Hydrocarnocride activation fuel cell

xiaoxiao2021-03-06  21

Pleasant activated fuel cell research report

The fuel cell is a chemical battery, high working efficiency, no flame, environmental protection, etc., but cannot be popularized from the civilian field due to the constraints of activation materials. Poor uranium is to extract U-235 remaining waste in uranium mines, and many countries have to deal with huge money to deal with nuclear waste. The depleted uranium activated fuel cell is using nuclear waste-leo uranium to do the fuel cell of activation material, that is, the nuclear waste is rationalized, and the fuel cell has generalized.

The principle of modern fuel cells is to make the fuel ionization (activation) reacting electric charge, generally using high temperature activation, such as millions of kilowatt fuel cells used in somewhere of the US Navy, using 600 degrees Celsius activation. However, the gas ionization requires high, and ionization is not sufficient to 1% for H2, 1000 degrees Celsius, resulting in excessive fuel cell volume and low efficiency (heating). It is difficult to enter the civilian field.

The cannate activation fuel cell structure is the same as that of the general fuel cell, but the electrode is adopted by a porous graphite electrode, and a small amount of oily uranium is incorporated, and a layer of platinum is deposited in the surface of the cathode surface. Palladium is deposited. Platinum and palladium are materials that absorb oxygen, hydrogen, enabling more fuel density near the activation material to more catalytic efficiency. U-238 performs decay to release α rays, and α rays produce tens of thousands of ions per topward in the air, so that the fuel can be ionized to participate in the reaction.

The above improvements are sufficient to enable the fuel cell to reach the size of the vehicle battery, so it can be installed on a variety of devices. Due to fewer depleted uranium in the battery, the metal film protective α-ray is used, and the material film protects neutron rays. Therefore, it is possible to safely use a depleted oil to activate a fuel cell without considering the harm of radiation.

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