1199 pictures found
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Indonesia, Java Island, East Java province, Kawah Ijen volcano, sulfur flames
© Stéphane Godin / Biosphoto
© Stéphane Godin / Biosphoto
Indonesia, Java Island, East Java province, Kawah Ijen volcano, sulfur flames
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Indonesia, Java Island, East Java province, Kawah Ijen volcano, sulfur flames
© Stéphane Godin / Biosphoto
© Stéphane Godin / Biosphoto
Indonesia, Java Island, East Java province, Kawah Ijen volcano, sulfur flames
© Óscar Díez Martínez / Biosphoto
Red water loaded with Iron Rio Tinto - Andalusia Spain
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Concretions colored by sulfur Volcano Dallol Ethiopia
© Jean-Luc & Françoise Ziegler / Biosphoto
© Jean-Luc & Françoise Ziegler / Biosphoto
Concretions colored by sulfur Volcano Dallol Ethiopia
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Waste pond in the mineral-rich area of the Rio Tinto mines. The colour is caused by oxidised iron minerals. Aerial view. Drone
© Thomas Dressler / Biosphoto
© Thomas Dressler / Biosphoto
Waste pond in the mineral-rich area of the Rio Tinto mines. The colour is caused by oxidised iron minerals. Aerial view. Drone shot. Huelva province, Andalusia, Spain.
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Track crossing a waste pond in the mineral-rich area of the Rio Tinto mines. The colour is caused by oxidised iron minerals. Aerial
© Thomas Dressler / Biosphoto
© Thomas Dressler / Biosphoto
Track crossing a waste pond in the mineral-rich area of the Rio Tinto mines. The colour is caused by oxidised iron minerals. Aerial view. Drone shot. Huelva province, Andalusia, Spain.
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Waste pond in the mineral-rich area of the Rio Tinto mines. The colour is caused by oxidised iron minerals. Aerial view. Drone
© Thomas Dressler / Biosphoto
© Thomas Dressler / Biosphoto
Waste pond in the mineral-rich area of the Rio Tinto mines. The colour is caused by oxidised iron minerals. Aerial view. Drone shot. Huelva province, Andalusia, Spain.
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Waste pond in the mineral-rich area of the Rio Tinto mines. The colour is caused by oxidised iron minerals. Aerial view. Drone
© Thomas Dressler / Biosphoto
© Thomas Dressler / Biosphoto
Waste pond in the mineral-rich area of the Rio Tinto mines. The colour is caused by oxidised iron minerals. Aerial view. Drone shot. Huelva province, Andalusia, Spain.
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Waste pond in the mineral-rich area of the Rio Tinto mines. The colour is caused by oxidised iron minerals. Aerial view. Drone
© Thomas Dressler / Biosphoto
© Thomas Dressler / Biosphoto
Waste pond in the mineral-rich area of the Rio Tinto mines. The colour is caused by oxidised iron minerals. Aerial view. Drone shot. Huelva province, Andalusia, Spain.
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Vine leaves (Vitis vinifera) treated with Bordeaux mixture in july
© Marie Aymerez / Biosphoto
© Marie Aymerez / Biosphoto
Vine leaves (Vitis vinifera) treated with Bordeaux mixture in july
© Marie Aymerez / Biosphoto
Sweet peppers (Capsicum annuum) unripe fruits in July
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Waterfall oxidized by iron minerals in the Vatnajokull Massif, Iceland
© Michel Rauch / Biosphoto
© Michel Rauch / Biosphoto
Waterfall oxidized by iron minerals in the Vatnajokull Massif, Iceland
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Tata plant, Soda ash extraction plant for industry, Lake Magadi, Kenya
© Sylvain Cordier / Biosphoto
© Sylvain Cordier / Biosphoto
Tata plant, Soda ash extraction plant for industry, Lake Magadi, Kenya
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Tata plant, Soda ash extraction plant for industry, Lake Magadi, Kenya
© Sylvain Cordier / Biosphoto
© Sylvain Cordier / Biosphoto
Tata plant, Soda ash extraction plant for industry, Lake Magadi, Kenya
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Freshwater estuary entering the lake after heavy rains, Lake Magadi, Kenya
© Sylvain Cordier / Biosphoto
© Sylvain Cordier / Biosphoto
Freshwater estuary entering the lake after heavy rains, Lake Magadi, Kenya
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Lake Magadi, hypersaline soda lake, mineral formations sometimes generated by microorganisms, presence of large quantities of soda ash, Kenya
© Sylvain Cordier / Biosphoto
© Sylvain Cordier / Biosphoto
Lake Magadi, hypersaline soda lake, mineral formations sometimes generated by microorganisms, presence of large quantities of soda ash, Kenya
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Lake Magadi, hypersaline soda lake, mineral formations sometimes generated by microorganisms, presence of large quantities of soda ash, river
© Sylvain Cordier / Biosphoto
© Sylvain Cordier / Biosphoto
Lake Magadi, hypersaline soda lake, mineral formations sometimes generated by microorganisms, presence of large quantities of soda ash, river arriving in the Natron Lake, Kenya
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Lake Magadi, hypersaline soda lake, mineral formations sometimes generated by microorganisms, presence of large quantities of soda ash, Kenya
© Sylvain Cordier / Biosphoto
© Sylvain Cordier / Biosphoto
Lake Magadi, hypersaline soda lake, mineral formations sometimes generated by microorganisms, presence of large quantities of soda ash, Kenya
© Claudius Thiriet / Biosphoto
Rape leaf, discoloration due to sulfur deficiency. France
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Swanberg Dredge, town of Nome, Iditarod End Point, Seward Peninsula, Alaska, USA
© Robert Valarcher / Biosphoto
© Robert Valarcher / Biosphoto
Swanberg Dredge, town of Nome, Iditarod End Point, Seward Peninsula, Alaska, USA
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Ferric bacteria in a spring. Precipitation of dissolved iron into
© Jean-Philippe Delobelle / Biosphoto
© Jean-Philippe Delobelle / Biosphoto
Ferric bacteria in a spring. Precipitation of dissolved iron into oxidized ferric iron by the action of ferrobacteria.
