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  4. Technical and Economic Approaches to Design Net-Zero Energy Factories: A Case Study of a German Carpentry Factory
 
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2025
Journal Article
Title

Technical and Economic Approaches to Design Net-Zero Energy Factories: A Case Study of a German Carpentry Factory

Abstract
As many German SMEs approach the end of their photovoltaic (PV) feed-in tariff period, the challenge of maintaining economic viability for these installations intensifies. This study addresses the integration of intermittent renewable energy sources (iRES) into production processes by proposing a method to identify and exploit industrial flexibility. A detailed case study of a German carpentry factory designed as a Net-Zero Energy Factory (NZEF) illustrates the approach, combining energy monitoring with blockchain technology to enhance transparency and traceability. Flexibility is exploited through a three-layer control system involving passive operator guidance, battery storage, and electric vehicle charging. The installation of a 40 kWh battery raises self-consumption from 50 to 70%, saving approximately EUR 4270 annually. However, this alone does not offset the investment. Blockchain-based transparency adds economic value by enabling premium pricing, potentially increasing revenue by up to 10%. This dual benefit supports the financial case for NZEFs. The framework is replicable and particularly relevant for low-automation industries, offering small and medium enterprises (SMEs) a viable pathway to decarbonization. The results align with the European Clean Industrial Deal, demonstrating how digitalization and industrial flexibility can reinforce competitiveness, sustainability, and digital trust in Europe’s transition to a resilient, low-carbon economy.
Author(s)
Lombardi, Pio Alessandro  
Fraunhofer-Institut für Fabrikbetrieb und -automatisierung IFF  
Journal
Sustainability  
Open Access
File(s)
Download (5.16 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.3390/su17177891
10.24406/publica-5624
Additional link
Full text
Language
English
Fraunhofer-Institut für Fabrikbetrieb und -automatisierung IFF  
Keyword(s)
  • blockchain technology

  • industrial flexibility

  • net-zero energy factories

  • renewable energy integration

  • sustainable manufacturing

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