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IMG_7159_p.jpg A geothermal energy project by Newcastle University, funded by the Dept of Energy and Climate Change. This project involves drilling 6,000 feet beneath Newcastle, on the site of the old Newcastle Brown Brewery. At this depth, the geothermally heated water is 80 degrees C. The plan is for this renewable energy source to provide space heating for a shopping centre and University buildings.
 
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IMG_7161_p.jpg A geothermal energy project by Newcastle University, funded by the Dept of Energy and Climate Change. This project involves drilling 6,000 feet beneath Newcastle, on the site of the old Newcastle Brown Brewery. At this depth, the geothermally heated water is 80 degrees C. The plan is for this renewable energy source to provide space heating for a shopping centre and University buildings.
 
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IMG_7180_p.jpg A workman measures the depth of the borehole at a geothermal energy project by Newcastle University, funded by the Dept of Energy and Climate Change. This project involves drilling 6,000 feet beneath Newcastle, on the site of the old Newcastle Brown Brewery. At this depth, the geothermally heated water is 80 degrees C. The plan is for this renewable energy source to provide space heating for a shopping centre and University buildings.
 
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IMG_7186_p.jpg A workman measures the depth of the borehole at a geothermal energy project by Newcastle University, funded by the Dept of Energy and Climate Change. This project involves drilling 6,000 feet beneath Newcastle, on the site of the old Newcastle Brown Brewery. At this depth, the geothermally heated water is 80 degrees C. The plan is for this renewable energy source to provide space heating for a shopping centre and University buildings.
 
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IMG_7191_p.jpg A workman measures the depth of the borehole at a geothermal energy project by Newcastle University, funded by the Dept of Energy and Climate Change. This project involves drilling 6,000 feet beneath Newcastle, on the site of the old Newcastle Brown Brewery. At this depth, the geothermally heated water is 80 degrees C. The plan is for this renewable energy source to provide space heating for a shopping centre and University buildings.
 
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IMG_7194_p.jpg A geothermal energy project by Newcastle University, funded by the Dept of Energy and Climate Change. This project involves drilling 6,000 feet beneath Newcastle, on the site of the old Newcastle Brown Brewery. At this depth, the geothermally heated water is 80 degrees C. The plan is for this renewable energy source to provide space heating for a shopping centre and University buildings.
 
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IMG_0660_p.jpg Following the warmest and driest April on record, moorland fires broke out across the UK. Ogden Moor near Wainstalls above Halifax was one of many victims. Several square Km of moorland burned for four days. The blaze was tackled by fire fighters, but despite their efforts the blaze destroyed valuable moorland habitat, killing mammals and amphibians and destroying nesting birds nests. The wind farm was also closed down for a number of days as the blades were a danger to the helicopters fighting the blaze with aerial water drops. This shot shows fire fighters and water board engineers who were helping to tackle the blaze.
 
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IMG_0645_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0647_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0649_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0653_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0654_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0657_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0659_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0663_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0666_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0673_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0675_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0677_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0679_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0684_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0685_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0687_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0688_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0692_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0696_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0698_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0700_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0703_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0705_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0717_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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IMG_0720_p.jpg Technicians fitting solar photo voltaic panels to a house roof in Ambleside, Cumbria, UK.
 
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