Global Warming Images
 

 
20130501_B18A8125.jpg The Diemen combined heat and power plant on the outskirts of Amsterdam, Netherlands is operated by Nuon energy. It is a combined cycle gas turbine that produces 435 Megawatts of power and also 260 megawatts of heat, enough to supply 25,000 homes with hot water. The water is pumped from the plant via an 11km long pipe under Ij Meer to supply the town of Almere with space heating for the houses. The combined heast and power maskes the plant 85% efficient.
 
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20130501_IMG_6320.jpg This futuristic looking building recieves hot water in an 11km long pipe from the Diemen, combined heat and power station and supplies space heating for up to 25,000 houses in the town of Almere. Investing in this sort of technology means the residents of almere have a tiny carbon footprint compared to most western European households.
 
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20130501_IMG_6324.jpg The Diemen combined heat and power plant on the outskirts of Amsterdam, Netherlands is operated by Nuon energy. It is a combined cycle gas turbine that produces 435 Megawatts of power and also 260 megawatts of heat, enough to supply 25,000 homes with hot water. The water is pumped from the plant via an 11km long pipe under Ij Meer to supply the town of Almere with space heating for the houses. The combined heast and power maskes the plant 85% efficient.
 
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20130502_B18A8390.jpg This futuristic looking building recieves hot water in an 11km long pipe from the Diemen, combined heat and power station and supplies space heating for up to 25,000 houses in the town of Almere. Investing in this sort of technology means the residents of almere have a tiny carbon footprint compared to most western European households.
 
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20130502_B18A8393.jpg This futuristic looking building recieves hot water in an 11km long pipe from the Diemen, combined heat and power station and supplies space heating for up to 25,000 houses in the town of Almere. Investing in this sort of technology means the residents of almere have a tiny carbon footprint compared to most western European households.
 
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20130502_B18A8400.jpg This futuristic looking building recieves hot water in an 11km long pipe from the Diemen, combined heat and power station and supplies space heating for up to 25,000 houses in the town of Almere. Investing in this sort of technology means the residents of almere have a tiny carbon footprint compared to most western European households.
 
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20130502_B18A8407.jpg This futuristic looking building recieves hot water in an 11km long pipe from the Diemen, combined heat and power station and supplies space heating for up to 25,000 houses in the town of Almere. Investing in this sort of technology means the residents of almere have a tiny carbon footprint compared to most western European households.
 
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20130502_B18A8415.jpg This futuristic looking building recieves hot water in an 11km long pipe from the Diemen, combined heat and power station and supplies space heating for up to 25,000 houses in the town of Almere. Investing in this sort of technology means the residents of almere have a tiny carbon footprint compared to most western European households.
 
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20130503_B18A9031.jpg The Diemen combined heat and power plant on the outskirts of Amsterdam, Netherlands is operated by Nuon energy. It is a combined cycle gas turbine that produces 435 Megawatts of power and also 260 megawatts of heat, enough to supply 25,000 homes with hot water. The water is pumped from the plant via an 11km long pipe under Ij Meer to supply the town of Almere with space heating for the houses. The combined heast and power maskes the plant 85% efficient.
 
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20130503_B18A9036.jpg The Diemen combined heat and power plant on the outskirts of Amsterdam, Netherlands is operated by Nuon energy. It is a combined cycle gas turbine that produces 435 Megawatts of power and also 260 megawatts of heat, enough to supply 25,000 homes with hot water. The water is pumped from the plant via an 11km long pipe under Ij Meer to supply the town of Almere with space heating for the houses. The combined heast and power maskes the plant 85% efficient.
 
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20130503_B18A9042.jpg The Diemen combined heat and power plant on the outskirts of Amsterdam, Netherlands is operated by Nuon energy. It is a combined cycle gas turbine that produces 435 Megawatts of power and also 260 megawatts of heat, enough to supply 25,000 homes with hot water. The water is pumped from the plant via an 11km long pipe under Ij Meer to supply the town of Almere with space heating for the houses. The combined heast and power maskes the plant 85% efficient.
 
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20130503_B18A9061.jpg The Diemen combined heat and power plant on the outskirts of Amsterdam, Netherlands is operated by Nuon energy. It is a combined cycle gas turbine that produces 435 Megawatts of power and also 260 megawatts of heat, enough to supply 25,000 homes with hot water. The water is pumped from the plant via an 11km long pipe under Ij Meer to supply the town of Almere with space heating for the houses. The combined heast and power maskes the plant 85% efficient.
 
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20130503_B18A9068.jpg The Diemen combined heat and power plant on the outskirts of Amsterdam, Netherlands is operated by Nuon energy. It is a combined cycle gas turbine that produces 435 Megawatts of power and also 260 megawatts of heat, enough to supply 25,000 homes with hot water. The water is pumped from the plant via an 11km long pipe under Ij Meer to supply the town of Almere with space heating for the houses. The combined heast and power maskes the plant 85% efficient.
 
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20130503_IMG_6496.jpg This futuristic looking building recieves hot water in an 11km long pipe from the Diemen, combined heat and power station and supplies space heating for up to 25,000 houses in the town of Almere. Investing in this sort of technology means the residents of almere have a tiny carbon footprint compared to most western European households.
 
