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  • What factors are affecting the side reactions of lithium deposition?

    What factors are affecting the side reactions of lithium deposition?

    Sep , 17 2021
    When charging lithium ion battery, Lithium precipitation not only reduces the performance of the battery and greatly shortens the cycle life, but also limits the fast charging capacity of the battery, and may cause disastrous consequences such as combustion and explosion. In a series of articles we will discuss about the problems from the macro scale of lithium-ion battery, working conditions, gra...
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  • Lithium battery cycle data analysis with curves and equations

    Lithium battery cycle data analysis with curves and equations

    Oct , 23 2021
    Generally, cycle life testing will generate a lot of data, which can obtain a lot of information. What analysis and processing can we do with these cycle data? The following summarizes some of the data processing. 1. Charge and discharge curve The charge-discharge curve refers to the curve of the battery's voltage, current, capacity, etc. changing over time during the charging and discharging proc...
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  • Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-2

    Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-2

    Nov , 01 2021
    During the long-cycle cycle, the reversible capacity of the lithium-ion battery will continue to decrease due to the reduction of active materials, the precipitation of metal lithium, the continuous consumption of electrolyte, the increase of internal resistance and thermal runaway. Among them, the lithium evolution phenomenon of the graphite negative electrode is the most important cause of batte...
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  • Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-3

    Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-3

    Nov , 03 2021
    During the long-cycle cycle, the reversible capacity of the lithium-ion battery will continue to decrease due to the reduction of active materials, the precipitation of metal lithium, the continuous consumption of electrolyte, the increase of internal resistance and thermal runaway. Among them, the lithium evolution phenomenon of the graphite negative electrode is the most important cause of batte...
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  • Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-4

    Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-4

    Nov , 03 2021
    During the long-cycle cycle, the reversible capacity of the lithium-ion battery will continue to decrease due to the reduction of active materials, the precipitation of metal lithium, the continuous consumption of electrolyte, the increase of internal resistance and thermal runaway. Among them, the lithium evolution phenomenon of the graphite negative electrode is the most important cause of batte...
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  • How to implement battery monitoring in a deployable product?

    How to implement battery monitoring in a deployable product?

    Nov , 27 2021
    Standalone ohmic battery monitoring systems designed for data center application are not suited for a genset environment. Although ohmic monitors work, they are expensive (estimated at $2,000 for a 24-volt system), time-consuming to install, and require trained personnel to interpret their data output. To achieve widespread adoption in the genset market any battery monitoring technology will need ...
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  • NiCd versus Lead Acid Starter Batteries for Generator Systems

    NiCd versus Lead Acid Starter Batteries for Generator Systems

    Dec , 10 2021
    Apart from a few special applications that use mechanical cranking, such as spring starters, the greatest percentage of generator set systems utilize 12-volt or 24-volt starter motors. For prime power and standby applications, the two most commonly used battery types are lead acid or nickel cadmium (NiCd). This article discusses the differences between NiCd and Lead Acid starter batteries for gene...
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  • What is Thermal runaway and what is its impact on cell chemistry?

    What is Thermal runaway and what is its impact on cell chemistry?

    Jan , 06 2022
    One of the main causes of danger for lithium-ion cells is related to the phenomenon of thermal runaway. This is a healing reaction of the battery in use, caused by the nature of the materials used in the chemistry of the battery. Thermal runaway is mainly caused by the solicitation of batteries under specific conditions, such as overload under adverse climatic conditions. The result of a thermal r...
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  • Three Big Reasons You Should Pair a Home Battery with Solar

    Three Big Reasons You Should Pair a Home Battery with Solar

    Jan , 10 2022
    As residential solar installations increase across the country, homeowners are realizing that investing in solar alone won’t benefit them in the long run. The reason is because most solar energy is produced between 9 a.m. and 3 p.m. while (pre COVID-19) you’re probably at work or school. When you return home and start using your electronics and appliances, it’s likely that there isn't enough solar...
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  • 3 Reasons to Choose Energy Storage over a Generator during Fire & Hurricane Season: Reason-1

    3 Reasons to Choose Energy Storage over a Generator during Fire & Hurricane Season: Reason-1

    Jan , 10 2022
    Past 2 years will stand out in the history books as years that forced us to radically rethink (and adjust) the status quo. As we go into summer, the stability of our electricity grid will be put to the test when many of us are spending most of our time at home. Fire season will begin shortly in different places, with utilities sending out messages about public safety power shutoffs. On the East Co...
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  • 4 Ways Lithium Batteries Power Up Solar

    4 Ways Lithium Batteries Power Up Solar

    Jan , 17 2022
    Investing in solar is smart; pairing solar with a lithium battery storage unit is even smarter. While lithium batteries tend to be a higher initial investment than lead acid batteries, their superior performance and longevity makes them an ideal choice for off-grid and grid-tie applications. When selecting a battery to complement your solar system, understanding the advantages that lithium batteri...
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  • What are the major factors needs to be considered in vehicle application Lithium battery?

    What are the major factors needs to be considered in vehicle application Lithium battery?

    Feb , 12 2022
    Lithium batteries are lightweight and provide higher energy density than lead-acid or nickel–metal hydride (NiMH) batteries, creating a demand for them in electric vehicles (EV), energy storage, and consumer electronics. Compared to NiMH batteries, lithium batteries have a 50 percent greater capacity in watt-hours per kilogram (w-h/kg). The EV industry is demanding higher-efficiency batt...
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