{"id":2188094,"date":"2025-08-28T12:00:49","date_gmt":"2025-08-28T11:00:49","guid":{"rendered":"https:\/\/focusingonwildlife.com\/news\/?p=2188094"},"modified":"2025-08-23T09:01:01","modified_gmt":"2025-08-23T08:01:01","slug":"green-hydrogen-development-threatens-wildlife-in-chile","status":"publish","type":"post","link":"https:\/\/focusingonwildlife.com\/news\/green-hydrogen-development-threatens-wildlife-in-chile\/","title":{"rendered":"Green hydrogen development threatens wildlife in Chile"},"content":{"rendered":"<p>Green hydrogen promoters tout it as the clean energy of the future. In 2020, Chile launched its National Green Hydrogen Strategy, looking to position the country as a leader in producing and exporting hydrogen by 2030 while reaching carbon neutrality. \u201cToday we are taking a new step forward in producing clean energy, protecting nature and fighting climate change,\u201d former President Sebasti\u00e1n Pi\u00f1era said in 2021 at the moment Chile produced its first molecule of green hydrogen.<\/p>\n<p>Green hydrogen is a form of fuel produced using renewable energy sources (e.g., solar, wind) via water electrolysis, a chemical process that uses electricity to break the chemical bonds in water (H2O) and produce oxygen (O2) and hydrogen (H2) gas molecules. The industry sector sees this sort of hydrogen as a valuable tool that can help globally decarbonize or reduce the carbon emissions of mining, metal, chemical and fertilizer production, among others, which do not find another viable way of reducing their emissions. It has earned the nickname the \u201cchampagne of energies.\u201d Detractors, however, note that despite being seen as a premium and versatile energy source, green hydrogen is highly expensive and inefficient.<\/p>\n<p>Most of the hydrogen produced worldwide is derived from natural gas, creating what is known as grey hydrogen, which releases significant volumes of CO2 into the atmosphere, contributing to the current climate crisis. Another alternative, blue hydrogen, is also produced from natural gas, while capturing CO2 and storing it underground. This can result in leaking high quantities of methane (CH4), a more powerful greenhouse gas, during the production process.<\/p>\n<figure class=\"thumbnail wp-caption alignnone\" style=\"width: 1546px\"><img decoding=\"async\" src=\"data:image\/gif;base64,R0lGODlhAQABAIAAAAAAAP\/\/\/ywAAAAAAQABAAACAUwAOw==\" fifu-lazy=\"1\" fifu-data-sizes=\"auto\" fifu-data-srcset=\"https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1&amp;w=75&amp;resize=75&amp;ssl=1 75w, https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1&amp;w=100&amp;resize=100&amp;ssl=1 100w, https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1&amp;w=150&amp;resize=150&amp;ssl=1 150w, https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1&amp;w=240&amp;resize=240&amp;ssl=1 240w, https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1&amp;w=320&amp;resize=320&amp;ssl=1 320w, https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1&amp;w=500&amp;resize=500&amp;ssl=1 500w, https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1&amp;w=640&amp;resize=640&amp;ssl=1 640w, https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1&amp;w=800&amp;resize=800&amp;ssl=1 800w, https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1&amp;w=1024&amp;resize=1024&amp;ssl=1 1024w, https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1&amp;w=1280&amp;resize=1280&amp;ssl=1 1280w, https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1&amp;w=1600&amp;resize=1600&amp;ssl=1 1600w\" class=\"size-full\" fifu-data-src=\"https:\/\/i1.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080216\/Cerro-Dominador-solar-plant.jpg?ssl=1\" alt=\"The Cerro Dominador solar plant in the Antofagasta region of northern Chile. Image by Ministerio Bienes Nacionales via Wikimedia Commons (CC BY 2.0).\" width=\"1536\" height=\"1024\" title=\"\"><figcaption class=\"caption wp-caption-text\">The Cerro Dominador solar plant in the Antofagasta region of northern Chile. Image by Ministerio Bienes Nacionales via Wikimedia Commons (CC BY 2.0).