Rebirth of the Evil Life

Chapter 6511 Ark Reactor

?    Cold fusion is possible!

This was announced by scientists from the United States, Japan and Germany at the annual meeting of the American Chemical Society held on March 23, 2009. They have proved in the laboratory that cold fusion is possible.

However, the experimental results they have obtained so far have certain limitations.

For example, researchers at the Naval Space and Marine Combat Force System Command Center in San Diego, USA, said that the problem is that the measuring instruments cannot detect such a small number of neutrons. In order to sense such a small mass, the United States uses a special plastic detector39. The detector is composed of an alloy of nickel and gold, which is inserted into a mixture of palladium chloride and tritium n-doped. This detector can capture and track high-energy neutrons. The researchers said that the plastic detector captured many tiny pits very close to each other, which is solid evidence of the existence of neutrons and proves that fusion reactions can occur at room temperature.

Other researchers at the meeting also presented evidence of cold fusion: Anthony Ranillo of the Italian National Institute of Nuclear Physics said that he found a lot of heat and nitrogen. Researchers in Hokkaido, Japan said that they also found evidence of a large amount of heat and gamma rays released. These researchers are conducting further explorations, hoping to better understand the cold fusion process and develop related commercial applications as soon as possible.

The difference between this conference and the discovery of the two scientists in 1989 is that the test results they published can be replicated by other scientists. It's just that the measurement is more difficult. But it is proven to be feasible.

As for the raw material of cold nuclear fusion, it is heavy water!

Heavy water is a compound composed of deuterium and oxygen. It is similar to ordinary water in appearance, but the density is slightly higher, at 11079 grams per cubic centimeter, the freezing point is slightly higher, at 382, ​​and the boiling point is 10142. The rate of participating in chemical reactions is slower than that of ordinary water. A molecule of heavy water is composed of two heavy hydrogen atoms and one oxygen atom, with a molecular formula of 2 and a relative molecular mass of 20.

Heavy water looks very similar to ordinary water. It is an odorless liquid and has the same chemical properties, but some physical properties are different. The density of ordinary water is 1 gram centimeter 3, while the density of heavy water is 1056 grams centimeter 3. The boiling point of ordinary water is 100, and the boiling point of heavy water is 10142. The freezing point of ordinary water is 0, and the freezing point of heavy water is 38. In addition, ordinary water can nourish life and cultivate all things, while heavy water cannot make seeds germinate. If people and animals drink heavy water, it will also cause death.

Of course, ice made from heavy water will sink in water. The manufacturing cost of heavy water is $1,000 per kilogram, but it can produce about 2.9 million kilograms of energy produced by oil. And it will not release any greenhouse gases and is harmless to nature. And the extraction is extremely simple. All countries can extract it. It's just that heavy water can only be used in nuclear reactors. And only in cold fusion can such a large amount of energy be exploded.

As for the research team under Sumitomo Ning, it is currently trapped in the controllability of the energy exploded by the neutron impact of cold nuclear fusion. In other words, now Japan, the United States and other countries can actually achieve cold nuclear fusion, but they cannot make their energy explosion completely controllable. This is not true cold fusion.

The key to cold fusion is not only clean, efficient, and cheap, but the most important point is controllability. It is not fully controllable at present. Once it explodes, it will explode instantly instead of slowly releasing energy at rated power.

Another point is miniaturization.

The biggest difference between thermonuclear fusion and cold fusion is size. The key to thermonuclear fusion is the tokamak, a toroidal container that uses magnetic confinement to achieve controlled nuclear fusion. Its name comes from toroid, vacuum chamber, magnet, and coil. It was originally invented by Azimovich and others at the Kurchatov Institute in Moscow, Soviet Union in the 1950s. The center of the tokamak is a toroidal vacuum chamber with a coil wrapped around it. When the power is turned on, a huge spiral magnetic field will be generated inside the tokamak, heating the plasma in it to a very high temperature to achieve the purpose of nuclear fusion.

As for cold fusion, it can be completely reduced to the size of a glass bottle. This is the meaning of cold fusion!

These two aspects are actually the problems of all scientists around the world.

"I've read your test data. Your energy reaction cannot reach the critical point at room temperature. You just need to expand the energy acceleration effect." Nuwa spent only 13 seconds to read all the research reports from Japan. This stunned the Japanese.

"But this requires a large accelerator, which is not cold nuclear fusion." A scientist retorted.

"It's very simple. You try to use laser tail field acceleration technology to make charged particles reach the energy level. According to your data calculation results, we only need to maximize this energy to achieve cold nuclear fusion at room temperature! And this result, according to my internal simulation, has a 90% feasibility!" Nuwa said.

Laser tail field acceleration technology! Many Japanese researchers' eyes lit up. This seems feasible. You can try it!

"As for miniaturization, I think we can refer to the cold nuclear fusion prototype Ark reactor in the American Hollywood blockbuster Iron Man." Nuwa said.

Ark reactor? Many Japanese researchers were confused. That's a Hollywood blockbuster. Is this feasible?

The Ark reactor is a miniature stepless controllable cold fusion nuclear reactor. The peak power of this technology is 300 million joules, which can be continuously output for about 15 minutes. The rated power is 5 million joules, which can be continuously output for about 200 million years. The protagonists in movies and comics use cold fusion reactors to realize the energy supply of mechas, and provide flight power and photon weapons through the release of photons in fusion reactions.

"Why not? Although it is just a Hollywood blockbuster and a fantasy, it is not without borrowing. Moreover, real cold nuclear fusion can be completely miniaturized." Nuwa looked serious.

Is this really feasible? Japanese researchers were amazed.

"In this way, you can use laser tail field acceleration technology to realize the quantization of energy, and I will analyze the feasibility of the Ark reactor!" Nuwa ordered.

Many researchers nodded instinctively. Under Nuwa's strong personal ability, the laboratory began to be dominated by Nuwa.

To be continued.

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