Stark Tech is pleased to announce the appointment of Skye Austin, Director of RNG Sales to a Board Member Seat on the American Biogas Council. Skye brings a unique in-depth understanding on the intersection between reliable utility services, industrial energy needs, and renewable development to the council. As an advocate for the continued use of existing technologies, Skye engages with industry leaders to identify and support emerging advancements, strengthening the RNG sector and promoting sustainability. Her dedication to fostering dialogue about new technologies and sustainability initiatives reflects her broader mission to drive impactful environmental change, which will be instrumental in guiding Stark Tech’s future growth and strategic direction.
“As someone who has dedicated much of my career to the energy sector, I see the American Biogas Council as a vital platform for advocating policies and innovations that can push the RNG industry forward.” Said Skye. “It’s a privilege to contribute to shaping the future of biogas, and I’m excited about the opportunity to work alongside industry leaders to create lasting change.”
About Skye
Skye Austin, RNG Sales Director at Stark Tech, joined the company in early 2024, bringing over a decade of extensive experience in the energy sector. Her expertise encompasses both natural gas and renewable natural gas (RNG). She is a seasoned leader in sustainable energy solutions. In her role at Stark Tech, Skye is dedicated to advancing the company’s biogas upgrading capabilities and championing innovative projects that contribute to environmental progress.
About Stark Tech
Stark Tech is a market-leading clean-tech provider specializing in RNG manufacturing and compression solutions. With a strong focus on facility optimization, Stark Tech aligns cutting-edge technology with real-world expertise to deliver energy solutions. Our diverse portfolio includes intelligent building systems and energy solutions designed to support the transition to cleaner energy and maximize operational efficiency.