Circular Economy
Promotes the principles close loop recycling to minimize waste and maximize resource efficiency throughout the lifecycle of vehicles, infrastructure and related services such as tires, vehicle body, batteries.
NanoTherma is a deep-tech energy company developing advanced technologies that convert temperature differences into electrical power. The company focuses on thin-film, lightweight, and modular devices designed to operate passively, without moving parts or fluids, and to integrate directly into existing systems with minimal disruption. By leveraging advanced materials and scalable manufacturing approaches, NanoTherma aims to enable efficient energy recovery in environments where heat is abundant but difficult to utilize.
NanoTherma’s solutions transform unused thermal gradients into local electrical power that improves overall system efficiency and reduces wasted energy. The platform is broadly applicable across energy-intensive sectors, including digital infrastructure, industrial systems, mobility, and other applications where reliability, compact form factor, and low maintenance are critical.
Founded by engineers with backgrounds in advanced materials, semiconductor R&D, and system integration, NanoTherma combines deep technical expertise with a strong focus on real-world deployment and commercialization.
We crated new BMS, acting as an additive to the battery pack connections. Improving energy transfer, recycling current survivors from circuit and load, saving space and maintenance while increasing efficiency by +45% and more.
LiGenerate is redefining urban mining with its unique, efficient, and cost-effective lithium-ion battery recycling process, enabling high-yield recovery of pure metals such as lithium, nickel, and cobalt. Designed for scalability and minimal environmental impact, LiGenerate’s proprietary technology sets a new benchmark in sustainable resource extraction. At the core of this innovation is the LiGen Cell — a modular, room-temperature metal recovery unit built for seamless integration into industrial black-mass processing lines. With an annual capacity of 10,000 tons, LiGen Cell delivers an environmentally friendly and economically viable solution for large-scale battery recycling.
Salion Energy is developing high-power aqueous batteries for data centers, UPS systems, and grid backup. Our technology uses abundant, safe, and cost-effective materials to deliver energy storage solutions designed for daily operational use, combining high power, long cycle life, and safety.
Targeting AI data centers and large-scale grid storage, Salion’s batteries provide a scalable alternative that meets critical needs current technologies cannot fully address. Our solutions focus on operational reliability, safety, and long-term cost efficiency, supporting infrastructure that requires dependable, high-performance backup.
Salion’s team brings decades of experience in energy, technology, and research, working closely with leading academic institutions to advance our development and validate the technology.
As an early-stage venture, we are focused on demonstrating our technology’s potential and readiness for real-world applications, positioning us to meet the growing demand for stationary energy storage solutions while maintaining a clear path toward scale and commercial adoption.
Boson has developed a novel waste to value solution to convert solid waste to great energy and supply heavy duty mobility with a fossil parity quick charging solution with the need to require heavy infrastructure. Boson has finalized the development and is in deployment more with multiple projects across EU Israel in various stages of development.
Boson will enable the transition to zero emission transportation by reducing the cost of energy and by reducing the infrastructure utility stress.
Significantly reducing the number of cars on the road through efficient ride-sharing. By maximizing the occupancy of each vehicle, we minimize resource consumption, lower emissions, and decrease traffic congestion. Our solution promotes the reuse of existing transportation resources, thereby extending their lifecycle, reducing waste, and supporting a sustainable, eco-friendly transportation ecosystem.
CipherSiP AG – We develop and deliver pioneering Cyber-AI technology on a single chip designed specifically for the mobility arena. Our solution is a radical departure from traditional software-based security, providing an unhackable, hardware-level layer of protection. This compact, powerful chip integrates a dedicated AI engine that learns, predicts, and neutralizes cyber threats in real time, before they can cause harm.
In addition to our Cyber-AI and other unique capabilities, we recognize the enduring role of the CAN network. While technologies like Ethernet and 5G/6G handle external communication at the vehicle’s gateway, the critical safety components—hundreds of sensors and dozens of ECUs—still rely on the 50-year-old CAN bus. This network is here to stay, particularly for safety-critical messages. No other solution, not Ethernet, not CAN-XL, can replace the good old safe CANbus. Only our CAN.SF+ technology, which is riding over the existing CAN network, creates a 25 Mbps data rate over the existing 8-byte/1 Mbps CAN bus without interrupting the network and with no EMC or EMI issues. It has been tested in Germany and in the US on the Porsche Cayenne and the Honda Acura, as well as with other OEMs in Japan, India, and China.
We are building an emission-free grid of solar roads connected to hydrogen storage systems to transform how energy is produced, stored, distributed, and supplied to consumers. By combining multiple existing technologies, we have designed a system that supplants the need for the energy consumption of both electricity and fuel.
Thermagix has developed the next-generation solution: Phase-Change Thermoacoustics.
