Global Warming Images
 

 
20130430_B18A7635.jpg Litter on the streets of Amsterdam following the annual Queen day celebrations, Netherlands.
 
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20130430_B18A7648.jpg Litter on the streets of Amsterdam following the annual Queen day celebrations, Netherlands.
 
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20130430_IMG_5613.jpg Litter on the streets of Amsterdam following the annual Queen day celebrations, Netherlands.
 
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20130430_B18A7632.jpg Litter on the streets of Amsterdam following the annual Queen day celebrations, Netherlands.
 
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20130430_B18A7644.jpg Litter on the streets of Amsterdam following the annual Queen day celebrations, Netherlands.
 
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20130430_B18A7650.jpg Litter on the streets of Amsterdam following the annual Queen day celebrations, Netherlands.
 
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20130430_IMG_5612.jpg Litter on the streets of Amsterdam following the annual Queen day celebrations, Netherlands.
 
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AC2012-0291.jpg Tree reflections in the River Wharfe in Wharfedale, Yorkshire, UK.
 
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20100905_IMG_6134.jpg Capturing geothermal steam from boreholes to power the Svartsengi geothermal power station in Keflavik near Reykjavik in Iceland. The power station produces 76.5 MW of electricity as well as 475 litres per second of hot water for household heating. Icelands electricity is 100% renewable, made up of about 70% hydro and 30% geothermal.
 
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20100905_IMG_6214.jpg Capturing geothermal steam from boreholes to power the Reykjanes geothermal power station near Reykjavik in Iceland. The power station produces 100 MW of electricity. Icelands electricity is 100% renewable, made up of about 70% hydro and 30% geothermal.
 
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20100905_IMG_6221.jpg Capturing geothermal steam from boreholes to power the Reykjanes geothermal power station near Reykjavik in Iceland. The power station produces 100 MW of electricity. Icelands electricity is 100% renewable, made up of about 70% hydro and 30% geothermal.
 
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20100905_IMG_6268.jpg Capturing geothermal steam from boreholes to power the Reykjanes geothermal power station near Reykjavik in Iceland. The power station produces 100 MW of electricity. Icelands electricity is 100% renewable, made up of about 70% hydro and 30% geothermal.
 
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20100905_IMG_6276.jpg Capturing geothermal steam from boreholes to power the Reykjanes geothermal power station near Reykjavik in Iceland. The power station produces 100 MW of electricity. Icelands electricity is 100% renewable, made up of about 70% hydro and 30% geothermal.
 
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20100905_IMG_6280.jpg Capturing geothermal steam from boreholes to power the Reykjanes geothermal power station near Reykjavik in Iceland. The power station produces 100 MW of electricity. Icelands electricity is 100% renewable, made up of about 70% hydro and 30% geothermal.
 
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20100906_IMG_6387.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100906_IMG_6392.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100906_IMG_6396.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100906_IMG_6401.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100906_IMG_6410.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100906_IMG_6420.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100906_IMG_6430.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100906_IMG_6433.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100906_IMG_6438.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100906_IMG_6447.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100906_IMG_6452.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6047 (1).jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6053.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6058.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6081.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6625 (1).jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6629.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6630.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6643 (1).jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6656 (1).jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6660.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6663.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6674.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100907_IMG_6740.jpg Hellisheidi geothermal power station in Hengill, Iceland is the worlds second largest geothermal power station. It will soon have a capacity of 300 MW of electricity generation. It also supplies hot water via a pipeline to Reykjavik for space heating for households and industry. Iceland generates 100% of its electricity from renewables, aprox 70% from Hydro and 30% from geothermal.
 
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20100911_IMG_6590 (1).jpg Krafla gwothermal power station near Myvatn, Iceland, it has an installed capacity of 60 MW of renewable electricity production, as well as supplying hot space heating water to the surrounding area. Iceland's electricity is produced 100% from renewables with aprox 70% from Hydro and 30% from geothermal.
 
