Certificates

2025

Custom Certificates

2025
2025
2025
2025

Embodied carbon

Efficient
  • The project adopts a life-cycle approach, formalized through the E+C- label, which evaluates greenhouse gas emissions from construction through end-of-life.

  • Structural rationality and optimized grids reduce material quantities and construction waste.

  • Preference is given to mineral, durable, and low-maintenance materials, limiting replacement cycles and associated embodied emissions.

  • Facade systems and envelope components are designed for long service life, reducing long-term material turnover.

  • Construction waste management and material traceability were integrated on site

Operational Emissions / Energy

Low Carbon
  • Energy performance exceeds regulations with RT 2012 –20% (Effinergie+), corresponding to a maximum Cep of 40 kWhEP/m²/year.

  • Bioclimatic design: optimized orientation, generous glazing, patios, and light wells maximize daylight and reduce artificial lighting demand.

  • Thermal inertia and envelope performance reduce heating and cooling loads.

  • Green roofs contribute to thermal regulation and microclimate mitigation.

  • Smart building systems allow real-time monitoring and adjustment of HVAC and lighting based on occupancy.

Service and maintenance emissions

Efficient
  • Durable facade and envelope materials reduce maintenance frequency and replacement emissions.

  • Building systems are designed for predictive maintenance, limiting energy waste and premature equipment replacement.

  • Anti-vibration decoupling systems mitigate railway impacts, improving long-term comfort and reducing the need for corrective interventions.

  • Rational technical layouts allow accessible servicing, reducing operational disruptions and emissions linked to maintenance works.

Afterlife

Adaptive reuse was addressed through long-term flexibility rather than programmed conversion:

  • A regular structural grid and generous floor plates allow interior layouts to evolve.

  • Limited internal load-bearing constraints support future changes in use, particularly within office areas.

  • Clear separation between s

  • Secondary elements such as interior partitions, technical systems, and fittings are designed to be removable and replaceable.

  • Facade guardrails, screens, and metal elements are mechanically fixed, enabling disassembly and recycling.

  • Material choices emphasize durability and recyclability, supporting circular economy pathways at end-of-life.

Key products in low carbon design

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