The historic Egyptian city of Alexandria — the birthplace of Cleopatra — is...

CNN Climate 1 year ago

The historic Egyptian city of Alexandria — the birthplace of Cleopatra — is experiencing a "dramatic surge" in building collapses linked to coastal erosion and rising levels of the Mediterranean Sea, new research has found. Building collapses were once rare in this port city, but have accelerated from approximately one a year to a staggering 40 a year over the past decade, as sea levels rise and seawater seeps beneath city foundations, according to the study published this month by the University of Southern California. Founded by Macedonian ruler Alexander the Great more than 2,000 years ago, Alexandria is one of the oldest cities in the world and is currently among the most populated in Africa, home to 6 million people. It's also one of the most vulnerable to sea level rise, which threatens its historical heritage. Tap the link in bio for more. 📸 : Khaled Desouki/AFP/Getty Images

layersDaily Sustainability Digest

Published about 6 hours ago



Momentum in sustainable construction is now driven by tangible progress in materials and methods rather than declarations. The focus on reducing embodied carbon in materials and undertaking robust whole life carbon assessment is reshaping how developers, architects and engineers define sustainable building design. Initiatives such as the Reducing Plastics in Construction Summit reinforce the value of renewable building materials, eco-design for buildings and circular economy in construction frameworks to eliminate petroleum-based polymers and improve resource efficiency in construction.

Biobased composites, recyclable resins and modular approaches are being evaluated through lifecycle assessment tools that can accurately measure the carbon footprint of construction and inform sustainable material specification throughout each project stage. Digitisation is rapidly becoming integral to low carbon design and energy-efficient buildings. Advanced platforms now enable unified modelling of cost, performance and carbon, aligning lifecycle cost optimisation with environmental sustainability in construction.

TM2 Bygg’s software-led method illustrates how low carbon building processes built on data-driven insights help achieve net zero carbon buildings and deliver improved building lifecycle performance. At the policy level, regulators are reinforcing requirements for measurable reductions in embodied carbon and clear evidence of net zero whole life carbon outcomes. These shifts point toward an industry-wide transformation grounded in whole life carbon transparency and the adoption of BREEAM v7 and other sustainable building practices to standardise reporting.

The result is a market that values circular construction strategies, end-of-life reuse in construction and environmental product declarations (EPDs) as verification of a project’s environmental impact of construction. New renewable energy infrastructure, including next‑generation geothermal systems, could redefine the carbon footprint reduction potential of green building materials and low carbon construction materials. As baseload renewables expand, achieving carbon neutral construction and sustainable urban development becomes increasingly viable. The sector is moving beyond pilot projects toward a mature phase of green construction, integrating life cycle thinking in construction and decarbonising the built environment as core business practice.

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