<\/figcaption><\/figure>\n<p>Chile is a potentially well-positioned country for renewable energy development. In the north, the Atacama Desert, a dry region that looks more like visions of Mars than Earth itself, is an oasis of solar energy: It receives the highest solar radiation on the planet (2,506 kilowatt-hours per square meter), greater than other countries receiving high solar radiation such as Spain, the United States or the United Arab Emirates. While in the south, the Magallanes and Chilean Antarctic have one of the strongest and consistently windy regions in the world. These factors contribute to the estimation that the country is capable of producing 13% of the global green hydrogen in the future.<\/p>\n<p>However, the whole process faces numerous obstacles.Pure hydrogen molecules are extremely small and difficult to contain in traditional tanks or pipelines \u2014 they simply leak out and can weaken traditional steel pipes. One way around the problem is to bind hydrogen with nitrogen to make ammonia, a common chemical that facilitates transportation. This adds two industrial steps \u2014 making and then unmaking the ammonia \u2014 to hydrogen\u2019s already expensive bottom line. It also makes it far less efficient. \u201cIf the energy efficiency decreases \u2026 then the environmental impact increases because you have less service for the same amount of emission,\u201d David Finger, associate professor in the Department of Engineering at Reykjavik University, told Mongabay.<\/p>\n<p>Chile has already received a $150 million loan from the World Bank and 216.5 million euros in a cooperative investment from the European Investment Bank and other European entities to develop an infrastructure that positions Chile as a leader in green hydrogen. This is a country renowned worldwide for a strong mining sector that in 2024 exported $52.3 billion in minerals including copper. With green hydrogen development, Chile projects $30 billion in exports by 2050, decarbonizing its economy once and for all.<\/p>\n<p>But to turn this project into a reality, Chile must build more than massive fields full of solar panels and wind turbines. The process requires building electrolysis plants, desalination plants and storage containers for hydrogen and derivatives \u2014 and that worries experts like Carmen Espoz, dean of the Faculty of Sciences at Santo Tom\u00e1s University in Chile. Of most concern: the construction of five megaports that could impact whale migrations that arrive at the Strait of Magellan to feed. \u201cThis is not a problem specific to one biological group, but rather a macro problem that involves different species, as well as the human population and quality of life,\u201d Espoz told Mongabay.<\/p>\n<figure class=\"thumbnail wp-caption alignnone\" style=\"width: 1899px\"><img decoding=\"async\" src=\"data:image\/gif;base64,R0lGODlhAQABAIAAAAAAAP\/\/\/ywAAAAAAQABAAACAUwAOw==\" fifu-lazy=\"1\" fifu-data-sizes=\"auto\" fifu-data-srcset=\"https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1&amp;w=75&amp;resize=75&amp;ssl=1 75w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1&amp;w=100&amp;resize=100&amp;ssl=1 100w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1&amp;w=150&amp;resize=150&amp;ssl=1 150w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1&amp;w=240&amp;resize=240&amp;ssl=1 240w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1&amp;w=320&amp;resize=320&amp;ssl=1 320w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1&amp;w=500&amp;resize=500&amp;ssl=1 500w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1&amp;w=640&amp;resize=640&amp;ssl=1 640w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1&amp;w=800&amp;resize=800&amp;ssl=1 800w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1&amp;w=1024&amp;resize=1024&amp;ssl=1 1024w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1&amp;w=1280&amp;resize=1280&amp;ssl=1 1280w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1&amp;w=1600&amp;resize=1600&amp;ssl=1 1600w\" class=\"size-full\" fifu-data-src=\"https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171934\/Irradiation-map-1.png?ssl=1\" alt=\"Map showing solar irradiation around the world. Solar resource map courtesy of 2021 Solargis (CC BY-SA 4.0).\" width=\"1889\" height=\"1122\" title=\"\"><figcaption class=\"caption wp-caption-text\">Map showing solar irradiation around the world. Solar resource map courtesy of 2021 Solargis (CC BY-SA 4.0).