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20120127_IMG_8735.jpg The Farmgen anaerobic bio digestor at Dryholme Farm near Silloth Cumbria, UK. The plant which cost £4.5 million, produces 1.2 Mw of electricity, enough to power 2000 households. It uses around 25,000 tons of feedstock annualy, mainly maize and grass, which is mixed with farm slurry and fed into the massive digestors where bacteria break it down. The resulting methane is what powers the electricity generator. This shot shows the hopper that is loaded with the feedstock.
 
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20120127_IMG_8737.jpg The Farmgen anaerobic bio digestor at Dryholme Farm near Silloth Cumbria, UK. The plant which cost £4.5 million, produces 1.2 Mw of electricity, enough to power 2000 households. It uses around 25,000 tons of feedstock annualy, mainly maize and grass, which is mixed with farm slurry and fed into the massive digestors where bacteria break it down. The resulting methane is what powers the electricity generator. This shot shows the hopper that is loaded with the feedstock.
 
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20120127_IMG_8744.jpg The Farmgen anaerobic bio digestor at Dryholme Farm near Silloth Cumbria, UK. The plant which cost £4.5 million, produces 1.2 Mw of electricity, enough to power 2000 households. It uses around 25,000 tons of feedstock annualy, mainly maize and grass, which is mixed with farm slurry and fed into the massive digestors where bacteria break it down. The resulting methane is what powers the electricity generator.
 
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20120112_IMG_7648.jpg The Iggesund paper board plant in Workington, Cumbria, UK, with a wind turbine to help power the plant, with construction work on  a new biofuel power station, to power the manufacturing plant.
 
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20120112_IMG_7650.jpg The Iggesund paper board plant in Workington, Cumbria, UK, with construction work on  a new biofuel power station, to power the manufacturing plant.
 
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20120112_IMG_7652.jpg The Iggesund paper board plant in Workington, Cumbria, UK, with construction work on  a new biofuel power station, to power the manufacturing plant.
 
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20120112_IMG_7655.jpg The Iggesund paper board plant in Workington, Cumbria, UK, with a wind turbine to help power the plant, with construction work on  a new biofuel power station, to power the manufacturing plant.
 
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20120112_IMG_7658.jpg The Iggesund paper board plant in Workington, Cumbria, UK, with a wind turbine to help power the plant, with construction work on  a new biofuel power station, to power the manufacturing plant.
 
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20120112_IMG_7665.jpg The Iggesund paper board plant in Workington, Cumbria, UK, with construction work on  a new biofuel power station, to power the manufacturing plant.
 
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20120112_IMG_7670.jpg The Iggesund paper board plant in Workington, Cumbria, UK, with a wind turbine to help power the plant, with construction work on  a new biofuel power station, to power the manufacturing plant.
 
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20120112_IMG_7686.jpg The Iggesund paper board plant in Workington, Cumbria, UK, with a wind turbine to help power the plant, with construction work on  a new biofuel power station, to power the manufacturing plant.
 
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20120112_IMG_7689.jpg The Iggesund paper board plant in Workington, Cumbria, UK, with a wind turbine to help power the plant, with construction work on  a new biofuel power station, to power the manufacturing plant.
 
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20100212_0245.jpg Electricity lines taking power from the Murray 1 power station, part of the Snowy Mountains hydro scheme in New south Wales, Australia with an electric car
 
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20111104_0248.jpg An aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road, with an electric car.
 
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20111104_0249.jpg Power lines running from a coal fired power station to an aluminium smelter in Ashington, North East, UK, with an electric carcharging station.
 
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20111104_0252.jpg An aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road, and an electric car charging station.
 
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20111104_0253.jpg An aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road, and an electric car charging station.
 
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20111204_0306.jpg Power lines leading to an aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road with an electric car charging station.
 
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IMG_6106_PPE.jpg Gathega Dam supplying the water to power Guthega power station as part of the Snowy mountains hydro scheme, New South Wales, Australia.
 
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IMG_4181_factory.jpg An aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road.
 
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IMG_4184_aluminium.jpg An aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road.
 
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IMG_4189_power.jpg Power lines running from a coal fired power station to an aluminium smelter in Ashington, North East, UK.
 
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IMG_4193_power lines.jpg An aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road.
 
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IMG_4198_transmission.jpg Power lines running from a coal fired power station to an aluminium smelter in Ashington, North East, UK.
 
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IMG_4205_pylon.jpg An aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road.
 
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IMG_4209_smoke stack.jpg An aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road.
 
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IMG_4210_power station.jpg A coal fired power station supplying power to an aluminium smelter across the road in Ashington, North East, UK.
 
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IMG_6526_aluminium plant.jpg Power lines leading to an aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road.
 
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IMG_6527_electricity.jpg Power lines leading to an aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road.
 
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IMG_6531_power lines.jpg Power lines leading to an aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road.
 
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IMG_6536_pylon.jpg Power lines leading to an aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road.
 
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IMG_6540_national grid.jpg Power lines leading to an aluminium smelting plant on the outskirts of Ashington in Northumberland, UK. Aluminium smelting requires vast quantities of energy, in this case electricity generated by a coal fired power plant across the road.
 
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