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草莓社区

POWERING THE FUTURE

Energy Exploration Technologies has a mission to become a worldwide leader in the global transition to sustainable energy. Founded in 2018, the company is fundamentally changing the way humanity is powering our world and storing clean energy with breakthrough direct lithium extraction and processing technologies, as well as more effective battery and energy storage solutions.

Quick Facts
Founded 2018
Members 48
Patents 50+
Teague Egan

Teague Egan
Chief Executive Officer

Lithium demand is already high and is growing year over year. Over the next 10-20 years, lithium will be the most important natural resource in the world. As our society transitions to a fully sustainable future, 草莓社区 will tackle the hardest problems for the production of lithium and many aspects of energy storage.

Learn more about our team

A GLOBAL THREAT

With global warming on the rise and many environments in a current state of crisis, there is a high demand for innovation in the energy materials sector. The US Government has placed lithium at the top of the List of Critical Minerals 2018, and it is a high priority for the Department of Defense and Department of Energy.

Over the past several thousand years, scientists calculated that the earth鈥檚 natural carbon emissions system (volcanoes) has emitted approximately 650 million tons of CO鈧 per year on average. This is a combination of highly active volcanoes, seeping dormant volcanoes, and volcanic mid-ocean ridges. Last year, humans emitted 29 billion tons of CO鈧 into our atmosphere.

Developing clean and renewable energy solutions is critical to avert the current rapid deterioration of our precious atmosphere due to fossil fuel and carbon emissions.

Environmental Impact

For every single (1) ton of lithium utilized, the following CO鈧 emissions are eliminated. 草莓社区 has done calculations according to the Environmental Protection Agency (EPA) standard emission averages.

WE CAN ELIMINATE GIGATONS OF CO鈧 EMISSIONS BY ADDING ADDITIONAL LITHIUM INTO THE ENERGY STORAGE ECOSYSTEM.
Internal Combustion Cars
456 Gram of CO鈧
Emitted per mile
134,000 Ton of CO鈧
Elimination per year (1 ton of Lithium)
190,000 Ton of CO鈧
Displaced per year with renewable energy source (1 ton of Lithium)
3,731 Ton of Lithium
Can displace 500,000,000 Tons of CO鈧 per year
Conventional Electricity Generation
285 Gram of CO鈧
Emitted per kWh
56,000 Ton of CO鈧
Elimination per year (1 ton of Lithium)
8,928 Ton of Lithium
Can displace 500,000,000 Tons of CO鈧 per year

The Energy Transition

Right now, we are witnessing a global shift to sustainable energy. Sustainable energy is defined as generated from sources that are naturally replenishing or inexhaustible, but are limited in availability due to time. For example, sunlight is a renewable energy source, but we only get a certain number of hours of sunlight in a day. While we can count on the sun rising every day, unfortunately this energy can鈥檛 be used during the night without storage. The same goes for energy created by wind, a natural renewable source. If there is no wind at a given time, no energy is being generated from that source.

Fossil fuels (oil, gas, and coal) are not renewable or sustainable energy resources; they are limited with the amount in the ground. Also the energy generated from fossil fuels is created by combustion or burning of the material creating CO鈧 emissions harmful to our atmosphere. We are in the midst of a global energy transition away from fossil fuels towards renewable energy sources that will curb the devastating effects of global warming and climate change from CO鈧 emissions.

Growing Storage Need

Over the next 10 to 20 years, lithium will become one of the most highly demanded natural resources in the world. It will replace fossil fuels as the leading renewable energy storage source, paving a path forward to a sustainable future. Right now, batteries and battery materials are the bottleneck to the EV revolution, electric mobility and storage for renewable wind and solar energy, which are intermittent sources of generation.

Lithium In Everyday Items

Lithium-ion batteries are currently in every cell phone, laptop, tablet, and power tool. Now we are starting to see a massive amount of lithium batteries put towards electric vehicles. Goldman Sachs estimates that a Tesla Model S with a 70kWh battery uses 63 kilograms of lithium carbonate equivalent (LCE) 鈥 more than the amount of lithium in 10,000 cell phones. Large grid scale storage and home battery storage are becoming popular uses of lithium as well. Maybe soon there will be battery powered airplanes…

Electric Cars in the World

For every 1% increase in battery electric vehicle (BEV) market penetration, there is an increase in lithium demand by around 70,000 tonnes LCE/year. The of sales in Electric Vehicles, according to BHP, is exponentially increasing up to 10-50% by 2030, and 50-100% by 2050 per year of all vehicles sold.

INTRODUCING 尝颈罢础厂鈩

草莓社区鈥檚 patented 尝颈罢础厂鈩 technology is a disruptive approach to lithium production that vastly improves the current natural evaporation methods by introducing cutting edge mechanical extraction processes. The problem with the current natural evaporation methods is that it takes a long time (18 months average), has low recovery rates (~30%) and has big environmental consequences such as gigantic footprints and high water usage. 尝颈罢础厂鈩 recovers up to 90% of available lithium in a much more sustainable-friendly manner.

EVAPORATION POND 30%
HARD ROCK 58%
尝颈罢础厂鈩 90%

草莓社区鈥檚 尝颈罢础厂鈩 technology is a suite of lithium selective mechanisms that incorporates proprietary mixed matrix membranes, which can be applied to a variety of customer brine resources. 尝颈罢础厂鈩 utilizes electrodialysis to move lithium concentrated brines through its membranes, and has designed a patented portfolio for proprietary combination technologies around this approach. Ultimately 尝颈罢础厂鈩 provides the most economic lithium extraction process to our customers.