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Sustainable development and conservation of ocean and coastal resources requires the insights… This scientific research informs debates on issues including climate change, ocean acidification and plastics in the sea. Oceans X Labs, a joint initiative of Conservation X Labs and WWF, is matching big ideas with the brightest minds in search of solutions to the global challenges of oceans conservation. A wealth of ocean data has been and is being collected. Many of the datasets are open, yet very few are being used for resource management, business, or conservation. Most businesses, let alone individuals, do not have the time or ability to translate ocean data into actionable information, yet large industries and millions of people rely on the ocean for their livelihoods and well-being. So long as ocean data remain disconnected from services that people and markets can use, we will be unable to engage the numbers of actors needed to address critical ocean challenges. Data collection is not evenly distributed across the ocean — some regions are in need of data acquisition, a need that could be addressed through the development of demand for data services, which will in turn drive demand for data collection tools. Overall, there is a market failure for meaningful data services, and the time is ripe for market development. Salmon spawn in cold and frozen oceans, and unlike the other 3 variants, can also spawn in rivers. “It’s estimated that 95 per cent of the liveable space on our planet is in the ocean,” said Dr Carole Baldwin, curator of fishes at the Smithsonian’s National Museum of Natural History and lead author of the study. A new ocean cleanup prototype is being deployed on the North Sea today. It is one of the last steps as we prepare to launch the first cleanup system in the Great Pacific Garbage Patch this summer. To understand how we arrived at this point, here is a brief history of the North Sea prototypes, and the reasons why we’re deploying another… Deep-sea mining plans need a better grasp of ocean floor ecosystems “It’s estimated that 95 percent of the livable space on our planet is in the ocean, yet only a fraction of that space has been explored,” said study lead author Carole Baldwin of the NMNH. What can antique corals reveal about the impact of climate change on the ocean? Although no-one has yet started mining the ocean floor, dozens of research expeditions are under way “at an intense pace”, says Michael Lodge, from the International Seabed Authority. “The abyssal plains,” he asserted, “may have the highest biodiversity in the oceans, maybe the highest biodiversity on the planet.” The value of the world’s oceans is set to double by 2030 but we know less about the bottom of the sea than we do about Mars. Although no-one has yet started mining the ocean floor, dozens of research expeditions are under way “at an intense pace”, says Michael Lodge, from the International Seabed Authority. One of the authors, Prof Edward Hill from the UK National Oceanography Centre told BBC News: “The ocean is critical to our economic future. Nine billion people will be looking to the ocean for more food. Yet we know so little of what’s down there. In addition, the Institute fosters the democratization of ocean science by offering media workshops and immersive educational experiences to the public. We actively connect artists and advocates, scientists and students, media-makers and policy-makers in an effort to engage them in collective artistic approaches that address ocean issues. Terrestrial planets will acquire water during their accretion, some of which will be buried in the magma ocean but most of it will go into a steam atmosphere, and when the atmosphere cools it will collapse on to the surface forming an ocean. There will also be outgassing of water from the mantle as the magma solidifies—this will happen even for planets with a low percentage of their mass composed of water, so “super-Earth exoplanets may be expected to commonly produce water oceans within tens to hundreds of millions of years of their last major accretionary impact.”[73] The deep ocean houses an ecosystem that has learned to thrive without sunlight or warmth. Welcome to the abyss. Covering 72 percent of the Earth and supplying half its oxygen, the ocean is our planet’s life support system—and it’s in danger. Watch this video to learn why a healthier ocean means a healthier planet, and find out how you can help. Supercritical fluids, although not liquids, do share various properties with liquids. Underneath the thick atmospheres of the planets Uranus and Neptune, it is expected that these planets are composed of oceans of hot high-density fluid mixtures of water, ammonia and other volatiles.[86] The gaseous outer layers of Jupiter and Saturn transition smoothly into oceans of supercritical hydrogen.[87][88] The atmosphere of Venus is 96.5% carbon dioxide, which is a supercritical fluid at its surface. Please reach out to UNESCO’s IOC via We on the other hand cross the ocean in sixteen hours in a flying machine. If a zone undergoes dramatic changes in temperature with depth, it contains a thermocline. The tropical thermocline is typically deeper than the thermocline at higher latitudes. Polar waters, which receive relatively little solar energy, are not stratified by temperature and generally lack a thermocline because surface water at polar latitudes are nearly as cold as water at greater depths. Below the thermocline, water is very cold, ranging from −1 °C to 3 °C. Because this deep and cold layer contains the bulk of ocean water, the average temperature of the world ocean is 3.9 °C.[citation needed] If a zone undergoes dramatic changes in salinity with depth, it contains a halocline. If a zone undergoes a strong, vertical chemistry gradient with depth, it contains a chemocline. Although no-one has yet started mining the ocean floor, dozens of research expeditions are under way “at an intense pace”, says Michael Lodge, from the International Seabed Authority. Early ancestors of the ocean’s biggest animals once walked on land. Follow their extraordinary journey from shore to sea.  Thank you for considering a donation to Ocean Media Institute. As a creative media hub, OMI fosters the democratization of ocean science by working collaboratively with organizations, academic institutions, aquaria, and museums across the globe to produce and openly distribute innovative visual stories to address ocean issues. You can be assured that any financial contribution you make will go directly to expanding our shared vision for ocean conservation. Innovation and technology are essential components in our effort to restore the health of the ocean. SOA’s Ocean Solutions Accelerator encourages entrepreneurship and advances the initiatives of ocean-focused startups with revenue-generating technology solutions. Urge NOAA to strengthen its plan to reduce industrial ocean noise. We are a nonprofit systems change incubator. We work with industry players, technologists, and NGOs to create business solutions to ocean challenges. Professor Richard Twitchett explains what a more acidic ocean could mean for the future of marine life. Our mission is to explore our global ocean, inspiring and educating people throughout the world to act responsibly for its protection, documenting the critical connection between humanity and nature, and celebrating the ocean’s vital importance to the survival of all life on our planet. This challenge is important because there is a wealth of ocean data being collected, but so little of it being used. As long as ocean data remains disconnected, we are unable to address the critical challenges our ocean faces. Sustainable development and conservation of ocean and coastal resources requires the insights… Endangered Waves can empower and incentivize surfers (there are 24 million worldwide) to monitor the health of their coastlines through crowdsourced data. Surfers can use this app to create crowdsourced data to identify and then reduce hazards in their local surf breaks. In the US, tourism and recreation comprise 72% of employment in the ocean economy and 31% of its gross value. 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