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20130503_IMG_6723.jpg This futuristic looking building recieves hot water in an 11km long pipe from the Diemen, combined heat and power station and supplies space heating for up to 25,000 houses in the town of Almere. Investing in this sort of technology means the residents of almere have a tiny carbon footprint compared to most western European households.
 
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20130503_IMG_6729.jpg This futuristic looking building recieves hot water in an 11km long pipe from the Diemen, combined heat and power station and supplies space heating for up to 25,000 houses in the town of Almere. Investing in this sort of technology means the residents of almere have a tiny carbon footprint compared to most western European households.
 
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20130503_IMG_6740.jpg This futuristic looking building recieves hot water in an 11km long pipe from the Diemen, combined heat and power station and supplies space heating for up to 25,000 houses in the town of Almere. Investing in this sort of technology means the residents of almere have a tiny carbon footprint compared to most western European households.
 
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20130503_IMG_6865.jpg The Diemen combined heat and power plant on the outskirts of Amsterdam, Netherlands is operated by Nuon energy. It is a combined cycle gas turbine that produces 435 Megawatts of power and also 260 megawatts of heat, enough to supply 25,000 homes with hot water. The water is pumped from the plant via an 11km long pipe under Ij Meer to supply the town of Almere with space heating for the houses. The combined heast and power maskes the plant 85% efficient.
 
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20130503_IMG_6874.jpg The Diemen combined heat and power plant on the outskirts of Amsterdam, Netherlands is operated by Nuon energy. It is a combined cycle gas turbine that produces 435 Megawatts of power and also 260 megawatts of heat, enough to supply 25,000 homes with hot water. The water is pumped from the plant via an 11km long pipe under Ij Meer to supply the town of Almere with space heating for the houses. The combined heast and power maskes the plant 85% efficient.
 
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20130504_B18A9202.jpg Emissions from a coal fired power station in Amsterdam, Netherlands.
 
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20130504_B18A9219.jpg Emissions from a coal fired power station in Amsterdam, Netherlands.
 
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20130504_B18A9252.jpg Climate change heaven and hell, a wind turbine, with emissions from a coal fired power station behind.
 
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20130504_B18A9270.jpg Emissions from a coal fired power station in Amsterdam, Netherlands.
 
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20130504_B18A9283.jpg Emissions from a coal fired power station in Amsterdam, Netherlands.
 
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20130504_B18A9305.jpg Emissions from a coal fired power station in Amsterdam, Netherlands.
 
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20130504_B18A9316.jpg Emissions from a coal fired power station in Amsterdam, Netherlands.
 
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20130504_B18A9333.jpg Emissions from a coal fired power station in Amsterdam, Netherlands.
 
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20130504_B18A9367.jpg Emissions from a coal fired power station in Amsterdam, Netherlands.
 
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20130504_IMG_7023.jpg Climate change heaven and hell of a wind turbine with emissions from a coal fired power station in Amsterdam, Netherlands.
 
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20130504_IMG_7028.jpg Emissions from a coal fired power station in Amsterdam, Netherlands with daffodils.
 
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20130504_IMG_7036.jpg Emissions from a coal fired power station in Amsterdam, Netherlands with daffodils.
 
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20130506_B18A0739.jpg This futuristic looking building recieves hot water in an 11km long pipe from the Diemen, combined heat and power station and supplies space heating for up to 25,000 houses in the town of Almere. Investing in this sort of technology means the residents of almere have a tiny carbon footprint compared to most western European households.
 
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20130417_B18A5353.jpg Dave Lowe the manager of Grizedale Forest next to the bio fuel boiler that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5356.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5360.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5361.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5362.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5364.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5367.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5371.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5375.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5377.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5394.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5404.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5405.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5407.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5410.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5413.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5415.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5424.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5426.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130417_B18A5429.jpg The bio fuel boiler at Grizedale forest that uses timber grown in the forest, and heats the whole of the Grizedale buildings. The boiler has a rating of 220 KW.
 
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20130429_P4290168.jpg Climate change heaven and hell of wind turbines with an oil tanker in Amsterdam, Netherlands.
 
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20130504_B18A9371.jpg An oil tanker unloading at an oil terminal in Amsterdam, Netherlands.
 
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20130504_B18A9375.jpg An oil tanker unloading at an oil terminal in Amsterdam, Netherlands.
 
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20130504_B18A9383.jpg Coal on the dockside in Amsterdam, Netherlands.
 
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20130504_B18A9389.jpg Coal on the dockside in Amsterdam, Netherlands.
 
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20130504_B18A9394.jpg Coal on the dockside in Amsterdam, Netherlands.
 
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20130504_B18A9583.jpg Climate change heaven and hell, an oil terminal in Amsterdam, Netherlands, with wind turbines generating renewable energy.
 
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20130504_B18A9601.jpg An oil terminal in Amsterdam, Netherlands, with a plane flying over.
 
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20130504_B18A9621.jpg A train in front of an oil terminal in Amsterdam, Netherlands.
 
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20130504_B18A9626.jpg Climate change heaven and hell, a train infront of an oil terminal in Amsterdam, Netherlands, with wind turbines generating renewable energy.
 
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20130504_B18A9631.jpg A train in front of an oil terminal in Amsterdam, Netherlands.
 
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20130504_B18A9636.jpg A train in front of an oil terminal in Amsterdam, Netherlands.
 
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