Job description
At Ore Energy, we are on a mission to fundamentally expand the amount of energy society can reliably harness and use, helping move civilization toward a more abundant energy future. We are doing this by developing long-duration, utility-scale iron-air batteries that provide safe, low-cost, multi-day energy storage for electricity grids and data centers.
We are expanding our product development team and are looking for a hands-on, highly skilled Balance of Plant (BoP) Systems Lead to join us in Amsterdam. In this role, you will take ownership of the architecture, design, and integration of the critical supporting subsystems required to operate our iron-air batteries safely, efficiently, and reliably.
Operating at the intersection of mechanical engineering, fluid mechanics, thermal management, and process control, you will bridge our core electrochemical cells with the physical support systems that surround them. We are looking for a pragmatic, systems-thinking engineer who thrives in a lab/workshop environment, designing functional physical setups and scaling concepts into robust, product-level assemblies.
Key Responsibilities
- BoP Architecture & Sizing: Define the technical architecture, specifications, and component sizing for all BoP subsystems, including air management, gas conditioning, fluid handling, thermal management, and pressure control.
- Component Selection & Integration: Evaluate, specify, and integrate active hardware components, including pumps, blowers, valves, manifolds, sensors, heat exchangers, filters, and piping networks.
- Interface & Trade-Off Analysis: Translate electrochemical operating requirements into clear subsystem specifications. Perform system-level trade-off studies balancing thermal performance, pressure drop, parasitic energy consumption, cost, and complexity.
- Prototyping & Hands-on Testing: Maintain a strong physical presence in the lab/workshop-building, plumbing, commissioning, and troubleshooting proof-of-concept rigs, full-scale prototypes, and early product builds.
- Mass & Energy Balances: Develop and maintain detailed system-level mass, fluid flow, energy, and thermal balance models to guide engineering decisions.
- Root-Cause Analysis & Validation: Collaborate closely with testing and quality teams to define validation plans, execute root-cause failure analysis, and drive iterative hardware improvements based on empirical data.
- Risk Management & Standards: Participate in DFMEA sessions, hazard analyses, and technical design reviews, establishing clean documentation and standardized operating procedures for BoP subsystems.
Your Profile
- Experience: 5+ years of hands-on engineering experience designing and integrating complex fluid, thermal, gas-handling, or chemical-process hardware systems.
- Systems Engineering Thinking: Proven ability to define functional requirements, manage interface controls, and bring a multi-component electromechanical system from initial concept through physical prototyping and validation.
- Multi-Disciplinary Hardware Expertise: Deep technical foundation in fluid dynamics, thermodynamics, pneumatics, sensor integration, and active component selection (pumps, blowers, valves, heat exchangers).
- Hands-on & Resourceful: Practical, resource-efficient problem solver who loves building physical test rigs, wiring/plumbing setups, and troubleshooting issues directly on the lab floor.
- Analytical & Data-Driven: Strong capability in system sizing calculations, engineering modeling (MATLAB, Python, or process simulation tools), and interpreting empirical test data to guide mechanical redesigns.
- Industry Background: Direct experience in batteries, fuel cells, electrolyzers, Direct Air Capture (DAC), HVAC, or industrial chemical-process equipment is highly valuable.
- Communication & Autonomy: Flawless professional English. Highly autonomous, structured, and capable of translating complex subsystem dynamics into clear, actionable recommendations for cross-functional engineering teams.
Typical pay for similar roles
EstimateThe middle half of pay advertised on Rejobs for this group over the last 24 months. This employer has not stated a salary.
About this role
About Ore Energy B.V.
Company Overview
Ore Energy B.V.
HeadquartersAmsterdam, Netherlands
Founded2023
SizeApproximately 30 employees in recent years (source: linkedin.com)
What They Do
Ore Energy B.V. is a young, private energy storage company focused on developing iron-air batteries for long-duration grid storage. Their technology uses iron, water, and air instead of lithium or cobalt, distinguishing them as a battery technology developer specializing in multi-day storage of up to 100 hours (source: linkedin.com). The company positions itself as a spin-off from TU Delft and aims to commercialize systems that enable long-term energy storage, featuring a fully European supply chain and non-toxic, abundant materials (source: bundestagszusammenfasser.de). Their technology is designed to support grid operators, energy companies, and large energy consumers such as data centers in bridging periods of low sun and wind, where conventional lithium-ion batteries are not economically viable for such long storage durations (source: newswire.com).
Projects & Track Record
In July 2025, Ore Energy commissioned the world’s first grid-connected iron-air battery in Delft, which they describe as the first long-duration storage system of this type within the European Union (source: bundestagszusammenfasser.de). In June 2026, the company announced an agreement with Dutch energy supplier Budget Thuis for the delivery of 1 GWh of iron-air storage, starting with an initial phase of 400 MWh planned for 2028 (source: newswire.com). This deal is considered the largest iron-air energy storage purchase in continental Europe and the first with a European energy supplier (source: newswire.com). Additionally, Ore Energy has been involved in pilot projects with the French energy supplier EDF, highlighting their growing international collaborations (source: linkedin.com).
Recent Developments
In August 2026, Ore Energy raised $43 million in a Series A funding round led by Plural and HV Capital with participation from Positron Ventures, bringing total funding to over $61 million (source: tech.eu). This investment supports the construction of their first manufacturing facility aiming for gigawatt-hour scale production by 2028 (source: ess-news.com). Furthermore, in June 2026, the significant commercial agreement with Budget Thuis for 1 GWh of storage capacity was announced (source: newswire.com). In May 2026, the company provided written evidence to a German parliamentary process confirming its founding in 2023 and the milestone of grid connection in 2025 (source: bundestagszusammenfasser.de).
Working There
Ore Energy recruits professionals for commercial, technical, and project execution roles, including positions such as Energy Systems Modeling Lead and Project Development & Delivery Manager (source: linkedin.com). These roles sit at the intersection of commercial strategy, project development, and execution, requiring proficiency in both Dutch and English (source: linkedin.com). With offices in Amsterdam and Delft, the company offers a dynamic startup environment focused on scaling its first commercial projects and production (source: linkedin.com).
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