3. Lithium-carbon dioxide battery can be fully charged
The energy density of the lithium-carbon dioxide battery is more than 7 times the lithium ion battery, but it is very difficult to develop a version that can repeatedly charge it. This is because during charging, there will be excessive carbon in the battery catalyst.
In September, the Scientist of the Chicago Branch of Illinois reported the solution to the carbon problem, which proves the first lithium-carbon dioxide battery that they are called fully charged.
The battery utilizes a “nanoform” in which molybdenum disulfide in the cathode and a mixed electrolyte composed of ionic liquid and dimethyl sulfoxide, which prevents carbon from being accumulated on the catalyst, and allows the battery at 500 Charging in a continuous cycle.
4. Electrical grid-level energy storage with molten silicon core
Renewable energy such as wind energy and solar energy can produce a large amount of power, but it stores this electric power to prepare from time to time, which is required for the uncertainty of weather. As early as in April, Australian Startup CLIMATE CHANGE TECHNOLOGIES (CCT) launched a more effective solution that it believes than standard lithium-ion power grid storage schemes.
Wuxi Huizhong is a company specializing in the production of OPZS tube-type batteries. The OPZS model is complete, the price is low, the quality is good, the after-sales service is timely, and the delivery is timely.
Its thermal energy equipment (TED) is called the world’s first workable thermal cell. It is a modular battery that can feed from any source and use it to melt silicon in the insulating chamber. The heat machine can then extract this energy as needed for use, each TED box can store 1.2 MWH, and each unit can be connected to fabricate a size that may be unrestricted.
According to CCT, a large advantage of the system is that molten silicon does not degrade as lithium. In the test, the company stated that its battery did not show signs of degenerate in 3,000 test cycles, and expect them to use 20 years or longer. In addition to the long service life, it is said that the energy of the TED battery can be stored 6 times the lithium ion battery, and the price is approximately 60% to 80%.
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