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Net Zero Approach

From Net Zero Roadmap to Implementation – A Lifecycle Approach

Industrial manufacturers around the world are intensively addressing the question of how to make net-zero operation of their plants possible. Our systematic approach provides our customers with one-stop solutions that support them on the path to a more sustainable future. We work closely with our partners to establish sustainability goals and deliver customized solutions that actively optimize energy use, integrate renewable energy sources and enhance operational processes.

With our comprehensive product portfolio, we bring these solutions to life and ensure their ongoing efficiency through operational and maintenance services. Bilfinger is the partner of choice for industry when it comes to driving sustainability and achieving net zero objectives.

 

Take a look at our Net Zero Approach Checklist to discover if you need support integrating Net Zero into your strategy.

Net Zero Approach Checklist

Industry has outlined its goals and established initial high-level plans; however, a tangible, actionable plan with specific measures is often missing. In addition to providing the crucial information to close this gap, Bilfinger also has all the expertise needed to effectively implement the identified measures.

Jordi Koes

Technical Lead Net Zero

At Bilfinger, we remain committed to driving sustainability and helping our customers achieve their net-zero objectives. With an increasing global focus on decarbonization, our approach is designed to support industrial manufacturers in their journey towards achieving net zero operations; from the initial business idea through to project implementation.

Maja Égic

Global Business Development Lead Net Zero Approach

Visual showcasing the Net Zero Approach

Download our brochure

Download our brochure for more information about the Net Zero Approach. 

Brochure

Key Components of the Net Zero Approach

 

The Net Zero Approach is a comprehensive solution developed by Bilfinger to address the complex challenges associated with achieving net zero operations. It consists of three main phases:

 

Development of a Net Zero Roadmap

We work closely with our customers to develop a customized roadmap outlining the steps needed to achieve Net Zero operations. This phase involves assessing current operations, setting sustainability goals and identifying key measures to be implemented. These measures are designed at feasibility level (+/- 40%) and prioritized in a timeline, resulting in the final output: the roadmap. 

Design & Build

Once the roadmap is established, our team of experts design tailored measures to address energy efficiency, renewable energy integration, and operational optimization. These measures are then implemented on site.   

Operate & Maintain

Our maintenance and asset management services ensure optimal efficiency of the implemented systems during operation. This includes monitoring of measures during operation.

Added Value:
  • A unique modular approach to your net zero strategy from single services to “all-in-one” solutions
  • Global partner in your sustainability development path with local experts and knowledge

References

Expert Articles

Heat pumps and Mechanical Vapor Recompression solutions for Net Zero

Volatile global energy markets have pushed natural gas prices to uncomfortable heights, emphasizing the urgent need for industries to rethink their energy strategies. One of the most impactful shifts underway is the electrification of industrial heat using industrial heat pumps and Mechanical Vapor Recompression (MVR) systems. These technologies make it possible to significantly reduce gas dependency, lower CO₂ emissions, and create long term resilience in energy intensive processes.

A practical approach to decarbonising industrial heat follows three steps:

  1. Reduce energy consumption
  2. Renewables and Replace
  3. Transition  

Heat pumps and MVR systems fall within the second category as they replace fossil fuel consumption by using waste heat and electricity. They unlock the ability to recover, upgrade, and reuse thermal energy that would otherwise be lost. Often with remarkable efficiency.

Heat Pumps: Moving heat to Higher Value

Industrial heat pumps transfer heat from a lower temperature to a higher one using electrical energy. Most systems rely on a vapor compression cycle, consisting of evaporating, compressing, condensing, and expanding a refrigerant. Their performance is typically expressed as a Coefficient of Performance (COP), which indicates how much thermal energy is delivered per unit of electricity consumed.

Depending on the temperature lift, industrial heat pumps generally achieve COP values between 2 and 6, making them two to six times more efficient than electric boilers, which generally operate at a COP of approximately 1. Modern developments now allow heat pumps to reach temperatures of 200–250°C, significantly expanding their industrial relevance.

MVR Systems: Upgrading Low Pressure Steam

Mechanical Vapor Recompression uses a compressor to elevate low-pressure waste steam, such as vacuum steam or steam around 1 bar, to a higher pressure and temperature suitable for reuse in production.

During compression, the steam heats up substantially. Water is often injected at the inlet of the compressor to manage superheating. The result is usable process steam with very high efficiency. MVR systems can achieve high-end steam pressures, in some cases up to 65 bar, making them suitable for heavy industrial applications.

Because MVR relies on electricity rather than gas and reduces energy consumption, it can dramatically cut CO₂ emissions while improving operational stability in a volatile energy market.

Temperature Levels Determine the Business Case

The feasibility of heat pumps and MVR systems depends on two main variables:

  • Temperature of the heat source (waste heat available)
  • Required delivery temperature

A higher source temperature dramatically improves efficiency and reduces heat costs. A heat pump using high temperature waste heat often produces heat at a far lower cost than a gas boiler. At lower waste heat temperatures, the economics shift but high efficiencies are still possible at moderate temperature lifts.

Reassessing process requirements can also unlock opportunities. Many industrial steam networks operate at conservative pressures (e.g., 8–10 bar), even when processes could run at lower pressures, for example 5 bar. Lowering the required temperature or pressure can significantly strengthen the business case for electrification via heat pumps and MVR systems.

The Path Forward

Industrial heat electrification is no longer a futuristic concept. It is an essential step for companies aiming to reduce energy costs, improve sustainability, and shield themselves from volatile fossil fuel markets. With rapid technological advancements and strong financial incentives, heat pumps and MVR systems now offer viable, scalable solutions for a wide range of industrial processes.

Organizations that embrace this shift today will be better positioned to meet Net Zero targets, secure energy resilience, and future‑proof their production environments.

Webinars

On our dedicated webinar page, you will find an overview of webinars in which our experts explore topics such as the approach to net zero operations, heat pumps and MVR solutions and the impact of maintenance towards net zero. 

Explore our webinars and discover your next step towards reaching your Net Zero goals. Please note, our webinars are only available in Dutch.

Webinars

Any questions?
We are looking forward to your message
Maja Egić

Global Business Development Lead Net Zero Approach

Contact today