© Daniel Heuclin / Biosphoto
El Cebollar cobalt mine. Antofogasta Region N. Chile
© Daniel Heuclin / Biosphoto
El Cebollar cobalt mine. Antofogasta Region N. Chile
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River heavily polluted by mining waste in the Cevennes. The Reigoux carries several tonnes of arsenic and a whole raft of heavy metals: antimony,
© Jean-Philippe Delobelle / Biosphoto
© Jean-Philippe Delobelle / Biosphoto
River heavily polluted by mining waste in the Cevennes. The Reigoux carries several tonnes of arsenic and a whole raft of heavy metals: antimony, cadmium, lead, etc. from the former mining site deserted by the Peñarroya company. An arsenic concentration of 7,500 mg per litre was found, whereas the current standards for drinking water are 10 mg per litre" (le Midi Libre") - Saint Sébastien d'Aigrefeuille, Gard, France
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River heavily polluted by mining waste in the Cevennes. The
© Jean-Philippe Delobelle / Biosphoto
© Jean-Philippe Delobelle / Biosphoto
River heavily polluted by mining waste in the Cevennes. The Reigoux carries several tonnes of arsenic and a whole raft of heavy metals: antimony, cadmium, lead, etc. from the former mining site deserted by the Peñarroya company. An arsenic concentration of 7,500 mg per litre was found, whereas the current standards for drinking water are 10 mg per litre" (le Midi Libre") - Saint Sébastien d'Aigrefeuille, Gard, France
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River heavily polluted by mining waste in the Cevennes. The Reigoux carries several tonnes of arsenic and a whole raft of heavy metals: antimony,
© Jean-Philippe Delobelle / Biosphoto
© Jean-Philippe Delobelle / Biosphoto
River heavily polluted by mining waste in the Cevennes. The Reigoux carries several tonnes of arsenic and a whole raft of heavy metals: antimony, cadmium, lead, etc. from the former mining site deserted by the Peñarroya company. An arsenic concentration of 7,500 mg per litre was found, whereas the current standards for drinking water are 10 mg per litre" (le Midi Libre") - Saint Sébastien d'Aigrefeuille, Gard, France
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River heavily polluted by mining waste in the Cevennes. The
© Jean-Philippe Delobelle / Biosphoto
© Jean-Philippe Delobelle / Biosphoto
River heavily polluted by mining waste in the Cevennes. The Reigoux carries several tonnes of arsenic and a whole raft of heavy metals: antimony, cadmium, lead, etc. from the former mining site deserted by the Peñarroya company. An arsenic concentration of 7,500 mg per litre was found, whereas the current standards for drinking water are 10 mg per litre" (le Midi Libre") - Saint Sébastien d'Aigrefeuille, Gard, France
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Lithothamnion, food supplement for horses based on red algae,
© Catherine Fruhinsholz / Biosphoto
© Catherine Fruhinsholz / Biosphoto
Lithothamnion, food supplement for horses based on red algae, source of calcium and magnesium.
