LiFePO4 Battery

Solid state lithium battery VS traditional lithium battery

Published by BSLBATTOct 29,2018

Solid state lithium battery VS traditional lithium battery

The solid lithium battery refers to a lithium secondary battery in which the electrolyte portion of the battery is made of a solid material. Solid-state batteries differ from conventional lithium-ion batteries in that solid-state batteries replace the electrolytes, electrolyte salts, and separators of conventional lithium-ion batteries with solid electrolytes. Safety, energy density and cycle life have always been three major requirements for power batteries. Because solid-state batteries have the potential to outperform traditional lithium-ion batteries in all three respects, they are also considered the next generation of battery technology: Advantages of solid-state battery: high safety, no risk of spontaneous combustion or explosion. Conventional lithium-ion batteries using organic electrolytes tend to cause heat generation in the electrolyte under abnormal conditions such as overcharging and internal short-circuit, and there is a danger of spontaneous combustion or even exp...

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Published by BSLBATTOct 25,2018

Growing Popularity Of Lithium-Ion Battery Packs

Why are Lithium-Ion battery packs popular? Of all the metals, lithium is the lightest. It has the highest electrochemical potential and provides the highest energy density per weight. G.N. Lewis et al pioneered the idea of Li-Ion battery in 1912. However, it was only in the early 1970’s, that the world got its first non-rechargeable lithium batteries for commercial use.   Qualities of Lithium-Ion Batteries Due to the fact that it has the highest energy density, the Li-Ion battery has an edge over the normal nickel cadmium battery. Due to improvements incorporated in the active compounds of the electrode, the Li-Ion battery has an electric power density which is almost three times more than that of the nickel cadmium battery. Besides this, the load capacity of lithium battery is also appreciable. It has a flat discharge curve which gives you the chance to use the saved power in a voltage range of your choice. One of the noteworthy qualities of Lithium-Ion battery pack...

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Published by BSLBATTOct 22,2018

Six Tips For Extending The Life Of Lithium-Based Batteries

Lithium batteries are advancing rapidly, and they provide longer use times than nickel and lead based batteries. Their use has been adopted as the standard for most of the spy cameras, and other electronics on the market today. Here are six tips to extend the life of your lithium-ion based electronic device. Here are six things you can do to increase the life of your lithium-based battery. 1. Avoid constant full discharges: Lithium batteries prefer a partial discharge, over a full discharge. You should not frequently fully discharge the batteries, rather charge the battery more often, if possible, daily to insure a long life. 2. Recalibrate: We suggest a full discharge every 30 charges for batteries with fuel gauges, like laptops and mobile phones to recalibrate the battery. Just let it run until it stops, then recharge. 3. Laptop computer uses: If you keep the battery in your laptop for everyday use, and power it from the wall socket, unplug the power every few days and let it r...

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Published by BSLBATTOct 18,2018

The discovery of a submarine lithium battery is actually not that divine

According to Japanese media reports, on October 4th, local time, the Japanese dragon-class conventional submarine No. 11 “Phoenix Dragon” was launched. The boat used lithium batteries for the first time. It was called “revolutionary breakthrough” by submarine batteries. As we all know, the battery is the main power source of the conventional submarine, and it is also the backup power supply and emergency power supply for the nuclear submarine. Therefore, the performance of the battery directly determines the submarine performance and combat capability. If the battery performance is not good, the power supply is insufficient, the submarine will not run fast, the mobility is greatly limited, the charging time is longer, and the risk of being exposed is greatly increased. For this reason, the development and application of submarine batteries have been highly valued by the world’s submarine manufacturers. The lead-acid battery has mature technology, hi...

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Published by BSLBATTOct 17,2018

How will the European Union launch a battery offensive to catch up with China

EU Energy Commissioner Sevkovic said recently that the European Union plans to provide tens of billions of dollars in battery research and companies building large-scale battery factories in order to catch European battery production to compete with Chinese and American competitors. “The European Union launched a battery offensive!” Germany’s “Economics” magazine reported on the 15th that EU energy commissioner Sevkovic said recently that the EU plans to provide tens of billions of subsidies for battery research and the construction of large battery factories in order to make European batteries Production catches up with competitors in China and the United States. During the Paris Motor Show earlier this month, Sevkovic said to the outside world, “The future will be the era of electrification, Europe must keep up with the development of battery technology.” Sevkovic said that the future European battery market will It reached 250 billion...

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Published by BSLBATTOct 16,2018

New additives improve low temperature performance of lithium ion batteries

Since the conventional electrolyte partially solidifies at temperatures below 0 ° C, the capacity of the lithium ion battery is drastically reduced when it is operated under low temperature conditions, thus limiting its application under extreme conditions. In order to improve the low temperature performance of lithium ion batteries, a lot of research work has focused on improving the conductivity of electrolytes. Figure 1 is a process of synthesizing the additive. Mainly, the ionic liquid molecular chain is grafted onto the polymethyl methacrylate (PMMA) nanosphere by reaction to form a brush-like main structure, and then the structure is dispersed in ethyl acetate (MA). And a new electrolyte system is formed in a mixed solvent of propylene carbonate (PC). As shown in Fig. 2a, the conductivity of the electrolyte decreases as the temperature decreases, and the conductivity of the electrolyte containing ethyl acetate is much higher than that of the electrolyte using only propylene...