<\/figcaption><\/figure>\n<figure class=\"thumbnail wp-caption alignnone\" style=\"width: 1546px\"><img decoding=\"async\" src=\"data:image\/gif;base64,R0lGODlhAQABAIAAAAAAAP\/\/\/ywAAAAAAQABAAACAUwAOw==\" fifu-lazy=\"1\" fifu-data-sizes=\"auto\" fifu-data-srcset=\"https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1&amp;w=75&amp;resize=75&amp;ssl=1 75w, https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1&amp;w=100&amp;resize=100&amp;ssl=1 100w, https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1&amp;w=150&amp;resize=150&amp;ssl=1 150w, https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1&amp;w=240&amp;resize=240&amp;ssl=1 240w, https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1&amp;w=320&amp;resize=320&amp;ssl=1 320w, https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1&amp;w=500&amp;resize=500&amp;ssl=1 500w, https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1&amp;w=640&amp;resize=640&amp;ssl=1 640w, https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1&amp;w=800&amp;resize=800&amp;ssl=1 800w, https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1&amp;w=1024&amp;resize=1024&amp;ssl=1 1024w, https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1&amp;w=1280&amp;resize=1280&amp;ssl=1 1280w, https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1&amp;w=1600&amp;resize=1600&amp;ssl=1 1600w\" class=\"size-full\" fifu-data-src=\"https:\/\/i3.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18080442\/Magallanes-and-Antarctic-Region.jpg?ssl=1\" alt=\"In the south, the Magallanes and Chilean Antarctic have one of the strongest and consistently windy regions in the world. Image by Gregory \u201cSlobirdr\u201d Smith via Wikimedia Commons (CC BY-SA 2.0).\" width=\"1536\" height=\"864\" title=\"\"><figcaption class=\"caption wp-caption-text\">In the south, the Magallanes and Chilean Antarctic have one of the strongest and consistently windy regions in the world. Image by Gregory \u201cSlobirdr\u201d Smith via Wikimedia Commons (CC BY-SA 2.0).<\/figcaption><\/figure>\n<p>A study in the journal Trends in Ecology &amp; Evolution reported that despite a lack of knowledge of the effects of renewable energies on wildlife, they do impact biodiversity and ecosystems. For example, apart from the removal of vegetation and microclimate changes under solar panels, large land areas and high amounts of water are needed to cool down the engines and clean the reflective surfaces of the solar panels. On the other hand, wind turbines cause many collisions with birds and bats, with mortality increasing proportionally to the turbine\u2019s height. In addition to collisions, noise from wind farms can reduce the reproductive success of some species and affect migratory species. Mongabay contacted both the Environmental Assessment Service and the Ministry of Energy of Chile, seeking to understand how they are addressing these potential threats to biodiversity. Neither replied to requests for comments by the time of publication.<\/p>\n<p>A letter published in Science by experts in Chile stated that an estimated 1,740-5,220 birds could collide yearly with wind turbines that will generate green hydrogen. Further, the authors warned that this number is underestimated. \u201cThis obviously concerns us because [the wind farms] are not only in the migration routes, but also in critical breeding sites for many species,\u201d Heraldo Norambuena, researcher at the Bah\u00eda Lomas Centre and main author of the letter, told Mongabay on a video call. Migratory birds such as the Magellanic plover (Pluvianellus socialis), the locally endangered ruddy-headed goose (Chloephaga rubidiceps) and the red knot (Calidris canutus), a bird that migrates 15,000 kilometers (9,300 miles) from Canada to Chile every year, could be at risk if they share the same area with green hydrogen infrastructure. \u201cIf the construction sites for these projects are not properly planned \u2026 just a few wind turbines are enough to devastate a population,\u201d Norambuena said.<\/p>\n<p>An unpublished study presented in June at the International Congress of Conservation Biology in Brisbane, Australia, exposed a similar threat in the northern region of Antofagasta, in the Atacama Desert. \u201cThese extreme conditions result in a low diversity of animal species, but the species that live there are uniquely adapted to these extreme environments,\u201d Mart\u00edn Escobar, associate researcher at the University of Chile, told Mongabay. The study searched for areas where species such as the grey gull (Leucophaeus modestus), a bird species whose habitat spans from Ecuador to Chile but only breeds in the Atacama Desert, and the Torres-Mura dragon (Liolaemus torresi), a small lizard endemic to the Atacama desert, could be protected. Escobar found that the most suitable areas to protect these species are already in conflict with areas where green hydrogen plants are being built or under evaluation.