Science educator Bill Nye discusses a newly released study that indicates the area of Greenland’s ice loss in the past three decades is roughly 36 times the size of New York City.
Warmer air temperatures have driven ice loss, which has in turn raised land temperatures. That has caused the melting of permafrost, a frozen layer just beneath the Earth’s surface and found in much of the Arctic, and that melt releases planet-warming carbon dioxide and methane, contributing to more global warming.
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Severe Himalayan flooding exposed systemic infrastructure risk, cutting Nepal’s hydropower output by more than a tenth and confirming that resilience is fundamental to sustainable construction and environmental sustainability in construction.
Catchment-scale planning, diversified energy portfolios and redundancy in critical systems must sit alongside siting, access and social equity to keep projects viable. Policy momentum is shifting toward integrating adaptation into core planning, with procurement and finance required to price climate risk across whole asset lives through whole life carbon assessment, lifecycle assessment and life cycle cost analysis.
Targets for whole life carbon and embodied carbon should be locked into briefs and contracts, with BREEAM and BREEAM v7 used to embed building lifecycle performance, life cycle thinking in construction and sustainable building design.
Reconstruction that embraces green infrastructure, nature-based buffers and community-led recovery can avoid the “build–break–rebuild” loop. Circular economy in construction, circular construction strategies and end-of-life reuse in construction should guide material choices, supported by environmental product declarations (EPDs), sustainable material specification and low embodied carbon materials to cut the carbon footprint of construction. Eco-design for buildings, low carbon design and resource efficiency in construction are now baseline for energy-efficient buildings, green construction and eco-friendly construction.
US safety clearance for a mile‑deep nuclear reactor design signals decentralised, climate-resilient, low‑carbon power for energy‑intensive cement and steel, hardening supply for data‑rich construction workflows. Reliable clean baseload can accelerate decarbonising the built environment, enable net zero carbon buildings and net zero whole life carbon pathways, support carbon neutral construction and deliver measurable carbon footprint reduction with renewable building materials and green building materials in low carbon building programmes.
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