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Published by BSLBATTOct 12,2018

Advantages and Disadvantages of the Lithium-Ion Battery

The lithium-ion battery is one of the most popular choices for consumer and portable electronics. The high performance and fast recharge cycle also makes is a great choice for automobile, aerospace and military applications. Here are a few of the basic advantages of using the lithium-ion battery: ★ Compact size The lithium-ion battery is smaller and lighter than most other types of rechargeable batteries in the market. The compact size makes is a popular choice for a wide range of electronic gadgets. ★ High-energy density The high energy density of this type of battery makes it a very favorable choice compared to the alternatives. This means the battery has the ability to provide a lot of power without being large in size. The high energy is great for power-hungry gadgets like tablets, smartphones and laptops. ★ Low self-discharge The lithium-ion battery has low self-discharge rate, which is estimated at about 1.5% per month. The slow rate of discharge means the battery has a ...

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Published by BSLBATTSep 26,2018

What are the factors that affect the low temperature performance of lithium ion batteries?

Lithium-ion batteries have the advantages of high energy density, low self-discharge, high output voltage, long cycle life and no memory effect, occupying most markets in the field of consumer electronics represented by mobile phones, notebook computers, digital cameras, etc. Share. At present, the application of lithium-ion batteries in the fields of power tools and electric bicycles has also shown a geometric progression. With the rapid development of lithium-ion batteries in the field of electric vehicles and military industry, the low-temperature performance can not adapt to the special low-temperature weather or extreme environmental defects. Under low temperature conditions, the effective discharge capacity and effective discharge energy of lithium-ion batteries will be significantly reduced, and at the same time it is almost impossible to charge in the environment below -10 °C, which seriously restricts the application of lithium-ion batteries. Factors affecting the low...

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Published by BSLBATTSep 04,2018

EUROBAT calls for all battery technologies to be represented in the EU Battery Alliance, ensuring policy coherence and competitiveness of the sector

(BRUSSELS, 18 June 2018) – EUROBAT, the European association representing manufacturers of automotive and industrial batteries, organized its 2018 Forum in Brussels on 15 June. In his welcome address of the Forum, Johann-Friedrich Dempwolff, President of EUROBAT and Vice-President Industry & Government Relations EMEA at Johnson Controls Power Solutions, emphasized the need to boost the competitiveness of the entire industry to lead towards the decarbonisation of several sectors of the economy, in the framework of the Battery Alliance launched by the Vice-President of the European Commission Maroš Šefčovič. All battery technologies have the potential to contribute to the decarbonisation of the European economy. He also underlined the necessity of having coherent legislation on batteries to improve the competitiveness of the EU battery industry, avoiding bans of specific technologies.   The sessions of the Forum addressed three topics in detail: (1) CO2 emissions from road t...

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Published by BSLBATTSep 03,2018

LiFePO4 And The Environment

One of the most common complaints about the accelerating push for mass electrification of transport and industry is that there’s no means to handle the tremendous volume of waste batteries that will be generated. But what if there was a technology that could readily recycle all that waste without generating the pollution in the process? What if someone could economically recover not only the high-value metals like nickel and cobalt but the lower-value components too? Did you know that LiFePO4 batteries use no rare earth or toxic metals? They utilize commonly available materials including copper, iron, and graphite. In honor of Earth Day, in this week’s blog, we’re sharing a few reasons why lithium iron phosphate batteries are better for the environment. LiFePO4 batteries have many features that make them superior to other battery technologies. They’re lightweight and versatile. They have a long lifespan and a fast recharge rate. They can withstand cold, heat, collision, and misha...

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Published by BSLBATTAug 29,2018

11 Lithium-Ion Battery Makers That Don’t Need Cobalt

★ Demand for cobalt is affecting battery markets, but luckily not all lithium-ion batteries require the metal. ★ If you’ve been paying attention to the debate about lithium-ion battery materials, then you will know there is a price problem with lithium, but the real market danger is with cobalt. ★ While experts doubt that cobalt scarcity will halt the growth of the lithium-ion battery business, demand for the metal is affecting battery markets and increasing the Democratic Republic of the Congo’s stranglehold on supplies. ★ To the uninitiated, this might seem like a major threat to the lithium-ion energy storage business. But it’s not, for the simple reason that not all lithium-ion batteries need cobalt. ★ Lithium iron phosphate (LFP), lithium manganese oxide (LMO) and lithium titanate (LTO) batteries are cobalt-free. ★ The catch is that their energy density is lower than that of lithium nickel manganese cobalt oxide (NMC) or lithium nickel cobalt aluminum oxide (NCA) chemistries. ...

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Published by BSLBATTAug 28,2018

Lithium-Ion Storage Installs Could Grow 55% Every Year Through 2022

Good luck finding that kind of growth anywhere else in the power sector. ★ There’s a broad consensus that the world will deploy more grid storage in the coming years than it does today, but few people agree on exactly how much more. ★ Here’s a new prediction: Global lithium-ion battery deployments over the next five years will grow by 55 percent annually, according to a new report from GTM Research. ★ In other words, annual lithium-ion installations will grow more than eightfold, from 2 gigawatt-hours in 2017 to 18 in 2022. ★ This growth is starting from a tiny baseline — for comparison, electric-vehicle sales produced demand for 112 gigawatt-hours of batteries in 2017 alone. With 55 percent annual growth, though, grid storage will soon be substantial enough to alter the performance of electrical systems around the world. ★ The U.S. will continue to lead the pack in deployments, followed by China, Japan and Australia. The investments that states are putting in now with...

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