<\/p>\n<figure class=\"thumbnail wp-caption alignnone\" style=\"width: 1546px\"><img decoding=\"async\" src=\"data:image\/gif;base64,R0lGODlhAQABAIAAAAAAAP\/\/\/ywAAAAAAQABAAACAUwAOw==\" fifu-lazy=\"1\" fifu-data-sizes=\"auto\" fifu-data-srcset=\"https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1&amp;w=75&amp;resize=75&amp;ssl=1 75w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1&amp;w=100&amp;resize=100&amp;ssl=1 100w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1&amp;w=150&amp;resize=150&amp;ssl=1 150w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1&amp;w=240&amp;resize=240&amp;ssl=1 240w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1&amp;w=320&amp;resize=320&amp;ssl=1 320w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1&amp;w=500&amp;resize=500&amp;ssl=1 500w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1&amp;w=640&amp;resize=640&amp;ssl=1 640w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1&amp;w=800&amp;resize=800&amp;ssl=1 800w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1&amp;w=1024&amp;resize=1024&amp;ssl=1 1024w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1&amp;w=1280&amp;resize=1280&amp;ssl=1 1280w, https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1&amp;w=1600&amp;resize=1600&amp;ssl=1 1600w\" class=\"size-full\" fifu-data-src=\"https:\/\/i2.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075219\/red-knot-Calidrus-canutus-.jpg?ssl=1\" alt=\"A red knot (Calidrus canutus) photographed in Toronto. The birds migrate more than 15,000 kilometers (9,000 miles) between Canada and Chile, where their habitat could be threatened by green hydrogen production. Image by Mykola Swarnyk via Wikimedia Commons (CC BY-SA 3.0).\" width=\"1536\" height=\"1024\" title=\"\"><figcaption class=\"caption wp-caption-text\">A red knot (Calidrus canutus) photographed in Toronto. The birds migrate more than 15,000 kilometers (9,000 miles) between Canada and Chile, where their habitat could be threatened by green hydrogen production. Image by Mykola Swarnyk via Wikimedia Commons (CC BY-SA 3.0).<\/figcaption><\/figure>\n<figure class=\"thumbnail wp-caption alignnone\" style=\"width: 2058px\"><img decoding=\"async\" src=\"data:image\/gif;base64,R0lGODlhAQABAIAAAAAAAP\/\/\/ywAAAAAAQABAAACAUwAOw==\" fifu-lazy=\"1\" fifu-data-sizes=\"auto\" fifu-data-srcset=\"https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1&amp;w=75&amp;resize=75&amp;ssl=1 75w, https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1&amp;w=100&amp;resize=100&amp;ssl=1 100w, https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1&amp;w=150&amp;resize=150&amp;ssl=1 150w, https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1&amp;w=240&amp;resize=240&amp;ssl=1 240w, https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1&amp;w=320&amp;resize=320&amp;ssl=1 320w, https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1&amp;w=500&amp;resize=500&amp;ssl=1 500w, https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1&amp;w=640&amp;resize=640&amp;ssl=1 640w, https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1&amp;w=800&amp;resize=800&amp;ssl=1 800w, https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1&amp;w=1024&amp;resize=1024&amp;ssl=1 1024w, https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1&amp;w=1280&amp;resize=1280&amp;ssl=1 1280w, https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1&amp;w=1600&amp;resize=1600&amp;ssl=1 1600w\" class=\"size-full\" fifu-data-src=\"https:\/\/i0.wp.com\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/18075402\/Chloephaga_rubidiceps_248869749.jpg?ssl=1\" alt=\"A Ruddy-headed Goose (Chloephaga rubidiceps). These migratory birds are locally endangered in Chile, where green hydrogen production could further threaten their habitat. Image Tristan Jobin via Wikimedia Commons (CC BY 4.0).