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Looking at the applicable environment, if the ambient temperature is high, generally speaking, based on 25 degrees, for every 10 degrees increase, the lifespan is reduced by half;
There are also charging conditions. If there is frequent undercharging and less charging than discharging, it will quickly "fail". The charging amount in a single cycle should be more than 1.2 times the discharging amount
There is also discharge depth, for example, if only 30% of the actual battery capacity is discharged each time, it can be cycled more than 1500 times, which is about 4 years. However, if it is always at 80% each time, it will only be more than a year, and if it is 100%, it will be about 1 year.
At the same time, do not believe that the unconditional commitment of some manufacturers to the service life is unscientific. The actual lifespan is this algorithm
Reasons and manifestations of scrapping lead-acid batteries:
There are factors related to the intrinsic quality of batteries, as well as factors related to the usage methods and occasions of batteries, but over 80% of them are still due to the electrochemical reaction principle of lead-acid batteries themselves. A battery is a power source that can undergo reversible charging and discharging reactions. After discharge, the substances in the battery react and transform into a crystal called lead sulfate. After charging, lead sulfate is then converted into lead and sulfuric acid, resulting in a reversible reaction. However, when the reaction conditions are not complete and sufficient, lead sulfate cannot be completely converted, resulting in the accumulation of lead sulfate and reducing the amount of substances involved in the reaction. This is reflected in the decreasing battery capacity, ultimately leading to the loss of basic functions and becoming waste. This phenomenon in lead-acid batteries is called "vulcanization" (also known as aging).
During the charging and discharging process of lead-acid batteries, lead sulfate crystals gradually form on the electrode plate. This phenomenon leads to battery aging, which is manifested as: difficulty in charging and discharging the battery; Reduced battery capacity; Furthermore, it promotes the corrosion of the electrode plate and reduces the service life of the battery. The lead-acid battery extension maintenance device solves the above problems with ease. It can completely restore expired batteries caused by lead sulfate crystal formation. It not only brings huge economic benefits to users, but also saves a lot of natural resources and energy for the country, and reduces the serious environmental impact of waste batteries
Pollution. The widespread application of this technology will bring enormous benefits to the economy, environment, and society.
Colloidal battery editor
Colloidal lead-acid batteries are an improvement on ordinary lead-acid batteries with liquid electrolytes. Colloidal electrolytes are used to replace sulfuric acid electrolytes, which improves safety, storage capacity, discharge performance, and service life compared to ordinary batteries.
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