DENS develops and produces energy systems utilizing Liquid Organic Hydrogen Carrier (LOHC) technology, specifically the Hydrozine generator, to provide emission-free power in off-grid locations. Their modular solutions, including mobile and stationary battery systems, address energy supply challenges in construction sites and outdoor events while enhancing grid stability.
Funding
$19.1M 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
Traditional energy systems in off-grid locations often rely on fossil fuels, resulting in emissions and dependence on fuel supply chains. These systems can be noisy, require frequent maintenance, and lack scalability to meet fluctuating energy demands.
Solution
DENS provides sustainable energy solutions using Liquid Organic Hydrogen Carrier (LOHC) technology, offering emission-free power generation for off-grid and on-grid applications. Their Hydrozine generator converts LOHC fuel into electricity, providing a clean alternative to diesel generators. DENS offers modular and scalable energy systems, including mobile and stationary battery systems, to address energy supply challenges in various sectors. These systems can function as standalone components or integrated solutions, enhancing grid stability and reducing carbon footprints.
Target Audience
DENS energy solutions target construction sites, outdoor events, grid operators, and other industries requiring reliable and sustainable power in locations without grid connections or needing to enhance grid stability.
Features
- Hydrozine Generator: Converts LOHC fuel (Hydrozine) into electricity with zero emissions.
- Powerhub: Mobile battery system for on/off-grid setups, energy storage, and rapid charging.
- Gridhub: Stationary battery system for net congestion and peak shaving.
- Powertrains: Integrated battery packs for machinery.
- Modular design: Allows for scalability and flexible integration of various components.
- Remote monitoring and control: Enables efficient management and optimization of energy systems.