Scientists launched a cow at the depths of the China Sea. They discovered eight unexpected visitors to the feast

The ocean is full of surprises. Sometimes, as happened several years ago in Canada, the enigmas appear floating in the form of human feet adrift. However, in others, most, you have to go down to the depths to try to solve the mysteries. That was precisely what a group of researchers proposed. It all started by throwing the body of a cow. A cow at 1,600 meters. In one of the most unusual marine experiments carried out, a group of scientists He threw a dead cow at 1,629 meters deep in a continental slope of the South China Sea, in front of the Chinese island of Hainan, with the aim of simulating the sinking of a whale and studying the Behavior of scavengers of deep water. What they found surprised even the most experienced researchers: Eight sleepy sharks Pacific (Somniosus pacificus) They appeared in the place, marking the first documented observation of this species in the region. The finding not only unexpectedly expands the distribution map of this elusive shark, but also provides valuable information about its behavior patterns, food hierarchies, physiological adaptations and its possible geographical expansion. An unexpected visitor. Although the Pacific Sleeping Shark is a species with a wide distribution in the north of the Pacific Ocean (from Japan to Alaska and to the south to Baj real extension of its habitatits possible displacement due to climate change or even the existence of a stable population and not yet registered in that region. Food label. The recorded images By underwater cameras they not only confirmed their presence, but revealed unusual behavior for large predators: a kind of Shift systemin which sharks aligned to feed the body, giving the place to other individuals who approached from behind. This type of “Food label”rarely observed in predatory species, suggests that the order in food could be determined by the competitive intensity of each individual, instead of a chaotic struggle for resources, which would indicate a more complex level of social organization that was suspected in these animals. New clues. He study He also documented variations in behavior according to body size. The specimens that exceeded 2.7 meters in length were much more aggressive and direct In the attack on the carrion, while the smallest sharks opted for cautious movements, surrounding the body in circles before approaching. The employer suggests that even in an environment where food is scarce and random opportunities, sleepy sharks could have developed a coexistence strategy with hierarchical ranges that minimize direct conflict. One More Thing. Another remarkable finding was a behavior of Ocular retraction observed during feeding. Since this species lacks Iglestop membrane (The protective “third tab” that other vertebrates such as cats or certain reptiles have), researchers believe that this retraction reflects a Evolutionary adaptation To protect the eyes during bites or struggles, which brings a new data on the defensive physiology of these sharks in their natural environment. The unknown. And more, since the recordings also showed other revealing aspects. Namely: several sharks carried visible parasites In his eyes, identified Like copepodsalthough it was not possible to precisely classify the species. This detail reinforces biological parallelism among the sleeping sharks of the Pacific and their best -known relatives, the Greenland sharkswhich also usually host parasites in their visual organs. Apart from sharks, the experiment attracted a surprising variety of abyssal fauna, such as Caracol fish and numerous amphipodsall attracted by the source of decomposition organic matter. These records confirm that the deep areas of the South China Sea not only house a biodiversity still little documented, but could be more productive of what was believed so far, against the idea that tropical depths are biologically poorer than their polar counterparts. The great unknown. In the background, the presence of these sharks raises a crucial issue: is it a recent expansion of its rank due to global warming, or has it always been part of its habitat and simply had never been observed? It is known that the species has occasionally appeared in such remote regions like Palaos or the Solomon Islandswhich suggests that there could be more southern populations than the scientific literature indicates. However, the “frequent appearance” in the southwest of the China Sea, According to the team itself Researcher led by Han Tian, rather suggests a structural lack of data in a little explored region rather than a recent change in the distribution pattern. In that sense, the experiment with the body of Vaca has not only contributed a specific observation, but has opened a way to review key concepts on the marine biogeography of abyssal species. Know the depths. He find It underlines the usefulness of simple experiments, but carefully designed to obtain data on remote environments, inaccessible already often little understood. The idea of simulating a whale sinking with a cow was not only effective, but proved to be a powerful Ecological magnet able to reveal complex biological interactions. In a context where Climate change and Human activity They are altering ecosystems even at great depth, this type of research is crucial to understand the invisible functioning of the deep ocean. The appearance of eight sleeping sharks where no one was waiting for them, behaving with order, measured aggressiveness and sophisticated adaptive mechanisms, is one more proof that marine depths They keep secrets that we are barely beginning to understand. Image | Ocean-Lond-Atmosphere Research (2025) In Xataka | A Canadian coast had been receiving human feet for years. Science has resolved mystery In Xataka | Carnivorous crustaceans, devouring worms and missing bodies: the scientific mystery of the caimanes at the bottom of the sea

