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Drying Tops EU Energy Agenda: What Eurostat’s 2024 Data Means for the SteamDry Project

In May 2026, Eurostat released updated figures on final energy consumption in EU industry, and the message is clear: energy‑intensive sectors like pulp and paper remain central to Europe’s decarbonisation challenge, and opportunity. For the SteamDry project, which targets drastic energy cuts in paper and board drying, these new data strongly confirm that focusing on drying is the right lever at the right time.

Industry’s energy footprint in the EU

In 2024, industry accounted for 23.9% of the EU’s final energy consumption, making it the third‑largest energy user after transport and households. Electricity and natural gas together covered almost two‑thirds of industrial final energy demand (33.3% and 31.9% respectively), while fossil fuels in various forms still represented roughly half of the sector’s total energy use.

Over the past three decades, industrial energy consumption has decreased from 12 795 PJ in 1990 to 8 835 PJ in 2024, a reduction of around 30.9%, driven by efficiency gains and structural changes. At the same time, renewables and biofuels used in industry more than doubled in absolute terms, rising from 497 PJ to 999 PJ between 1990 and 2024, underlining a gradual but steady move towards cleaner energy sources.

Where pulp and paper stands

Eurostat’s disaggregated statistics show that a small group of sectors dominates industrial energy use: chemicals and petrochemicals, non‑metallic minerals, food, beverages and tobacco, paper, pulp and printing, and iron and steel. In 2024, the paper, pulp and printing industry consumed 997 PJ, equal to 12.1% of total final energy use in EU industry, placing it among the top five energy‑using sectors.

For a project like SteamDry, this confirms the strategic importance of focusing on paper and board drying, where relatively modest percentage gains can translate into large absolute energy and emissions reductions. It also aligns the project directly with EU policy attention on energy‑intensive, trade‑exposed industries under the Green Deal, Fit‑for‑55 and REPowerEU initiatives.

Drying: the key hotspot in papermaking

Within pulp and paper production, drying is the single most energy‑intensive process step, typically responsible for the majority of thermal energy demand on a paper machine. Conventional drying relies on large quantities of steam, often generated by burning fossil fuels or biomass, which links mills’ cost structure and carbon footprint directly to fuel and carbon prices.

By targeting the drying section, the SteamDry project is addressing the main energy hotspot in a typical paper mill. This process‑level focus matches the direction of Eurostat’s new industrial energy statistics, which provide more detailed breakdowns by sector and are designed to support precisely such targeted efficiency and fuel‑switching measures.

How SteamDry responds to the EU energy data

SteamDry develops and demonstrates superheated steam drying (SSD) for paper and board, with the goal of cutting energy use in drying by up to 60%, corresponding to around 40% savings across the whole production line. SSD uses a closed loop of superheated steam instead of hot air, enabling nearly complete recovery of latent heat and highly efficient reuse of energy within the process.

This approach directly supports the trends and needs highlighted by Eurostat’s statistics and EU policy:

  • It reduces dependence on natural gas and other fossil fuels for process heat by enabling a more electrified, steam‑based drying concept.
  • It improves overall energy efficiency at mill level, contributing to the long‑term downward trend in industrial energy use while allowing output to grow.
  • It facilitates integration with renewable electricity and advanced heat pumps, aligning with REPowerEU’s call to replace gas, oil and coal with clean energy in industrial processes.

In the long term, SteamDry estimates an energy savings potential of about 127 TWh per year in Europe, equivalent to roughly 6 billion euros in annual energy cost savings for paper and board manufacturers. On a global scale, the potential reaches approximately 870 TWh per year, underscoring the relevance of the technology far beyond the EU market.

A timely signal for mills and policymakers

Eurostat’s 2024 industrial energy data were extracted in May 2026, and the next planned article update is scheduled for May 2027. That timeline overlaps with the SteamDry project, which runs from January 2024 to June 2027 and aims to bring SSD from concept to pilot‑scale demonstration during this period.

