Senior Process Engineer – Electrochemical Reagent Generation
Listed on 2026-09-09
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Engineering
Process Engineer, Chemical Engineering
Senior Process Engineer – Electrochemical Reagent Generation About Lilac Solutions, Inc.
Lilac exists to solve one problem: lithium supply. By engineering scalable lithium extraction technology, we help industries produce lithium faster, cheaper, and cleaner. Our ion exchange technology is rooted in scientific precision and commercial know-how, making lithium supply a non-issue for global electrification. Our materials, engineering, and approach uniquely position us to design and develop commercial projects across various lithium sources.
We help lithium producers rapidly and responsibly scale production from brine resources with versatile, cost-effective, and dynamic technology solutions.
Lilac is supported by the largest players from the mining and processing industry, as well as significant investment funds. Lilac investors include BMW, SK, Mitsubishi, Sumitomo, Bill Gates’ Breakthrough Energy Ventures, Mercuria, Lower Carbon Capital, and MIT’s The Engine.
About the roleLilac is seeking a Senior Process Engineer – Electrochemical Reagent Generation to own the technical evaluation, development, optimization, and integration of reagent generation technologies, including bipolar membrane electrodialysis (BPED), chlor-alkali, electrolysis, and other potential acid/base generation systems.
This role will serve as Lilac’s in-house technical lead for reagent generation and will be responsible for advancing these technologies from laboratory testing and vendor evaluation through pilot- and demonstration-scale process design and ultimately commercial-scale deployment.
This is a highly collaborative and hands-on position working across Technology, Engineering, Projects, and Operations to develop and deploy reagent generation solutions within Lilac’s overall process flowsheet. This is a full-time position with up to 25% domestic and international travel to pilot and project sites.
What you'll do Process Development, Integration & Experimental Work- Design and execute laboratory- and pilot-scale experiments to characterize and optimize reagent generation systems.
- Develop a fundamental understanding of key equipment and operating tradeoffs, including reagent concentration, efficiency, energy consumption, membrane lifetime and equipment performance.
- Translate experimental findings into equipment requirements, operating parameters, and design criteria for pilot- and demonstration-scale systems.
- Evaluate interactions with upstream and downstream unit operations, including reagent storage, recycle streams, utilities, water balance, and waste streams.
- Lead technical evaluation and due diligence of reagent generation technologies and equipment suppliers.
- Critically assess vendor proposals, process designs, performance guarantees, equipment scope, and operating assumptions.
- Normalize vendor quotations to enable meaningful comparisons across technologies and suppliers.
- Develop structured technical recommendations for technology and vendor selection.
- Develop and maintain CAPEX and OPEX models for reagent generation systems.
- Evaluate technoeconomic tradeoffs between technologies, vendors, system configurations, operating conditions, and integration strategies.
- Work cross-functionally to identify reagent generation solutions that provide the best combination of cost, efficiency, reliability, and operability.
- Support the design, commissioning, and operation of pilot- and demonstration-scale reagent generation systems.
- Troubleshoot equipment and process performance in collaboration with vendors and internal teams.
- Translate operating experience into improved equipment specifications, design criteria, and operating strategies.
- Develop the technical basis for eventual commercial-scale deployment.
- Operate with a team-first mindset and contribute beyond reagent generation when projects require it.
- Work effectively across internal teams and external vendors.
- Be comfortable moving between hands-on experimental work, equipment troubleshooting, technical analysis and process design.
- Bachelor’s Degree (or higher) in chemical engineering, mechanical engineering, materials…
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