1. VarioVAP: A centralized solution for multiple waste heat streams
2. Applications of VarioVAP heat recovery
3. VarioVAP: Multi-source heat recovery in a single unit
4. Maximize waste heat recovery – integrated or standalone
5. Heat source requirements for VarioVAP operation
7. Conclusion: multi-source heat recovery for zero waste heat
At the core of the VarioVAP system is an innovative plate falling-film evaporator, engineered specifically for utilizing multiple waste heat sources simultaneously. Instead of utilizing each source separately, VarioVAP consolidates both large and small waste heat flows from various processes into a single, centralized recovery unit. This allows the system to tap into heat sources that were not used effectively before.
The VarioVAP system can function either as a standalone heat exchanger system or as part of an integrated process solution in combination with Mechanical Vapor Recompression (MVR) – an open heat pump concept. Unlike traditional heat pump systems, which typically require a separate heat pump for each individual source – such as a distillation column or a flash tank – VarioVAP enables the integration of multiple waste heat streams into one single heat pump.
The VarioVAP system establishes a groundbreaking foundation for the efficient and economical recovery of multiple waste heat sources within a single, centralized solution and thus setting new standards in industrial energy efficiency.
With the VarioVAP system, near-total waste heat utilization ("Zero Waste Heat") becomes a reality. Even low-grade heat flows that were previously discarded can now be converted into fresh steam. The underlying technology unlocks entirely new opportunities for sustainable and cost-effective energy utilization in industrial operations.
Thanks to its flexible and high-efficiency technology, the VarioVAP system enables effective waste heat recovery across a wide range of industrial scenarios – from individual large-scale production facilities to multi-tenant industrial parks.
The greatest potential for the VarioVAP system lies in large-scale industrial plants, particularly those utilizing thermal separation processes. Its cross-industry applicability allows it to convert waste heat from operations such as distillation, evaporation, or drying into valuable steam. This makes it especially advantageous in energy-intensive sectors where substantial amounts of waste heat are typically lost – such as the chemical industry, food and beverage manufacturing, pulp and paper production, and metallurgical processing.
A particularly promising area of application is industrial parks, where multiple companies can benefit from shared waste heat recovery. The VarioVAP system allows for the central collection of diverse heat streams, which can then be reused within the same production processes or exported into municipal district heating networks.
Advantages for industrial parks:
Figure 1: Example image of a VarioVAP system. © GIG Karasek
The innovative waste heat recovery system combines multiple heat sources into one compact, integrated unit. Each individual heat source is routed through separate, fully welded lamellae, ensuring that vapors and condensates remain isolated and product purity is maintained. Thanks to its closed, gasket- and seal-free design, even explosive vapors can be safely processed in combination with non-explosive media. The vertical configuration minimizes space requirements and allows for flexible integration into existing plant layouts.
Compared to conventional designs, the technology offers three major advantages:
Figure 2: VarioVAP waste heat recovery for four heat sources. © GIG Karasek
The VarioVAP system offers a flexible and cost-effective solution for industrial waste heat recovery – either as an integrated process component or as a standalone heat exchanger. It reduces primary energy consumption, boosts overall energy efficiency, and lowers operating costs.
In this configuration, the VarioVAP system is seamlessly integrated into existing process lines without disrupting ongoing operations. While the primary process continues as usual, VarioVAP captures available waste heat and converts it into usable energy.
Simple integration
Installation requires minimal effort with primarily requiring a connecting supply line (vapors or fluids) to the VarioVAP system and interfacing with the existing plant infrastructure.
Key Advantages
How it works
Economic efficiency
The cost per ton of steam produced by mechanical vapor recompression decreases with higher throughput, as compressing larger volumes is inherently more energy-efficient than handling smaller quantities. By combining multiple heat sources into one system, the overall efficiency increases, thus boosting the economic viability of the VarioVAP solution even further.
Figure 3: The functional principle of multi-source waste heat recovery through a VarioVAP system. © GIG Karasek
VarioVAP can also be operated without a compressor, functioning solely as a high-efficiency heat exchanger. This stand-alone solution is ideal for customers who do not require steam generation but still want to recover heat from multiple sources to heat a secondary medium. Instead of installing three separate heat exchangers, the system consolidates all sources into a single unit, saving space, cost, and engineering complexity.
To fully utilize its heat recovery potential, the VarioVAP system requires certain basic conditions from the connected heat sources:
A key advantage of the VarioVAP system is its reliable performance under partial load. Even if one heat source is unavailable, the remaining heat flows continue to be recovered and utilized efficiently.
Figure 4: Overview of key benefits with a VarioVAP system. © GIG Karasek
The VarioVAP system is an innovative, forward-thinking solution for industrial waste heat recovery. By transforming excess heat into a valuable energy resource, it is ideally suited for large-scale production facilities and multi-tenant industrial parks. Through the consolidation of multiple heat sources, VarioVAP minimizes thermal losses and paves the way toward true Zero Waste Heat.
The benefits are convincing: the utilization of waste heat reduces primary energy consumption und thus lowers operational CO₂ emissions. Meanwhile the demand for fresh steam and cooling water decreases, conserving resources and lowering costs.
In short, the VarioVAP system offers a unique combination of sustainability, efficiency, and economic performance, and sets a new benchmark for energy-conscious industries of the future.