Stem PowerTrack™ Scales Norbut Solar Farms’ Community Solar Development and EPC Growth

businesswire 8 months ago

Stem (NYSE: STEM), a global leader in AI-enabled clean energy software and services, today announced that Norbut Solar Farms (NSF), a leading community solar...
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layersDaily Sustainability Digest

Published about 19 minutes ago



Sustainability across the built environment is maturing into measurable performance. Severe water stress now defines sustainable construction goals, influencing how developers evaluate hydrology, slope, and habitat as parameters within sustainable building design. Integrating ecological data into early-stage planning aligns assets with environmental sustainability in construction and supports a lower carbon footprint of construction at the urban scale. Resilient, resource-efficient construction must address both embodied carbon in materials and whole life carbon outcomes through standardised methodologies.

Equitable housing and regeneration in North America illustrate life cycle cost and whole life carbon assessment principles applied beyond assets to communities, embedding sustainable building practices that amplify social and environmental value. The shift from innovation pilots to industrialised delivery signals a move toward life cycle thinking in construction, ensuring that eco-design for buildings not only delivers net zero carbon buildings but also supports circular economy in construction objectives.

Corporate real estate renewals, such as the transformation of the Redmond tech campus, reveal that low carbon design and net zero whole life carbon strategies are redefining performance expectations. High-performing, energy-efficient buildings now embody the integration of BREEAM standards and sustainable material specification, moving from concept to tangible execution. Builders are adapting to complex supply chains and uneven decarbonisation by specifying low carbon construction materials and renewable building materials that align with environmental product declarations (EPDs).

To decarbonise the built environment, firms must adopt circular construction strategies and measure every project’s building lifecycle performance with rigour. Green construction that prioritises embodied carbon reduction, end-of-life reuse in construction, and circular economy approaches is becoming the benchmark for carbon neutral construction worldwide. The next phase of sustainable urban development depends on linking design, procurement, and delivery through consistent whole life carbon accounting and transparent sustainability metrics.

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