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Integrated Plant Design for Waste Management and Recovery

Multidisciplinary executive design of mechanical, electrical and fire-fighting systems for a highly reliable industrial infrastructure.

Integrated Plant Design for Waste Management and Recovery
Executive design of technological systems for an industrial plant dedicated to waste management and recovery, including treatment areas, operating sheds and office blocks. An intervention with a high technical content, in which the plants constitute the primary functional infrastructure of the entire system.
Typology Industrial
Anno 2022
State Completed
Activity Executive design of electrical, mechanical and fire-fighting systems
Focus Guarantee of continuity of service even in the event of natural events
Design challenges for business continuity
The design required an approach typical of complex industrial plants, oriented to operational continuity, reliability and management in critical conditions. The reduction of downtime, the possibility of reconfiguring networks and the adoption of robust and redundant solutions, based on real operating scenarios, were fundamental.
Integrated technology solutions

The entire plant system was developed according to a logic of multidisciplinary integration, coordinating mechanical, electrical, hydraulic and fire-fighting systems in a single design vision oriented to operational continuity, safety and reliability of the industrial complex.

  • The air conditioning has been entrusted to a VRF system capable of simultaneously managing the different functional zones, integrated with ventilation and ventilation systems dedicated to production environments. Particular attention has been paid to thermohygrometric control, to the optimization of fluid distribution and to the containment of vibrations and
  • noise.
  • The water and sanitary networks have been designed with modular collector and sectioning systems, allowing for targeted maintenance without interrupting the service. Similarly, the exhaust networks have been sized based on the actual operating conditions, ensuring high performance and reliability
  • over time.
  • For fire protection, a highly redundant infrastructure has been developed, consisting of hydrant and sprinkler systems, double ring backbones, dedicated pump groups and a dedicated water reserve, sized to respond to particularly severe risk scenarios.
  • The electrical infrastructure includes medium voltage power supply, transformer cabins, low voltage TN-S distribution, generators and UPS systems for continuity of service, as well as data networks, fire detection systems and supervision and control platforms.
  • The entire project was developed through an interdisciplinary coordination process supported by BIM models, which allowed the preventive analysis of interferences, the optimization of technical spaces and an effective planning of the construction phases.
Benefits of the adopted solutions
An industrial plant designed to ensure operational continuity, safety and reliability over time. The solutions adopted ensure high maintainability, constant performance and operation even in conditions of intensive use. The integrated approach and the use of redundant systems help to reduce the risks of service interruption, ensuring the efficiency and resilience of the entire infrastructure.