HSL Technologies developed a breakthrough patented innovation that enables the production and delivery of decarbonized silica as a liquid form. Once produced, HydroSil can store and transport three times more silica in the same volume than in standard bulk form.
Mainly based on green silicon, water, and hydrogen, HydroSil forms a stable, pumpable liquid that can be used at ambient temperature and pressure using existing liquids infrastructures, eliminating the need for high pressure or cryogenic systems.
Our release reaction allows us to deliver low-carbon silica directly to industrial end-users with minimal energy input and at useful pressure levels. At the same time, we valorize a high purity hydrogen by-product.
By coupling efficient hydrogen logistics with sustainable silica production, HydroSil opens new opportunities for industrial decarbonization of key industries such as elastomers, tires, construction, paints, and coatings.

HydroSil delivers a breakthrough for both silica and hydrogen production and transport, combining optimized density, safe and efficient handling, and seamless infrastructure compatibility. Its low‑carbon, on-demand release process uses abundant, affordable materials, offering scalable, eco-friendly silica and hydrogen valorization to decarbonize key industrials sectors.

HydroSil produces two high-value silica products: pyrogenic silica, co-product generated during our production process, and precipitated silica released on-demand directly to end-users. These low-carbon raw materials allows to decarbonize a wide range of industries, including elastomers, tires, food, feed, paints, and coatings. Our silica offers a sustainable, scalable alternative in a growing market demanding eco-friendly, high-performance materials, combining hydrogen innovation with circular value creation.
5 kWh for 1 kg of low-carbon silica
≈50% of CO2 reduction for end users
187 ktons of silica produced each year by one industrial plant
3x more than standard silica
HydroSil’s innovative silica solutions are designed to enhance functionality, efficiency, and sustainability across a wide range of industrial applications:
Our silica improves rolling resistance, grip, and durability, supporting safer and more energy-efficient mobility.
It provides superior rheology control, matting effects, and scratch resistance, enabling high-performance finishes and long-lasting protection.
HydroSil silica serves as a reliable excipient, offering moisture control, flow enhancement, and stability in solid dosage forms.
Used as an anti-caking and carrier agent, our silica ensures consistent texture, flowability, and shelf-life in food and feed products.
In building materials, HydroSil silica enhances mechanical strength, durability, and workability in applications such as concrete, sealants, and adhesives—contributing to more resilient and sustainable infrastructure.
After delivering low-carbon silica, we valorize a renewable hydrogen by‑product. It provides a safe, low‑carbon energy source for hubs and industrial applications. Combining high density with on‑demand release, it supports local hydrogen supply and enables the decarbonization of key industries through delocalized, renewable energy solutions that advance the transition to a low‑carbon economy.
HydroSil delivers versatile hydrogen solutions designed to meet the evolving needs of key sectors such as maritime, rail, and logistics. Its technology ensures the safe, on-demand release of hydrogen, making it particularly well-suited for mobility applications in ports, rail networks, and logistics hubs, where safety and emissions compliance are critical.
For Hydrogen Refueling Stations (HRS), HydroSil simplifies local hydrogen supply, enabling efficient and decentralized distribution to end users. This makes it an ideal solution for supporting the rollout of clean transportation infrastructure.
HydroSil also plays a key role in hydrogen strategic storage, a cornerstone for Europe’s transition to a decarbonized energy system. Additionally, it facilitates the transport of green hydrogen across borders, helping countries achieve their ambitious hydrogen import targets by 2050.
7x more than compressed gas
Viscosity 100–200 mPa·s
Spec grade D (ISO standards 14687)
With energy surplus
Flash point >60°C
– Release pilot
– Polymerization unit
– Hydrochlorination pilot
– Precipitated silica
Silica powder production pilot
– Permitting & Feed
Middle plant
– Middle release
50 kWe unit
– Middle production plant
Pre-commercial scale
10 t H2 / year
187 t silicas / year
– Industrial release
1 MW unit
– Industrial release
14 x 1 MW unit
– Production plant
10 kt H2 / year
187 kt silicas / year
HydroSil has evolved through successive generations to meet stringent industrial, safety, and sustainability requirements. Early versions addressed key challenges through iterative improvements that reduced corrosion risks, maximized hydrogen yield, and ensured compliance with flammable liquid regulations.
From 2023 onward, we developed new HydroSil formulations at proof-of-concept scale, then scaled demonstrators from 1 kg/day to 5 kg/day to confirm process robustness. In parallel, we worked on enabling instant hydrogen release and efficient silica separation at pilot scale.
By 2026, HSL plans TRL 6 demonstration units for continuous silica release, hydrogen by-product valorization and pre‑commercial HydroSil synthesis, paving the way for industrial deployment. The industrial roadmap targets a first plant around 2029, before scaling toward gigaplants in 2029.