Newtrace builds next‑generation hydrogen electrolyzers that produce ultra‑pure green hydrogen via a zero‑carbon water‑splitting process powered by renewable electricity. Their patent‑pending precision fluid engineering reduces core components by 70% and eliminates rare‑earth metals, cutting manufacturing costs by about 30% while delivering performance comparable to PEM systems. Integrated software monitors and optimizes operation, enabling affordable, large‑scale deployment for chemical, energy and industrial users.
Funding
$6.7M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.


Founders
Product
Problem
Current hydrogen production relies heavily on fossil fuels or expensive, resource-intensive electrolyzers, resulting in high costs, carbon emissions, and limited scalability for clean energy applications.
Solution
Newtrace offers a next‑generation hydrogen electrolyzer that generates ultra‑pure green hydrogen through a zero‑carbon water‑splitting process powered entirely by renewable electricity. The system uses a patent‑pending precision fluid engineering design for gas separation, enabling high purity output with minimal downstream processing. By eliminating rare‑earth metals and reducing the number of core components by 70%, the electrolyzer cuts manufacturing costs by roughly 30% while delivering performance comparable to PEM technology at the price point of alkaline units. The platform is supported by integrated software that monitors operation and optimizes efficiency, facilitating large‑scale, affordable deployment of green hydrogen across multiple industries.
Target Audience
Primary customers include chemical manufacturers, energy producers, and industrial firms seeking cost‑effective, low‑carbon hydrogen for processes such as ammonia and methanol production.
Features
- Patent‑pending precision fluid engineering for efficient gas separation and ultra‑pure hydrogen output
- 70% fewer core components and zero rare‑earth metal usage, lowering capital expenditure and supply risk
- Earth‑abundant metal electrocatalysts delivering performance near PEM electrolyzers at reduced cost
- Integrated software application for real‑time system monitoring, performance optimization, and data analytics
- Modular, versatile design suitable for deployment in chemical, energy, and industrial settings