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Geothermal area Seltun during winter, Reykjanes, Iceland. Geothermal area Seltun heated by the vulcano Krysuvik on Reykjanes
© Martin Zwick / Biosphoto
© Martin Zwick / Biosphoto
Geothermal area Seltun during winter, Reykjanes, Iceland. Geothermal area Seltun heated by the vulcano Krysuvik on Reykjanes peninsula during winter. europe, northern europe, iceland, February
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Geothermal area Seltun during winter, Reykjanes, Iceland. Geothermal area Seltun heated by the vulcano Krysuvik on Reykjanes
© Martin Zwick / Biosphoto
© Martin Zwick / Biosphoto
Geothermal area Seltun during winter, Reykjanes, Iceland. Geothermal area Seltun heated by the vulcano Krysuvik on Reykjanes peninsula during winter. europe, northern europe, iceland, February
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Gallery wall of an iron mine in pink sandstone, Vosges du Nord Regional Nature Park, France
© Michel Rauch / Biosphoto
© Michel Rauch / Biosphoto
Gallery wall of an iron mine in pink sandstone, Vosges du Nord Regional Nature Park, France
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Detail at the shore of the Río Tinto (Red river). Its colour is caused by oxidised iron minerals. Aerial view. Drone shot. Huelva province,
© Thomas Dressler / Biosphoto
© Thomas Dressler / Biosphoto
Detail at the shore of the Río Tinto (Red river). Its colour is caused by oxidised iron minerals. Aerial view. Drone shot. Huelva province, Andalusia, Spain.
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Detail at the shore of the Río Tinto (Red river). Its colour is caused by oxidised iron minerals. Aerial view. Drone shot. Huelva province,
© Thomas Dressler / Biosphoto
© Thomas Dressler / Biosphoto
Detail at the shore of the Río Tinto (Red river). Its colour is caused by oxidised iron minerals. Aerial view. Drone shot. Huelva province, Andalusia, Spain.
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Pellets left on the ground in the middle of a daffodil station, after a winter shooting and biathlon initiation season, Jura, France.
© Jean-Baptiste Strobel / Biosphoto
© Jean-Baptiste Strobel / Biosphoto
Pellets left on the ground in the middle of a daffodil station, after a winter shooting and biathlon initiation season, Jura, France.
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Pellets left on the ground in the middle of a daffodil station, after a winter shooting and biathlon initiation season, Jura, France.
© Jean-Baptiste Strobel / Biosphoto
© Jean-Baptiste Strobel / Biosphoto
Pellets left on the ground in the middle of a daffodil station, after a winter shooting and biathlon initiation season, Jura, France.
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France. Hunting. The European commission has adopted in january
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. There is already new anmunitions with zinc, steel, tungsten and bismuth.
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France. Hunting. Lead cartridge. The European commission has
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. Lead cartridge. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. There is already new anmunitions with zinc, steel, tungsten and bismuth.
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France. Hunting. Lead cartridge. The European commission has
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. Lead cartridge. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. There is already new anmunitions with zinc, steel, tungsten and bismuth.
RM2463328JPG
France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. There is already new anmunitions with zinc, steel, tungsten and bismuth.
RM2463327JPG
France. Hunting. Lead balls. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. Lead balls. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. There is already new anmunitions with zinc, steel, tungsten and bismuth.
RM2463326JPG
France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. There is already new anmunitions with zinc, steel, tungsten and bismuth.
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France. Hunting. The European commission has adopted in january
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. There is already new anmunitions with zinc, steel, tungsten and bismuth but much more expansive than lead.
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France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. In the future, the lead
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. There is already new anmunitions with zinc, steel, tungsten and bismuth but much more expansive than lead.
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France. Chasse. En janvier 2021, la Commission Européenne a
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Chasse. En janvier 2021, la Commission Européenne a adopté un règlement interdisant l'utilisation de munition au plomb a moins de 100m d'une zone humide d'ici 2023. A terme, l’idée est d'interdire le plomb a la chasse car environ 6 000 tonnes de plomb seraient ainsi libérées dans la nature chaque année et parce qu'il existe déjà des munitions alternatives en acier, zinc, étain, bismuth et tungstène mais qui coutent beaucoup plus cher que le plomb
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France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. Here a variety of anmunitions with lead for small and big game). There is already new anmunitions with zinc, steel, tungsten and bismuth.
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France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m.
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. Here a variety of anmunitions with lead for small and big game). There is already new anmunitions with zinc, steel, tungsten and bismuth.
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France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m. In the future, the lead will be totally banned even for the big game (here bullets with copper and lead) as 6000 tons of lead is put into nature by hunters every year. There is already new anmunitions with zinc, steel, tungsten and bismuth.
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France. Hunting. Details of of lead cartridge. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. Details of of lead cartridge. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. There is already new anmunitions with zinc, steel, tungsten and bismuth.
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France. Hunting. Lead cartridge for small game. The European
© Antoine Lorgnier / Biosphoto
© Antoine Lorgnier / Biosphoto
France. Hunting. Lead cartridge for small game. The European commission has adopted in january 2021 a ban on using lead 100m around any wetland in Europe. So far in France, the ban is only 30m. In the future, the lead will be totally banned as 6000 tons of lead is put into nature by hunters every year. There is already new anmunitions with zinc, steel, tungsten and bismuth.