Solox Space
Mining

  Remote Precise Exploration Technology to discover critical resources on the Moon and
Mars for ISRU and sustainable infrastructure, and critical minerals on Earth to support
future energies, new technologies, and industrial advancements
Planets


About Solox Space Mining
The future of Space exploration, energy transition, and sustainable development depends on the availability of essential resources, both on Earth and in Space. SOLOX SPACE MINING focuses on remote exploration technologies to identify critical minerals and resources necessary for enabling these advancements.
In Space, we prioritize the detection of:

  • Water Ice: Vital for life support, fuel production, and enabling long-term exploration missions on the Moon and Mars.
  • Iron and Aluminum: Key materials for building infrastructure and supporting In-Situ Resource Utilization (ISRU).

On Earth, we target:

  • Copper, Cobalt, Molybdenum, and Nickel: Crucial minerals for renewable energy technologies and industrial applications, addressing growing global demand.
Our Remote Exploration Technology reduce the environmental and financial costs of resource identification, accelerating discovery timelines and enabling efficient access to essential materials. By bridging the gap between terrestrial mining and Space exploration, SOLOX SPACE MINING contributes to building a sustainable future on Earth and beyond.
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Our Team

CONSTANZA VALLEJO GROVE, FOUNDER AND CEO

Constanza is a Business Engineer from Universidad Adolfo Ibáñez in Chile, with an MBA from EAE Business School in Barcelona, a Master’s in Business Management from EADA Business School in Barcelona, and a Master in Digital Innovation & Entrepreneurial Leadership in ESCP Business School in Berlin, Shanghai, London and Sillicon Valley. Constanza began her career in Mining and Energy in 2018, joining a Mining contractor in Chile. She later moved to Spain and became the Sales Director at an Energy Company. Upon her return to Chile, she founded ISOLMIN – Engineering Solutions for Industrial and Mining sectors, delivering Innovative, Technological, and Energy-Efficient solutions for the Mining Industry.

In parallel to ISOLMIN, she began developing Greenfield and Brownfield Mining Projects, where she decided to focus her career, developing technologies that enable the detection of new Mineral Deposits. .

This deep industry expertise led to the creation of SOLOX SPACE MINING, leveraging cutting-edge detection technologies to bridge terrestrial mining excellence with space exploration needs. SOLOX SPACE MINING combines advanced engineering, sustainability, and innovation to address the critical challenges of resource exploration on Earth and in Space. This dual-purpose approach enables efficient exploration and drives technological innovation in resource identification and utilization. Constanza is a Christian, and the greatest value she sees in Mining and Mineral Deposits, is being able to witness firsthand the foundations of God’s creation of the Earth and Universe.
Key Applications

IN SPACE

  • Water Ice: Essential for life support, fuel production, and sustainable exploration on the Moon and Mars.

  • Iron and Aluminum: Crucial for constructing infrastructure and enabling In-Situ Resource Utilization (ISRU).

Critical Minerals and their roles in the Energy Transition and Technologies

Copper, Molybdenum, Cobalt, and Nickel: Critical Minerals for the energy transition and new technologies.

Copper
Copper
Cobalt
Cobalt
Molybdenum
Molybdenum
Copper

Copper’s unparalleled electrical conductivity and recyclability make it indispensable in the global shift to sustainable energy solutions. It is essential for the deployment of renewable energy, electric vehicles, and energy-efficient infrastructure. As global efforts to decarbonize intensify, the demand for Copper will only continue to rise, solidifying its role in the future of clean energy and electrification.

Cobalt

Cobalt’s role in batteries, especially for electric vehicles and renewable energy storage, makes it indispensable for the shift to greener energy solutions. The demand for Cobalt is growing rapidly as industries and governments around the world move towards reducing carbon emissions. Additionally, cobalt’s use in technologies that improve energy efficiency and sustainability aligns with global efforts to combat climate change.

Molybdenum

Molybdenum plays a crucial role in the Energy Transition due to its properties as a heat-resistant metal and its use in green technologies. It enhances the durability and efficiency of renewable energy infrastructure, such as wind turbines, solar panels, and hydrogen production systems. Molybdenum alloys are essential in nuclear power and advanced energy storage systems, improving the lifespan of batteries and fuel cells. Its role in producing high-strength steel for electric vehicles and other sustainable applications also makes it vital for transitioning to a low-carbon future.