and operated by Uniper at Ratcliffe-on-Soar in Nottinghamshire, England. The plant emits 8–10 million tonnes of CO2 annually. It has a generating capacity of 2,116 MW,  enough electricity to meet the needs of approximately 2 million homes. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Coal-Fired-Power-Station-7305.jpg
  • Smoke and steam bellows from the chimneys and cooling towers of Ratcliffe-on-Soar coal fired power station, owned and operated by Uniper at Ratcliffe-on-Soar in Nottinghamshire, England. The plant emits 8–10 million tonnes of CO2 annually. It has a generating capacity of 2,116 MW,  enough electricity to meet the needs of approximately 2 million homes. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Coal-Fired-Power-Station-7328.jpg
  • Smoke and steam bellows from the chimneys and cooling towers of Ratcliffe-on-Soar coal fired power station, owned and operated by Uniper at Ratcliffe-on-Soar in Nottinghamshire, England. The plant emits 8–10 million tonnes of CO2 annually. It has a generating capacity of 2,116 MW,  enough electricity to meet the needs of approximately 2 million homes. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Coal-Fired-Power-Station-7320.jpg
  • Smoke and steam bellows from the chimneys and cooling towers of Ratcliffe-on-Soar coal fired power station, owned and operated by Uniper at Ratcliffe-on-Soar in Nottinghamshire, England. The plant emits 8–10 million tonnes of CO2 annually. It has a generating capacity of 2,116 MW,  enough electricity to meet the needs of approximately 2 million homes. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Coal-Fired-Power-Station-7296.jpg
  • Smoke and steam bellows from the chimneys and cooling towers of Ratcliffe-on-Soar coal fired power station, owned and operated by Uniper at Ratcliffe-on-Soar in Nottinghamshire, England. The plant emits 8–10 million tonnes of CO2 annually. It has a generating capacity of 2,116 MW,  enough electricity to meet the needs of approximately 2 million homes. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Coal-Fired-Power-Station-7269.jpg
  • Smoke and steam bellows from the chimneys and cooling towers of Ratcliffe-on-Soar coal fired power station, owned and operated by Uniper at Ratcliffe-on-Soar in Nottinghamshire, England. The plant emits 8–10 million tonnes of CO2 annually. It has a generating capacity of 2,116 MW,  enough electricity to meet the needs of approximately 2 million homes. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Coal-Fired-Power-Station-7289.jpg
  • Smoke and steam bellows from the chimneys and cooling towers of Ratcliffe-on-Soar coal fired power station, owned and operated by Uniper at Ratcliffe-on-Soar in Nottinghamshire, England. The plant emits 8–10 million tonnes of CO2 annually. It has a generating capacity of 2,116 MW,  enough electricity to meet the needs of approximately 2 million homes. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Coal-Fired-Power-Station-7263.jpg
  • Smoke and steam bellows from the chimneys and cooling towers of Ratcliffe-on-Soar coal fired power station, owned and operated by Uniper at Ratcliffe-on-Soar in Nottinghamshire, England. The plant emits 8–10 million tonnes of CO2 annually. It has a generating capacity of 2,116 MW,  enough electricity to meet the needs of approximately 2 million homes. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Coal-Fired-Power-Station-7245.jpg
  • Smoke and steam bellows from the chimneys and cooling towers of Ratcliffe-on-Soar coal fired power station, owned and operated by Uniper at Ratcliffe-on-Soar in Nottinghamshire, England. The plant emits 8–10 million tonnes of CO2 annually. It has a generating capacity of 2,116 MW,  enough electricity to meet the needs of approximately 2 million homes. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Coal-Fired-Power-Station-6830.jpg
  • The cooling towers of Willington Coal fired power station, first commissioned in 1957 it contains four 104 M.W. generating units, Each unit, when on full load, burns approximately 1,000 tons of coal per day which produces 200 tons of ash. Willington, Derbyshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Willington-Power-Station-1412.jpg
  • The cooling towers of Willington Coal fired power station, first commissioned in 1957 it contains four 104 M.W. generating units, Each unit, when on full load, burns approximately 1,000 tons of coal per day which produces 200 tons of ash. Willington, Derbyshire, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Willington-Power-Station-1414.jpg
  • Electrical Pylons on the outskirts of Bethesda that run through the valleys in Gwynedd, Wales.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wales-Electricity-Pylons-9608.jpg
  • Electrical Pylons on the outskirts of Bethesda that run through the valleys in Gwynedd, Wales.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wales-Electricity-Pylons-9602.jpg
  • Electrical Pylons on the outskirts of Bethesda that run through the valleys in Gwynedd, Wales.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wales-Electricity-Pylons-9576.jpg
