In today’s Electric Green Energy Brief (EGEB)
- Most of the planned U.S. battery storage is paired with solar.
- The solar industry will increase its targets to 30% solar by 2030.
- Ceylon graphite detects lithium-ion battery.
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Solar and storage
It is not uncommon for the phrase “sun and storage” to become commonplace. There is a 14.5 GW battery capacity in the US from 2021 to 2024. The US Energy Information Administration (IAA) said that 9.4 GW of battery storage would be combined with solar photovoltaic power generation.
Another 1.3 GW battery storage will be installed alongside wind turbines or fossil fuels such as natural gas. The remaining 4.0 GW of planned battery storage will be on independent sites.
The EIA seems to be easily recognizable at this point –
Although things like cloud cover can affect solar power generation, solar panels in particular can be well-integrated with battery storage due to their relatively normal generation patterns. This prediction works well with battery systems because battery systems have a limited amount of time to charge before they need to be charged. For example, if it is paired with a wind turbine, it may take days before the battery system is fully charged.
30% by 2030
The Solar Energy Industries Association (SII) announced yesterday that it has increased its Solar + 10 target to 30% of US solar power by 2030. The original goal of the USA was 20% by 2030, and this review is from the Biden administration’s pure energy targets.
In order to meet 30% of solar energy by 2030, the solar industry needs to double its deployment rate. Without bold, long-term policy investments, much less than is needed to reduce solar emissions and tackle climate change by 2030 alone.
If the industry reaches 30% of the sun by 2030, the solar and storage industry will grow to 1 million workers and add more than $ 800 billion in new private sector investment.
Solar power generation by 30% will reduce carbon emissions from the electricity sector by 50%.
Discovery of Li-ion Battery
Cillon Graphite (CIL TSX-V), a Vancouver-based company that has a history of land vapor graphite deposits, says it has made great strides in the performance of its base graphite anode material for lithium coins. -Yon battery market.
In experiments at WWW’s Warwick Energy Innovation Center in the UK, silicon veneer graphite anode material was compared to standard commercial graphite anode.
Ceylon This is the first commercially available vascular graphite material tested in a single cell in a lithium-ion battery.
Ceylon CEO Don Buckster said
I expect very good results from our first battery tests, but I’m happy to see that my expectations are higher than our blood version graphite.
Our Sri Lankan Vine Graphite Special Features combined with our proprietary processing technologies produce a high-power and high-capacity Li-ion battery as tested by WMG.
You can read more about Ceylon Graphite’s findings here.
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