A rapid surge in global energy demand is outstripping grid capacity, transforming the green transition into a broader "energy expansion" that could delay industrial decarbonisation, according to a report by McKinsey & Company. The consultancy's Global Energy Perspective 2026 reveals that global energy demand grew by 2.7% in 2025, driven by industrialisation, electrification, and emerging technologies. This growth is putting unprecedented pressure on power grids, which are increasingly becoming the primary bottleneck for carbon reduction efforts.
The report highlights that while renewable energy capacity continues to expand, grid infrastructure is failing to keep pace. Without significant investment in transmission and distribution networks, businesses attempting to electrify their operations or switch to low-carbon power sources may face prolonged connection delays and volatile energy pricing.
Why It Matters for Recyclers and Waste Managers
For UK waste management companies and Turkish plastics recyclers, this energy squeeze has direct operational and financial consequences. Mechanical and chemical recycling are highly energy-intensive processes. In Türkiye, where recyclers are scaling up operations to meet European demand for high-quality recycled polymers, rising electricity costs and grid reliability are critical concerns. Similarly, UK waste processors looking to install advanced sorting or reprocessing lines frequently face multi-year delays for grid connections.
Furthermore, as brands demand lower Scope 3 emissions, recyclers must decarbonise their own Scope 2 (purchased electricity) profiles. If national grids remain heavily reliant on fossil fuels to meet surging demand, or if green energy cannot be integrated due to grid constraints, recyclers will struggle to lower their carbon intensity, potentially impacting their competitiveness in the European market.
Practical Takeaway
Recycling companies should conduct comprehensive energy audits and consider investing in on-site renewable generation, such as rooftop solar arrays, combined with battery storage. Securing self-generated power not only mitigates the risk of grid-related operational disruptions but also directly lowers the carbon footprint of the recycled resins produced, safeguarding compliance with future carbon reporting standards.