  • Electrical Pylons on the outskirts of Bethesda that run through the valleys in Gwynedd, Wales.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wales-Electricity-Pylons-9581.jpg
  • Electrical Pylons on the outskirts of Bethesda that run through the valleys in Gwynedd, Wales.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wales-Electricity-Pylons-9578.jpg
  • Electrical Pylons on the outskirts of Bethesda that run through the valleys in Gwynedd, Wales.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wales-Electricity-Pylons-9570.jpg
  • Electrical Pylons on the outskirts of Bethesda that run through the valleys in Gwynedd, Wales.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wales-Electricity-Pylons-9564.jpg
  • Electrical Pylons on the outskirts of Bethesda that run through the valleys in Gwynedd, Wales.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wales-Electricity-Pylons-9560.jpg
  • Electrical pylons running from Dungeness alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wind-Farm-Pylons-1462.jpg
  • Electrical pylons running from Dungeness alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wind-Farm-Pylons-1406.jpg
  • Electrical pylons running from Dungeness alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wind-Farm-Pylons-1402.jpg
  • Electrical pylons running alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom. The wind farm has a nameplate capacity of 59.8 MW.<br />
(photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Wind-Farm-Pylons-1387.jpg
  • Electrical pylons coming from Dungeness B power station in the Romney Marsh, Kent, United Kingdom. Grazing below the pylons is a herd of Romney sheep, who are native to the marshland.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1601.jpg
  • Electrical pylons coming from Dungeness B power station in the Romney Marsh, Kent, United Kingdom. Grazing below the pylons is a herd of Romney sheep, who are native to the marshland.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1593.jpg
  • A view of the electrical pylons coming from Dungeness B nuclear power plant in the Romney Marsh, Kent, United Kingdom. The 26 turbines from Little Cheyne Court Wind Farm can be seen in the distance. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1589.jpg
  • A view of the electrical pylons coming from Dungeness B nuclear power plant in the Romney Marsh, Kent, United Kingdom. The 26 turbines from Little Cheyne Court Wind Farm can be seen in the distance. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1581.jpg
  • The first electrical pylons coming out of Dungeness B nuclear power station in the Romney Marsh, Kent, United Kingdom. The original power station, Dungeness A, closed down in 2006. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1578.jpg
  • The first electrical pylons coming out of Dungeness B nuclear power station in the Romney Marsh, Kent, United Kingdom. The original power station, Dungeness A, closed down in 2006. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1575.jpg
  • A view of the electrical pylons coming from Dungeness B nuclear power plant in the Romney Marsh, Kent, United Kingdom. The 26 turbines from Little Cheyne Court Wind Farm can be seen in the distance. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1566.jpg
  • Electrical pylons coming from Dungeness power station running through the Romney marsh, Kent, United Kingdom. In the distance, the twin reactor power station known as Dungeness B can be seen. <br />
(photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1537.jpg
  • Electrical pylons coming from Dungeness power station running through the Romney marsh, Kent, United Kingdom. In the distance, the twin reactor power station known as Dungeness B can be seen. <br />
(photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1533.jpg
  • The first electrical pylons running out of Dungeness B nuclear power station in Kent, United Kingdom. The native Romney sheep inhabit all surrounding marshland. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1517.jpg
  • The first electrical pylons running out of Dungeness B nuclear power station in Kent, United Kingdom. The native Romney sheep inhabit all surrounding marshland. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1509.jpg
  • Electrical pylons running from Dungeness alongside the Little Cheyne Court Wind Farm on Romney Marsh, Kent, United Kingdom.  (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Pylons-1475.jpg
  • Dungeness Nuclear Power Station, Kent, United Kingdom. This is a twin reactor plant located on the headlands overlooking a nature reserve and Site of Special Scientific Interest. (photo by Andrew Aitchison / In pictures via Getty Images)
    UK-Electrical-Energy-Dungeness-Power...jpg
  • An electricity sub station near Didcot Power station, Oxfordshire. Open Energi. ALL publication MUST include the credit © Andrew Aitchison / Ashden
    16-OpenEnergi-7221.jpg
  • Electricity cable used to transmit eletectirity through the UK pylon network. Open Energi. ALL publication MUST include the credit © Andrew Aitchison / Ashden
    16-OpenEnergi-7451.jpg
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