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20100911_IMG_6622 (1).jpg Krafla gwothermal power station near Myvatn, Iceland, it has an installed capacity of 60 MW of renewable electricity production, as well as supplying hot space heating water to the surrounding area. Iceland's electricity is produced 100% from renewables with aprox 70% from Hydro and 30% from geothermal.
 
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20100911_IMG_6624.jpg Krafla gwothermal power station near Myvatn, Iceland, it has an installed capacity of 60 MW of renewable electricity production, as well as supplying hot space heating water to the surrounding area. Iceland's electricity is produced 100% from renewables with aprox 70% from Hydro and 30% from geothermal.
 
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20100911_IMG_7646.jpg Krafla gwothermal power station near Myvatn, Iceland, it has an installed capacity of 60 MW of renewable electricity production, as well as supplying hot space heating water to the surrounding area. Iceland's electricity is produced 100% from renewables with aprox 70% from Hydro and 30% from geothermal.
 
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20100911_IMG_7649.jpg Krafla gwothermal power station near Myvatn, Iceland, it has an installed capacity of 60 MW of renewable electricity production, as well as supplying hot space heating water to the surrounding area. Iceland's electricity is produced 100% from renewables with aprox 70% from Hydro and 30% from geothermal.
 
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20100911_IMG_7655.jpg Krafla gwothermal power station near Myvatn, Iceland, it has an installed capacity of 60 MW of renewable electricity production, as well as supplying hot space heating water to the surrounding area. Iceland's electricity is produced 100% from renewables with aprox 70% from Hydro and 30% from geothermal.
 
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20100911_IMG_7869.jpg Krafla geothermal power station. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6717 (1).jpg An electrician working a control panel in Krafla geothermal power station, that measures some of the 5000 measurements that control the power plant.. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6733.jpg One of the steam turbines in the turbine hall of Krafla geothermal power station, that measures some of the 5000 measurements that control the power plant.. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6737 (1).jpg One of the steam turbines in the turbine hall of Krafla geothermal power station, that measures some of the 5000 measurements that control the power plant.. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6743 (1).jpg One of the steam turbines in the turbine hall of Krafla geothermal power station, that measures some of the 5000 measurements that control the power plant.. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6744.jpg The turbine hall of Krafla geothermal power station, that measures some of the 5000 measurements that control the power plant.. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6749.jpg One of the steam turbines in the turbine hall of Krafla geothermal power station, that measures some of the 5000 measurements that control the power plant.. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6754.jpg One of the steam turbines in the turbine hall of Krafla geothermal power station, that measures some of the 5000 measurements that control the power plant.. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6755.jpg An electrician checks one of the steam turbines in the turbine hall of Krafla geothermal power station, that measures some of the 5000 measurements that control the power plant.. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6771 (1).jpg The control room hall of Krafla geothermal power station, that measures some of the 5000 measurements that control the power plant.. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6774.jpg The control room hall of Krafla geothermal power station, that measures some of the 5000 measurements that control the power plant.. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6784 (1).jpg Krafla geothermal power station. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6812.jpg Part of the plant that removes water from the geothermal steam, before it is fed into the steam turbines at Krafla geothermal power station. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6821 (1).jpg Part of the plant that removes water from the geothermal steam, before it is fed into the steam turbines at Krafla geothermal power station. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6825.jpg Part of the plant that removes water from the geothermal steam, before it is fed into the steam turbines at Krafla geothermal power station. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6829.jpg Part of the plant that removes water from the geothermal steam, before it is fed into the steam turbines at Krafla geothermal power station. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6837 (1).jpg The cooling tower at Krafla geothermal power station. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6854 (1).jpg The cooling tower at Krafla geothermal power station. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_6856 (1).jpg The cooling tower at Krafla geothermal power station. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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20100912_IMG_7900.jpg One of the steam turbines in the turbine hall of Krafla geothermal power station, that measures some of the 5000 measurements that control the power plant.. Krafla has an installed capacity of 60 MW. 100% of Iceland's electricity is produced from renewables, 70% from hydro and 30% from geothermal.
 
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