about us

Revolutionizing Mining with AI-Driven Biomolecule Solutions

We tackle the mining industry’s toughest challenge: metal extraction that is often economically inefficient and environmentally harmful.

Unlocking trapped potential in mining.

We engineer biomolecules to maximize metal extraction

$100M

A 5% increase in yield unlocks up to $100M in Revenues per mine

$200B

The world’s annual demand for metals stands at $200 billion

$3T

Mining tailings contain around $3 Trillion worth of trapped metals

Boost Copper Production

Freeport-McMoRan is leveraging new processing technology to significantly increase copper production without opening new mines. The company aims to add 800 million pounds of copper annually, CEO Kathleen Quirk emphasized the difficulty of developing new copper supply, highlighting the necessity of this initiative amid growing copper demand and limited supply.

"You think about 800 million pounds of copper a year—that’s the size of a big mine. That’s meaningful. Our team is working very aggressively to get that done."

Kathleen Quirk
CEO at Freeport-McMoRan
Unlocking Copper's Full Potential

BHP is leveraging advanced digital technologies to improve copper production at its existing mines, focusing on maximizing value as new economic discoveries become scarce.

"We expect the next big wave in mining to come from the advanced use of digital technologies. As grades decline at existing copper mines and fewer new economic discoveries are made, next-generation technologies like artificial intelligence, machine learning, and data analytics will need to be used to unlock more production and value from our existing mines."

Laura Tyler
Chief Technical Officer at BHP
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The Clean Energy Era Runs on Metals, Not Oil.

Decarbonizing our energy systems means shifting away from hydrocarbons to minerals and metals as the backbone of energy storage and transmission.

These minerals possess crucial properties that enhance energy capture, storage, and distribution. As a result, they are essential to green technologies like wind turbines, solar panels, batteries, and energy grids.

The Problem

The global energy transition, crucial for combating climate change, hinges on securing critical minerals. These minerals are the building blocks of clean energy technologies, from electric vehicles to solar panels. However, as demand surges, high-grade deposits are depleting, leaving us with lower-quality ores. These are increasingly difficult and environmentally costly to extract.

At Giraffe Bio, we harness biology to revolutionize mining. Our breakthrough lies in harnessing the power of biology to revolutionize mining. We custom-engineer biomolecules that act as precision tools, each tailored to extract specific minerals from each deposit’s unique geology. This means we can efficiently process complex, low-grade deposits that were previously uneconomical or environmentally problematic.

Our Approach
Discovery Platform
Cell-free Systems
AI-Enhanced
Geology Specific
Adaptive Solutions
Scalable
Cost-Effective
Sustainable
Trusted by Industry Leaders
our MISSION
Unlock the full potential of the world’s mineral deposits by making extraction more efficient and sustainable. It’s a win–win for the planet and for industry.
Frequently Asked Questions
How does Giraffe Bio improve mining efficiency?
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We develop custom biomolecules that maximize metal recovery from low-grade ores and mining waste, outperforming traditional chemicals in selectivity, yield, and sustainability.

What metals do you focus on?
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Our technology currently targets copper and lithium, with plans to expand into gold, nickel, rare earth elements, and other critical minerals essential for the energy transition.

How can mining companies work with Giraffe Bio?
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We partner with mining companies as a B2B solution provider, integrating our technology into existing processes (drop-in) to boost recovery and reduce both costs and time.

What are the environmental benefits of your approach?
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Our biomolecules reduce water and energy consumption, minimize chemical use, and unlock value from resources that would otherwise go to waste, making mining more sustainable.

What is the current stage of development?
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We are conducting lab-scale pilots with mining companies, demonstrating the applicability of the technology and its potential to reshape mining extraction processes.