Bioeconomy = economy powered by nature š±š
With our new EU Bioeconomy Strategy we want to drive green growth, competitiveness and resilience across Europe by:
šæstrengthening its strategic autonomy
š¢ļøreplacing fossil-based materials and products
š·creating jobs and lead the global shift to clean industries
By using renewable biological resources from land and sea and providing alternatives to fossil-based and imported raw materials, the EU will move forward towards a more circular and decarbonised economy.
Did you know that research and innovation is playing a key role? It is helping use the vast potential of our biological resources, replacing fossil fuels with sustainable solutions.
Let's make Europe a leader for bio-based innovations for a better future!
Read more in our bio.
#Bioeconomy #CircularEconomy
The UK governmentās decision to end licensing for new oil and gas exploration redefines the direction of sustainable construction and environmental sustainability in construction policy. The shift underpins a broader movement toward low carbon design, influencing energy security strategies and sustainable building design. By constraining new fossil fuel development, the state signals commitment to net zero Whole Life Carbon targets across infrastructure and the built environment. These regulatory measures align with life cycle thinking in construction and provide a framework for Whole Life Carbon Assessment, helping developers integrate embodied carbon reduction and lifecycle assessment into early-stage planning.
Irelandās leadership in developing the EU carbon farming framework demonstrates the widening scope of carbon monetisation. This approach links rural and periāurban land use with regenerative design, Circular Economy in construction, and ecoāfriendly construction principles. The valuation of natural carbon sinks reinforces the importance of Whole Life Carbon management across green infrastructure and building lifecycle performance, encouraging endāofālife reuse in construction and measurable carbon footprint reduction throughout project delivery.
In materials science, the withdrawal of PFAS chemicals by major manufacturers such as BASF and 3M could accelerate a transition to low embodied carbon materials and renewable building materials. The change increases reliance on environmental product declarations (EPDs), sustainable material specification, and verifiable data supporting green building products. It strengthens sustainable building practices and supports circular construction strategies that prioritise resource efficiency in construction and ecoādesign for buildings.
The UKās offshore wind sector faces challenges from policy uncertainty, raising concerns over domestic green construction capacity and supply chain resilience. Loss of local production could hinder growth in energyāefficient buildings and net zero carbon buildings, undermining progress toward carbon neutral construction targets. The risk highlights the interconnectedness of low carbon building innovation, lifecycle assessment, and Life Cycle Cost analysis in safeguarding national competitiveness.
Sustainable construction now stands at a point of acceleration. With Embodied Carbon in materials under scrutiny, the Circular Economy embedded in design frameworks such as BREEAM v7 gaining ground, and new fiscal and environmental policies converging, the race to decarbonise the built environment is defined not by ambition but by execution.
Whole Life Carbon is a platform for the entire construction industryāboth in the UK and internationally. We track the latest publications, debates, and events related to whole life guidance and sustainability. If you have any enquiries or opinions to share, please do
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