h2e Power Systems | Solid Oxide Fuel Cell & Hydrogen Tech

h2e Power Systems | Solid Oxide Fuel Cell & Hydrogen Tech

Sustainable Development Goals

SDG 13 – Climate Action, SDG 7 – Affordable and Clean Energy, SDG 9 – Industry Innovation and Infrastructure

Company Overview

h2e Power Systems Private Limited is an India based clean technology manufacturing company focused on solid oxide fuel cell (SOFC) technology and green hydrogen solutions. Founded in 2011, the company develops decentralized energy generation systems, electrolysers, and waste to hydrogen conversion platforms designed to lower carbon emissions and deliver on site power and heat.

The company operates out of Pune, Maharashtra, where it maintains development and production capabilities. Its core technology portfolio centers on ceramic based solid oxide systems capable of operating on multiple fuels, including natural gas, biogas, LPG, and pure hydrogen. The company manufactures modular micro cogeneration units for distributed energy generation as well as industrial scale electrolysers for green hydrogen production.

Key company milestones include commissioning a commercial green hydrogen production plant for Oil India Limited in Jorhat, Assam, and acquiring Switzerland based fuel cell entity Hexis AG. Through strategic collaborations with academic incubators and technology partners in Europe and North America, h2e Power Systems provides clean energy systems for agriculture, automotive transport, microgrids, and heavy industrial applications.

Why These SDGs Matter

SDG 7 is directly supported through the development of solid oxide fuel cells and modular combined heat and power systems that deliver efficient, decentralized power using clean and renewable fuels.

SDG 9 is addressed by building domestic clean tech manufacturing infrastructure, deploying high temperature electrolysers, and advancing zero emission hydrogen transport components for industrial and commercial sectors.

SDG 13 is directly targeted through technologies that displace fossil fuel combustion, divert organic waste into green hydrogen, and reduce overall greenhouse gas emissions across power, heating, and industrial operations.

Products & Services
  • Solid oxide fuel cell combined heat and power systems

  • High temperature solid oxide steam electrolyser systems for green hydrogen

  • Waste to hydrogen thermal conversion modules for decentralized waste processing

  • Fuel cell power generation systems for microgrids and backup power

  • Hydrogen fuel cell powertrains and integration for three wheeler vehicles

  • Biogas compatible fuel cell systems for decentralized agricultural power generation

Business Challenges Solved
  • High energy costs and carbon intensity in stationary power generation

  • Dependence on centralized power grids with transmission losses and outage risks

  • Decarbonizing industrial heating and power requirements using fuel flexibility

  • High capital and operating costs of conventional hydrogen production

  • Methane emissions and disposal burdens from organic biomass waste streams

Approach & Methodology

h2e Power Systems utilizes ceramic solid oxide fuel cell (SOFC) and solid oxide electrolyser cell (SOEC) technologies to achieve high efficiency electrochemical conversion. By operating at elevated temperatures, the company’s solid oxide systems enable combined heat and power generation with electrical efficiencies reaching 46 percent to 56 percent and overall thermal efficiencies up to 90 percent.

The engineering design relies on modular architecture, allowing individual fuel cell units to be stacked into scalable generation plants ranging from single kilowatt applications to multi megawatt installations. Fuel flexibility is a core technical feature, permitting systems to process biogas, natural gas, LPG, and hydrogen without requiring high purity fuel feedstock.

For green hydrogen generation, the company utilizes high temperature steam electrolysis, integrating thermal energy directly into the electrolysis stack to reduce electrical power consumption compared to ambient temperature water electrolysis. The company manufactures stack components through specialized subsidiary facilities and integrates these assemblies into standardized, containerized modules for rapid deployment.

Market Position

h2e Power Systems occupies a position in the clean energy and green hydrogen sector, targeting commercial, agricultural, and industrial mid market customers seeking localized energy security. The company differentiates itself through fuel flexible ceramic solid oxide technology and decentralized green hydrogen systems tailored for both urban and rural microgrids. Primary commercial competitors include global stationary fuel cell and electrolyser manufacturers, against whom h2e Power Systems positions its lower operating temperature design, local supply chain integration, and customized agricultural and mobility applications.

Procurement Considerations
  • Fuel availability including natural gas, biogas, or hydrogen supply

  • Thermal integration requirements for combined heat and power utilization

  • Operational temperature requirements for solid oxide stack startup and cycling

  • System modularity for staged capacity expansion and maintenance redundancy

  • Interconnection compatibility with existing local electrical microgrids or distribution grids

  • Environmental operating parameters and localized venting or gas management needs

Funding, Recognition & Ecosystem
  • Incubated at Society for Innovation and Entrepreneurship (SINE), IIT Bombay

  • Financial backing and strategic partnership with Poonawalla Clean Energy

  • Joint technology development grant from Global Innovation and Technology Alliance (GITA)

  • R&D and technology collaboration with Fraunhofer Institute for Ceramic Technologies and Systems (IKTS)

  • Technology partnership with Convion Ltd. (Finland) for high capacity fuel cell integration

Natnavi Analysis

h2e Power Systems represents an important participant in the emerging green hydrogen and stationary power ecosystem in South Asia. By prioritizing ceramic solid oxide fuel cell and electrolyser technology, the organization addresses critical decarbonization challenges across decentralized power generation, agricultural energy access, and industrial fuel switching.

A notable strength lies in the technical versatility of its platform. The ability to utilize diverse input fuels, including agricultural biogas and waste gas, enables deployment in remote or rural settings where grid reliability is low and renewable feedstock is available. Furthermore, the company’s modular electrolyser architecture offers a localized alternative to capital intensive central hydrogen infrastructure.

Potential limitations relate to the broader commercial adoption curve of high temperature solid oxide technology. Ceramic fuel cell stacks require specialized thermal management, precise startup protocols, and significant initial capital expenditure compared to conventional diesel or natural gas engines. Additionally, long term durability and maintenance overhead at scale remain key operational factors for commercial end users evaluating life cycle costs. Nonetheless, h2e Power Systems occupies a key technological niche supporting industrial decarbonization.

Sources & References
Founded: 2011
Company Stage: Growth-Stage Company
Headquarters
Pune, Maharashtra, India
Geographic Presence
h2e Power Systems operates primarily in India, with key manufacturing, assembly, and R&D facilities located in Pune, Maharashtra. The company serves European markets through its subsidiary operations in Germany and Switzerland, delivering stationary fuel cell technology and stack components across international commercial, agricultural, and industrial sectors.
Solution Type
Manufacturer, System Integrator, Technology Provider
Sustainability Outcomes
Carbon Reduction, Energy Efficiency, Renewable Energy Adoption, Resource Efficiency, Sustainable Infrastructure, Transport Decarbonization, Waste Reduction
Industries Served
Agriculture & Food, Automotive & Electric Mobility, Commercial Buildings, Construction & Real Estate, Energy & Utilities, Manufacturing
Last Reviewed: July 30, 2026

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