\" width=\"2048\" height=\"1365\" title=\"\"><figcaption class=\"caption wp-caption-text\">A Ruddy-headed Goose (Chloephaga rubidiceps). These migratory birds are locally endangered in Chile, where green hydrogen production could further threaten their habitat. Image Tristan Jobin via Wikimedia Commons (CC BY 4.0).<\/figcaption><\/figure>\n<p>In terms of energy, both regions north and south share a common challenge: water needed for production. And not just any water. \u201cYou cannot have impurities in the water. \u2026 You need to distill [water],\u201d Finger said. Chile plans to obtain that water from the ocean, a process energetically demanding and requiring desalination, which reduces the efficiency of the output considerably. \u201cIn areas where you don\u2019t have sufficient freshwater, the green hydrogen production is completely illusional. It will simply not pay out \u2026 because the energy efficiency is so low,\u201d Finger said.<\/p>\n<p>Ecologically, this strategy can also have irreversible impacts on ecosystems if the residuals are not properly managed. \u201cBrine will be generated and released back into the marine ecosystem \u2026 completely changing the salinity of the water and will end up killing the marine life associated with that area,\u201d Norambuena said. Consequently, Chile will end up paying an ecological price for this, experts say. \u201cWe are sacrificing a region to satisfy the energy needs of the developed world,\u201d Norambuena said.<\/p>\n<p>Europe \u2014 especially Germany \u2014 is a major intended recipient of Chile\u2019s green hydrogen. \u201cEurope is located in geographical areas where producing hydrogen purely from renewable sources would mean much higher costs than hydrogen from fossil fuels,\u201d Alejandro Nu\u00f1ez-Jimenez, senior researcher in energy policy innovation at the Swiss Federal Institute of Technology in Z\u00fcrich, told Mongabay.<\/p>\n<p>A study published in the International Journal of Hydrogen Energy, led by Nu\u00f1ez, shows how countries like Germany and the Netherlands are the largest consumers of hydrogen, to fulfil material production processes of the industry sector, while having small renewable energy potential to meet internal demand, compared with countries like Spain, Iceland or Norway. This explains why countries like Germany are incapable of securing energy independence from renewable sources and must instead invest millions of euros to develop green hydrogen plants in Namibia and Chile, diversifying their green hydrogen supply from the Global South in an attempt to achieve climate neutrality pacts at the lowest cost possible.<\/p>\n<p>\u201cI think it\u2019s very unfair that Germany [will] announce that they met their goals, and this was at the expense of a region that was pristine, that was remarkable for its biodiversity,\u201d Espoz said. As Chile pursues turning a green dream into a reality, it is betting blindly in a volatile unconsolidated market with high costs in questionable efficiencies, mortgaging the uniqueness of its biodiversity for the promises of an evolved extractivism that will benefit the necessities of developed countries. Once again, as in colonial times, experts predict this will result in asymmetric consequences and impacts on the territory and its people.<\/p>\n<h2>Citations:<\/h2>\n<p>Zolezzi, J., Garay, A., &amp; Reveco, M. (2010). Large scale hydrogen production from wind energy in the Magallanes area for consumption in the central zone of Chile. Journal of Power Sources, 195(24), 8236-8243. doi:10.1016\/j.jpowsour.2009.12.060<\/p>\n<p>Nu\u00f1ez-Jimenez, A., &amp; De Blasio, N. (2022). Competitive and secure renewable hydrogen markets: Three strategic scenarios for the European Union. International Journal of Hydrogen Energy, 47(84), 35553-35570. doi:10.1016\/j.ijhydene.2022.08.170<\/p>\n<p>Moraga-Contreras, C., Cornejo-Ponce, L., Vilca-Salinas, P., Estupi\u00f1an, E., Zu\u00f1iga, A., Palma-Behnke, R., &amp; Tapia-Caroca, H. (2022). Evolution of solar energy in Chile: Residential opportunities in Arica and Parinacota. Energies, 15(2), 551. doi:10.3390\/en15020551<\/p>\n<p>Gibson, L., Wilman, E. N., &amp; Laurance, W. F. (2017). How Green is \u2018Green\u2019 Energy? Trends in Ecology &amp; Evolution. Retrieved from https:\/\/www.cell.com\/trends\/ecology-evolution\/fulltext\/S0169-5347(17)30238-0<\/p>\n<p>Norambuena, H. V., Labra, F. A., Matus, R., G\u00f3mez, H., Luna-Quevedo, D., &amp; Espoz, C. (2022). Green energy threatens Chile\u2019s Magallanes region. Science, 376(6591), 361-362. doi:10.1126\/science.abo4129<\/p>\n<p><i>This <a href=\"https:\/\/news.mongabay.com\/2025\/08\/green-hydrogen-development-threatens-wildlife-in-chile\/\" target=\"_blank\" rel=\"noopener nofollow external noreferrer\" data-wpel-link=\"external\">article<\/a> by Manuel Fonseca was first published by Mongabay on 18 August 2025. Lead Image: James\u2019s flamingo (Phoenicoparrus jamesi) in the Atacama Desert. Image by G\u00e9rard Cachon via Flickr (CC BY-NC-ND 2.0).