By integrating evaporation and condensation processes (phase-change) into the thermoacoustic cycle, we achieve: A 100x increase in power density, Higher efficiency at significantly lower pressures, The ability to harvest heat from sources as low as 60-100℃, A lightweight, modular, and plug & play system design.
This breakthrough dramatically reduces cost and complexity, while opening the door to low-grade heat recovery across a range of industries.
IonFlux is transforming the hydrogen economy with its scalable, on-demand Hy-Gen® generator – a proprietary system that delivers low-pressure hydrogen safely, efficiently, and wherever it’s needed. Powered by portable, activated aluminum fuel pods, this breakthrough solution eliminates the need for high-pressure storage and transport, enabling cost-effective hydrogen generation at the point of use. Engineered for reliability in diverse environments, Hy-Gen® supports a wide range of applications including mobility, battery charging, and off-grid power – positioning IonFlux as a key player in the next-generation hydrogen value chain
2nd-Light is a cross-sector innovative startup promoting circular economy for end-of-life lithium-ion EV batteries by actively acting as brokers in global market transactions through an accurate pricing mechanism, backed by an advanced algorithm and a unique business model.
Where there are people, there is waste. With so many of us, the amount of waste generated has reached 2 billion tons a year and continues to grow at an alarming rate. What if there was a way to put all this waste to good use? This is exactly the question that sparked the foundation of UBQ Materials. We set out on a mission to rethink the very notion of waste and turn it into something good, useful, even celebrated. For thousands of years, consumption was a straight line, and at the end of it was a pile of garbage. With UBQ, waste is not the end, it is only the beginning. The beginning of a new material and the building block of a world without waste.
PRACTICAL SOLUTION TO A REAL PROBLEM
TextRe is on a mission to make a worthwhile impact on carbon emissions by developing a PRACTICAL, COST-EFFECTIVE, SCALABLE alternative to virgin plastics. How? By repurposing synthetic fashion waste into meaningful, viable recycled plastic pellets & compounds to be used by the plastic industry for numerous applications.
The plastic industry is desperately seeking sustainable recycled materials, with demand expected to outweigh supply by three times in 2030 and by 50% in 2040. The industry still lacks viable, scalable and cost-effective alternatives, despite on-going developments in recycling efforts and sustainability technologies.
This is where TextRe comes in – with a patent-pending non-chemical process that starts with curating synthetic fashion waste, which is landfilled in abundance, followed by pelletizing the shredded feedstock to create high-quality recycled pellets and ending with a final step of compounding to produce industry-standard recycled compounds capable of replacing virgin polymers for various applications.
UNIQUE APPROACH – FUSION OF VISION & PRACTICALITY
What makes TextRe’s products and solutions viable and practical is the team’s integrative approach, incorporating veteran industry knowledge and expertise, materials engineering & technology as well as pragmatism and economics. The team understands the challenges of both the plastic and fashion industries, as well as the challenges relating to introducing a new material, all under the long-term vision and commitment to reducing carbon emissions.
INDUSTRY-STANDARD PRODUCTS FOR WIDE BREADTH APPLICATIONS
TextRe’s products are applicable in a variety of plastic applications and uses, including Consumer Products, Home Décor, Automotive & Transportation, Electronics & Electricity, Non-food packaging and Infrastructure.
DirecTrainS is developing a Dynamic Coupling (DC) system for rail which enables physical connection and disconnection of trains/cars on-the-run
quickly and safely, using existing infrastructure and rolling stock. Dynamic Coupling system combines physical components
with control and software systems in order to provide a flexible, modular train platooning for a desired timeslot
and safe parting of coupled trains/wagons when approaching destination. Applying DC to existing (and new) rolling stock increases rail capacity by over 40% and gives rail providers and operators, as well as infrastructure managers,
the ability to offer services not available today.
Helios is an Israeli innovator in green iron production, tackling one of the world’s most carbon-intensive industries. Our breakthrough technology, the Helios Cycle, replaces carbon and hydrogen with sodium as the reducing agent in ironmaking. This two-step closed-loop process operates at only 250–350 °C, consuming less energy while producing 99%+ pure iron with oxygen as the sole byproduct.
Unlike conventional steelmaking, which depends on scarce high-grade ores and emits vast amounts of CO₂, the Helios Cycle can process abundant low-grade ores and even mining tailings. This reduces both raw material costs and industrial waste, while eliminating direct carbon emissions when powered by renewable electricity.
Our modular, mobile furnaces enable localized production near mining sites, cutting transportation costs and emissions. With lower operating expenses, faster deployment, and strong unit economics, Helios offers steelmakers a practical path toward profitability and decarbonization.
Beyond iron, our technology extends to other critical materials such as nickel, copper, cobalt, and lithium—supporting cleaner, more sustainable resource extraction across industries














