Ronnie Stoerner

EHS Director at Group14 Technology

Ronnie Stoerner has over 25 years of experience in the field of Environmental, Health, and Safety (EHS). In 1996, they started their career as an EHS/ERT Coordinator at BASF Health & Nutrition, where they were responsible for implementing, managing, and administering all safety related policies, procedures, and projects, as well as leading all safety related RCI's and coaching and training site personnel in safety related issues. Ronnie then moved to TPC Group in 2008, where they served as an "A" Operator. In 2015, they joined ALTIVIA as an HS&S Manager, where their responsibilities included making sure that everyone understood the importance of following procedures, recognizing and eliminating risk and exposures, and speaking up when an unsafe condition was present. In 2018, they joined Wanhua U.S. as a Senior HSSE Specialist and then moved to BLUE ORIGIN in 2020, where they served as a Senior EHS Specialist. Most recently, they joined Group14 Technologies in 2021 as an EHS Manager and is currently serving as the EHS Director.

Ronnie Stoerner has been attending Columbia Southern University since 2015, pursuing a B.S in Occupational Safety and Health. Additionally, they have obtained three certifications from the NFPA Pro Board, including NFPA 1006 Pro Board Certified Confined Space Rescue (obtained in December 2017), NFPA Pro Board 1041 Exterior Fire Instructor II (obtained in March 2014), and NFPA 1081 Pro Board Certified Industrial Exterior Fire Fighting (obtained in July 2012).

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Woodinville, United States

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Group14 Technology

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The future is silicon. Anodes must improve and silicon has the most potential. Nano-scale silicon provides the best combination of capacity and power, but still not sufficient cycle life and nano-scale production approaches remain expensive. Group14 has applied deep materials research experience to develop a new, low-cost approach to nano-scale silicon production. Our nano-scale silicon has high purity, high capacity, good power, and good cycle life. We use its unique high performance carbon engineering abilities to create cohesive silicon-carbon nanocomposites that dramatically outperform traditional carbon coated silicons.


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51-200

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