An island in Japan has revolutionized its vehicles. They have turned cow droppings into hydrogen fuel

If we talk about hydrogen and mobility, we would possibly have to Add to Japan In the equation. Few companies have tried to make it a real alternative to the electric car like the Japanese Toyota, although it is true that in recent times the idea was Much more than in doubt. An island has shown that technology is still there. Of course, with the invaluable help of tons of cows excrement. The solution in Hokkaido. On the island of HokkaidoJapan, a key region for country production of the countryan innovative project seeks to convert the Hydrogen cow manurethat clean fuel with the potential of feed vehicles, homes and agricultural machinery. With More than one million cows Currently generating 20 million tons of manure per year, this source of waste represents an environmental problem due to its methane emissions and its impact on the Water quality. He Shikaoi Hydrogen Farmlaunched in 2015 by the Ministry of Environment of Japan, addresses this challenge by transforming waste into a sustainable energy resource. As? The manure and urine of cows are Farm collected local and sent to an anaerobic digester, where bacteria break down organic matter to produce biogas and liquid fertilizer. Then, biogas is purified in methane, which later becomes, hydrogen. Sustainable mobility. The plant has a production capacity of 70 cubic meters of hydrogenenough to supply up to 28 vehicles with hydrogen cells per day. In addition to cars, the fuel is currently used In tractors and forklift of the island, whose electrification with batteries is more complex. It is also stored in Canisters that are transported to provide energy to a sturgence fish and Obihiro Zoo. Challenges Several, of course. The main one is logistics, since it must be stored in high pressure tanks, which does so susceptible to leaks and degradation of materials, in addition to requiring specialized infrastructure for transport and distribution. Your acryogenic lmacement at -253 ° C is energetically expensive, which hinders its scalability. In spite of this, the project continues to advance, mainly with subsidies that equate the price of hydrogen with that of gasoline, to promote its adoption in cities such as Sapporo and Muroran. In fact and as we said at the beginning, Japan leads the hydrogen industryalthough the electric cars still They are more profitable than those driven by this gas. Hydrogen from waste. The truth is that the concept of producing hydrogen from waste is not limited to Japan. Other initiatives in the world explore alternative sources such as Pork manurepoultry and even Coconut peels. For example, in Thailand Toyota investigates hydrogen production From chicken excrement. In the United States the University of Illinois developed A METHOD TO MANUFACTURE HYDROGEN With manure, sugarcane residues and corn cobs, significantly reducing the energy consumption of the process. And in Fukuoka, Japan, a wastewater treatment plant produces hydrogen From human wastesupplying a fleet of garbage trucks without emission. All initiatives show that bioenergy from waste can play a key role in the global energy transition. However, the lack of infrastructure and high costs remain barriers for large -scale expansion. Uncertain future. He Project in Shikaoi It is an innovative example of circular economy, where waste becomes energy, reducing emissions and promoting sustainability. However, the viability of hydrogen as an alternative to fossil fuels will depend on technological advances that reduce their cost of production, storage and distribution. Although manure and cow droppings will hardly be the main source of hydrogen in the future, especially worldwide, initiatives such as these can lay the foundations for a new energy industry based on waste recycling, with potential applications in transport, agriculture and clean energy generation globally. Image | Japanexpeter, Nara In Xataka | Remote solar self -consumption: When you can’t install panels on your roof, you ask for remote In Xataka | Solar tiles: What are they, what is their price and what they offer in front of conventional solar panels

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