Guiding safer life science on every step
End‑to‑end lab life-cycle support—from risk and permits to execution, QC, and training
At BioPrecis Consulting we provide expert biosafety, biobanking, and environmental consulting in Europe, helping organizations work safely, comply with regulations, and protect people, animals, and the environment.
PFAS Environmental Impact
Expert Biosafety Guidance
At BioPrecis, we provide specialized environmental consulting services to organizations seeking robust, compliant, and sustainable solutions for managing Per- and Polyfluoroalkyl Substances (PFAS). Are your engineering decisions considering the full material life cycle? BioPrecis provides expert training on PFAS Detection, Destruction, and Substitution.
At bioprecis.eu, we provide specialized biosafety and environmental consulting services to organizations seeking robust, compliant, and practical risk management solutions. Based in Brussels and Sofia , we combine scientific expertise with tailored coaching to help laboratories, companies, and institutions build a strong safety culture. Our goal is to translate complex biosafety requirements into clear, actionable guidance that supports your daily operations and long-term sustainability.
Strong biosafety expertise
We convey deep biosafety expertise grounded in rigorous scientific understanding, regulatory insight, and practical experience to design and oversee safe, compliant biological operations.
Tailored, practical training
provides personalized guidance focused on real-world actions and outcomes that fit your specific goals and challenges.
Strong regional experience
We leverage deep regional expertise to navigate local regulations, cultural nuances, and market dynamics, ensuring tailored solutions that deliver stronger results.

PFAS training feedback
"… For me personally, the lecture changed how I think about sustainability in engineering. I used to connect sustainability mainly with CO2, energy and water. Now I see that material chemistry can be just as decisive. A process can be energy efficient and still create serious environmental risks if it depends on persistent substances. As a future engineer, I should ask whether a material can be detected, recycled, or removed. The most important personal takeaway is that sustainable design in semiconductor processing requires early awareness of the full material life cycle, because decisions made inside a cleanroom can affect ecosystems and society far outside the fab. …"
"… This lecture increased my awareness of the environmental impact of materials used in semiconductor manufacturing. It taught me that engineering decisions should consider not only technical performance but also long-term sustainability, health, and environmental responsibility. In the future, I will pay greater attention to material selection and sustainable manufacturing practices when studying or working in engineering… ."

