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            • Oil Market Report - June 2026

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            • Sheltering From Oil Shocks

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              World Energy Outlook 2025

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              Flagship report — 12 November 2025

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              All content Reports Data & Tools News & Events
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                • Country

                Hong Kong

                Hong Kong

                • OverviewOverview
                • Energy mixEnergy mix
                • EmissionsEmissions
                • ElectricityElectricity
                • + 5 pages

                Hong Kong Flag
                • Fuel report

                • Feb 2026

                Electricity 2026 Executive summaryExecutive summary

                Electricity demand is set to grow strongly through 2030 as the Age of Electricity takes hold Global electricity demand is forecast to increase at a brisk average annual rate of 3.6% over the 2026-2030 forecast period, supported by rising consumption from industry, electric vehicles, air conditioning and data centres. Worldwide electricity demand grew by 3% year-on-year in 2025. This followed growth of 4.4% in 2024, when intense heat waves and strong industrial activity in many regions boosted electricity use. Looking ahead, annual demand growth over the next five years is set to be 50% higher…

                • Executive summaryExecutive summary
                • DemandDemand
                • SupplySupply
                • GridsGrids
                • + 4 pages

                The photo depicts a View of power poles and lines with buildings and mountains in background shutterstock 2325254401
                • Policy

                • Netherlands

                • 2020

                Minimum CO2 price electricity production

                In the coalition agreement Rutte-3 and the climate agreement and letter of the government, the government announced its plans to introduce a gradually increasing minimum national CO2 price for CO2 emissions from electricity production, such in addition to the EU-ETS. 

                • Fuel report

                • May 2025

                Outlook for Biogas and Biomethane Assessing the sustainable potential and cost of feedstocks for biogas and biomethaneAssessing the sustainable potential and cost of feedstocks for biogas and biomethane

                Feedstock assessment This assessment considers over 30 types of feedstocks for biogases. They can be broadly grouped together as crop residues, animal manure, biowaste and woody biomass. We assess feedstocks that can be processed without direct competition with food for agricultural land or animal feed, and that do not have any other adverse sustainability impacts. Biogas and methane yields are key indicators of how suitable a feedstock is for energy production. Biogas yield refers to the total volume of gas produced from a feedstock through anaerobic digestion, primarily methane (CH₄) and CO₂. Methane yield, by contrast, accounts only for the…

                • Key findingsKey findings
                • Introduction to biogas and biomethaneIntroduction to biogas and biomethane
                • Assessing the sustainable potential and cost of feedstocks for biogas and biomethaneAssessing the sustainable potential and cost of feedstocks for biogas and biomethane
                • Key issues affecting biogas and biomethane projectsKey issues affecting biogas and biomethane projects
                • + 1 pages

                Outlook For Biogas And Biomethane Shutterstock 180495239
                • Topic

                Artificial Intelligence

                Artificial intelligence (AI) is emerging as one of the most consequential technologies of our time. In recent years, the capabilities of AI systems have grown quickly due to improved computing power, a boom in data availability and breakthroughs in the design of AI models, leading to rapid adoption by both businesses and individuals. Though significant uncertainties remain, AI has the potential to transform the energy sector in the coming decade. It is set to drive a surge in electricity demand from data centres around the world while also unlocking significant opportunities to cut costs, enhance competitiveness and reduce emissions.To…

                • Flagship report

                • Jun 2025

                World Energy Investment 2025 How we track investment in energyHow we track investment in energy

                Tracking energy investment The way investment is measured across the energy spectrum varies, largely because of differences in the availability of data and the nature of expenditures. This document highlights the methodology used to ensure that the estimates are consistent and comparable across sectors in the World Energy Investment 2025 (WEI 2025) report and other publications from the International Energy Agency.The IEA measures investment as the ongoing capital spending on assets. For some sectors, such as power generation, this investment is spread out evenly from the year in which a new plant or upgrade of an existing one takes…

                • Executive summaryExecutive summary
                • Source, flows and destination of global energy-related investment spendingSource, flows and destination of global energy-related investment spending
                • How we track investment in energyHow we track investment in energy
                • United StatesUnited States
                • + 9 pages

                World Energy Investment 2025 Pexels Pixabay 531360
                • Sector

                Renewables

                Ensure renewable energy policy stability and predictability
                For all renewable power and heat technologies, long-term targets and policy stability are essential to ensure investor confidence and continued growth. At the same time, policies need to adapt continuously to changing market conditions to achieve greater cost-competitiveness and to improve the integration of renewables into the energy system. 
                Focus on an energy system perspective
                Achieving a high penetration of renewable power and heat technologies is a necessary condition to decarbonise many carbon-intensive sectors of the economy, including heavy industry, construction and transport. The expansion of renewable hydrogen use, emissions…

                • Report

                • Jul 2025

                Electricity Mid-Year Update 2025 Demand: Global electricity use to grow strongly in 2025 and 2026Demand: Global electricity use to grow strongly in 2025 and 2026

                Global electricity demand is forecast to increase by an average annual 3.3% in 2025 and by 3.7% in 2026, a moderation from 4.4% in 2024 but still some of the highest growth rates observed over the last decade. This is a slight downward revision from our previous forecast in February 2025 of 4% growth for this year and 3.8% in 2026. The change is partly due to the IMF's downgrade of the global GDP growth outlook compared with its January 2025 update amid elevated uncertainty surrounding trade tariffs and economic prospects. Despite these downside risks…

                • Executive summaryExecutive summary
                • Demand: Global electricity use to grow strongly in 2025 and 2026Demand: Global electricity use to grow strongly in 2025 and 2026
                • Supply: Renewables grow the most, followed by gas and nuclearSupply: Renewables grow the most, followed by gas and nuclear
                • Emissions: Power generation CO2 emissions are plateauingEmissions: Power generation CO2 emissions are plateauing
                • + 1 pages

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                • Report

                • Oct 2025

                Breakthrough Agenda Report 2025 HydrogenHydrogen

                State of the transition Emissions Hydrogen production today is associated with emissions of almost 1 300 Mt CO2 equivalent (CO2-eq) and there has been no progress in reducing them – in contrast, emissions have edged up in recent years.However, the increase in global production (which neared 100 Mt in 2024) has kept the global average emissions intensity of hydrogen production almost constant over the past 5 years. Costs Renewable and low-carbon hydrogen remains more expensive than hydrogen from unabated fossil fuels.The cost gap has increased recently due to slower-than-expected deployment, inflation and the fall in fossil fuel prices.Electrolyser…

                • Executive summaryExecutive summary
                • PowerPower
                • HydrogenHydrogen
                • Road transportRoad transport
                • + 4 pages

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                • Technology report

                • May 2026

                Artificial intelligence and EVs

                GEVO 2026 - Chapter 8 Progress in AI and computing power is disproportionately benefiting EVs, particularly for automated driving and integrated vehicle control. Sensors and chips integrate well with the stable, high-voltage power supply of EV batteries. At the same time, the benefits of AI and increased computing power are not exclusive to EVs. AI‑enabled energy management systems are increasingly used to optimise hybrid vehicles, and AI techniques are accelerating the design, testing and optimisation of all vehicles. Advances in AI underpin progress in autonomous vehicles Just two decades ago, state-of-the-art autonomous vehicles were confined to test…

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