<\/i><\/p>\n<h2>Help to protect wildlife<\/h2>\n<p><em>Help to protect wildlife by donating as little as $5 &#8211; it only takes a minute!\u00a0<\/em><\/p>\n<p><script type=\"text\/javascript\" defer=\"\" src=\"https:\/\/donorbox.org\/install-popup-button.js\" id=\"donorbox-popup-button-installer\"> <\/script><a id=\"preview_inline_popup_button\" class=\"dbox-donation-button\" style=\"background: #0dc5dc; color: #ffffff; text-decoration: none; font-family: Verdana, sans-serif; display: flex; gap: 8px; width: fit-content; font-size: 16px; border-radius: 5px; line-height: 24px; padding: 8px 24px;\" href=\"https:\/\/donorbox.org\/focusing-on-wildlife-needs-your-support?default_interval=m&amp;amount=50\" data-reminder-widget-enabled=\"true\" target=\"_blank\" rel=\"noopener nofollow external noreferrer\" data-wpel-link=\"external\"><img decoding=\"async\" src=\"data:image\/gif;base64,R0lGODlhAQABAIAAAAAAAP\/\/\/ywAAAAAAQABAAACAUwAOw==\" fifu-lazy=\"1\" fifu-data-sizes=\"auto\" fifu-data-srcset=\"https:\/\/donorbox.org\/images\/white_logo.svg 75w, https:\/\/donorbox.org\/images\/white_logo.svg 100w, https:\/\/donorbox.org\/images\/white_logo.svg 150w, https:\/\/donorbox.org\/images\/white_logo.svg 240w, https:\/\/donorbox.org\/images\/white_logo.svg 320w, https:\/\/donorbox.org\/images\/white_logo.svg 500w, https:\/\/donorbox.org\/images\/white_logo.svg 640w, https:\/\/donorbox.org\/images\/white_logo.svg 800w, https:\/\/donorbox.org\/images\/white_logo.svg 1024w, https:\/\/donorbox.org\/images\/white_logo.svg 1280w, https:\/\/donorbox.org\/images\/white_logo.svg 1600w\" fifu-data-src=\"https:\/\/donorbox.org\/images\/white_logo.svg\" alt=\"\" title=\"\">Donate<\/a><\/p>\n<p><em>Our <a href=\"https:\/\/focusingonwildlife.com\/news\/wildlife-charities-supported-by-focusing-on-wildlife\/\" target=\"_blank\" rel=\"noopener noreferrer\" data-wpel-link=\"internal\">conservation partners<\/a> spend at least 90 percent of the money raised on actual fieldwork\u00a0rather than administration and fundraising.<\/em><\/p>\n<hr style=\"border-top: 1px solid white;\" \/>\n","protected":false},"excerpt":{"rendered":"<p>Green hydrogen promoters tout it as the clean energy of the future. In 2020, Chile launched its National Green Hydrogen Strategy, looking to position the country as a leader in producing and exporting hydrogen by 2030 while reaching carbon neutrality. \u201cToday we are taking a new step forward in producing clean energy, protecting nature and [&hellip;]<\/p>\n","protected":false},"author":1178,"featured_media":2204860,"comment_status":"open","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"fifu_image_url":"https:\/\/imgs.mongabay.com\/wp-content\/uploads\/sites\/20\/2025\/08\/15171142\/53691573799_41b200264f_6k-1200x800.jpg","fifu_image_alt":"","footnotes":""},"categories":[6985,5],"tags":[12494,12496,7823,2665,12495],"class_list":["post-2188094","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-news","category-wildlife","tag-calidrus-canutus","tag-chloephaga-rubidiceps","tag-migratory-birds","tag-red-knot","tag-ruddy-headed-goose"],"_links":{"self":[{"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/posts\/2188094","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/users\/1178"}],"replies":[{"embeddable":true,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/comments?post=2188094"}],"version-history":[{"count":0,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/posts\/2188094\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/media\/2204860"}],"wp:attachment":[{"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/media?parent=2188094"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/categories?post=2188094"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/tags?post=2188094"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}