Military Technology
Vol 2 Chapter 1212: Large industrial solid state battery
The traditional ultra-large battery pack energy storage power station generally uses lead-carbon batteries and traditional lithium batteries. The discharge depth of lead-carbon batteries is that the energy storage density of the battery is relatively small, and the battery life is relatively short, and it needs to be replaced periodically. Therefore, a certain amount of battery residue will be generated and there will be certain pollution to the natural environment.
The traditional lithium battery is naturally relatively expensive, and there are certain safety hazards, that is, during this high-voltage charging and discharging work stage, it is easy to cause the battery to heat up, which may cause a series of unsafe events, such as battery fire. Accidents such as explosions.
And what Wu Hao and the others will invest in this time is an ultra-large battery energy storage power station using their latest battery technology.
The total battery capacity of its power station has reached wh. Once this super-large battery pack energy storage power station is completed, it will be able to meet the excess power reserves of photovoltaic power plants and wind power plants in the entire J Spring and the surrounding areas, and even have a wealth of money.
The clean electric energy generated by these photovoltaic and wind energy can be transmitted to the grid during the peak period of commercial peaks and valleys, and then to meet the domestic demand for commercial and civilian electricity.
Of course, if they adopt their original new lithium battery technology, even super solid-state battery technology, the investment scale of this power station will be huge.
Naturally, Wu Hao can't do this. What he wants to use in this super large battery pack energy storage power station this time is their newly developed battery technology.
The advantage of this battery technology is not in their most advantageous energy storage density, but in manufacturing cost.
The prosecution it uses is similar to the technology of super solid-state batteries. The newly developed mixed materials are poured into the container in a thick and flowing liquid manner. After the mixed material liquid has solidified, it is packaged to form a solid-state battery.
However, because it is a large battery pack used in power stations and in order to control costs, the hybrid materials used cannot of course be the materials used in super solid-state batteries, but they have developed a cheaper hybrid material.
The material cost price is only less than one-fifth of the super solid-state battery material, or even lower, which can be said to be very cheap.
Moreover, as the manufacturing process of this large-scale industrial solid-state battery gradually matures, the technology is continuously optimized, and the output continues to increase, its manufacturing price will be further reduced.
So in this way, the price converted to a single large industrial solid-state battery is naturally cheaper, and the construction price of this super-large battery energy storage power station is also much cheaper.
In addition to the unexpected low cost, the energy storage density of this large industrial solid-state battery is also very impressive. Although it is not as scary as the super solid-state battery, it is far beyond the average lithium battery.
Its energy storage density level per cubic centimeter has exceeded the energy storage density level of their first generation of new lithium batteries.
It can be said that such large industrial solid-state batteries can basically be installed on low-end electronic digital products.
In addition, it can also be applied to some other industrial products and equipment. For example, the lead-acid batteries used in most vehicles can be replaced, and even the batteries of some electric vehicles can be replaced by such large industrial solid-state batteries.
In this way, not only the battery cost is cheaper, the capacity is larger under the same size, and the weight will be lighter in comparison.
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p; The important thing is that it is safe and environmentally friendly. This kind of battery is very safe and can withstand fire, puncture, high temperature, high pressure, and vibration. Even if the battery is cut in half, and then put on the fire to burn, it will not explode, and it will burn slowly.
Secondly, this large-scale industrial solid-state battery is more environmentally friendly. First of all, it has a much longer service life than ordinary batteries. Traditional lead-acid storage batteries and ordinary lithium batteries may not work for a few years, and the battery must be returned.
The lifespan of such large industrial solid-state batteries is almost three to five times that of ordinary lithium batteries. As a result, the number of batteries to be eliminated is reduced, thereby reducing environmental pollution.
Secondly, the materials used in this large-scale industrial solid-state battery can be recycled and reused. That is to say, in this way, it can have almost zero impact and pollution on the environment, which greatly protects the environment. The environment allows people to use cleaner and cleaner green energy.
Originally, Wu Hao planned to use this large industrial solid-state battery to build a large battery energy storage power station in Anxi not far from their Linghu headquarters.
On the one hand, it provides a safe and stable emergency power reserve for their Linghu headquarters. Ensure that they can still provide abundant and lasting power for their Linghu headquarters even in the event of a large-scale power outage throughout Anxi.
On the other hand, it's not a technology display. Use this large-scale battery energy storage power station to show the outside world their latest large-scale industrial solid-state battery product technology, intelligent power management system, and large-scale power plant control technology and a series of products and technologies that they have core technology. UU Reading www.uukanshu.com
However, this is not too late. This time I came to J Spring. After talking with local leaders, Wu Hao also decided to change his plan. The large-scale battery energy storage power station project in Anxi was suspended, and a super-large battery energy storage power station was directly built here.
This power station is obviously more suitable to be built here, after all, it is closer to the energy source, and it can also play its original advantages and functions.
At the same time, this super-large battery energy storage power station can also bring huge benefits locally, and help them develop advantageous industries in the region and drive local economic development.
Among other things, this ultra-large-scale battery energy storage power station alone can collect and centralize the electricity wasted by all photovoltaic power plants and wind power plants here and around them.
On the one hand, it is possible to avoid the unnecessary waste of electricity. At the same time, the centralized collection of these wasted electricity can bring them very objective benefits that they had lost.
At the same time, the huge annual revenue of this power plant can also bring considerable tax and fee income to the local area and help the construction and development of this place.
Finally, it is beneficial to promote the development of local advantageous industries, especially photovoltaic power generation and wind power generation industries.
It is located in the northwest, belonging to the Hexi Corridor Throat Fort. The annual rainfall is very small and it has abundant sunlight resources throughout the year, which is very suitable for the development of photovoltaic power generation industry.
In addition, it is located at the throat of the fortress in the Hexi Corridor. It is a well-known tuyere with abundant wind resources, so it is also very suitable for the development of wind power industry.
These are all green energy industries encouraged by the state, so they are very promising. What Wu Hao can do is to inject strength into them and let them go further.
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