If pulp and paper mills use this window to accelerate investment in next‑generation drying and heat‑recovery technologies, the 2027 update of “Final energy consumption in industry, detailed statistics” could be the first to show a visible change in the energy profile of the paper, pulp and printing sector. For the SteamDry consortium, this would be tangible evidence that superheated steam drying is helping turn high‑level EU energy statistics into real‑world progress on efficiency, competitiveness and climate neutrality.

Renewables Lead the Way: Energy Trends in the EU Pulp and Paper Industry (2019–2023)

New data from Eurostat, the statistical office of the European Union, reveals a notable transformation in the energy mix of Europe’s pulp and paper industry. Over the past five years, the sector has not only reduced its total energy consumption but has also accelerated its shift toward renewable energy sources—most significantly in the manufacture of paper products.

This article highlights the key findings from Eurostat’s most recent update on final energy consumption in industry, with a focus on the pulp and paper segments. It examines the fuel mix evolution between 2019 and 2023 and outlines what these changes mean for the future of sustainable manufacturing in Europe.

Overview of Industrial Energy Use in the EU

In 2023, total final energy consumption in the EU’s industrial sector stood at 8,990 petajoules (PJ), a decrease of 5.3% from 2022, according to Eurostat. This continued a longer-term downward trend, driven by rising energy efficiency, structural shifts in production, and the broader economic context.

The industrial energy mix remains dominated by electricity (32.6%) and natural gas (31.3%), with renewables and biofuels steadily increasing their share to 11.2% in 2023.

Focus: Pulp and Paper Industry

The paper, pulp, and printing industry accounted for 14.3% of final energy consumption in EU industry in 2023, totaling 1,225 PJ. The energy use patterns within this industry vary significantly depending on the type of production activity.

Manufacture of Pulp

In pulp manufacturing, the sector continues to rely heavily on bio-based fuels. In 2023, renewables and biofuels supplied 302.5 PJ, accounting for 70.3% of total energy consumption in this sub-sector. This long-standing dominance is largely due to the use of black liquor and wood residues for combined heat and power generation within integrated pulp mills.

Manufacture of Paper and Paper Products (Excluding Pulp)

In a major development, renewables and biofuels became the largest single energy source in the manufacture of paper and paper products (excluding pulp) for the first time in 2023. With 246.8 PJ consumed, they accounted for 33.9% of the energy mix, surpassing both electricity (32.6%) and natural gas (20.3%).

Five-Year Trends: 2019–2023

From 2019 to 2023, the pulp and paper sector has demonstrated clear momentum toward a more sustainable energy profile:

  • Overall industrial energy use declined steadily, reflecting both demand-side efficiency and structural changes.
  • Renewables and biofuels increased their share across the board, particularly in paper production.
  • Electricity remains a vital part of the energy mix, but its share has been matched or overtaken by renewables in certain sub-sectors.
  • Natural gas usage declined, influenced by fuel switching and increased energy costs in recent years.

What’s Driving the Shift?

  1. Biomass Utilization in Pulp Mills
    Pulp production has long benefited from self-generated bioenergy through the combustion of black liquor and biomass waste, making it a frontrunner in renewable energy use within industry.
  2. Decarbonization and Energy Transition Policies
    European energy policy, including the Renewable Energy Directive and Emissions Trading System (ETS), has encouraged the use of renewables, especially in heat-intensive sectors like paper manufacturing.
  3. Strategic Investments by Industry
    Manufacturers are investing in biomass boilers, recovery systems, and electrification technologies to reduce dependence on fossil fuels and meet tightening emissions regulations.

Energy Mix in Paper and Pulp: 2023 Snapshot

Sub-sector

Energy Source

Share of Final Energy Use

Manufacture of pulp

Renewables and biofuels

70.3% (302.5 PJ)

Paper and paper products (excl. pulp)

Renewables and biofuels

33.9% (246.8 PJ)

Paper and paper products (excl. pulp)

Electricity

32.6% (236.9 PJ)

Paper and paper products (excl. pulp) Natural gas

20.3% (147.3 PJ)