Innovation Hub

At the heart of our Research & Development department lies the IRCI Innovation Hub: a space where the experience we have gained in photovoltaics since 2006 is translated into concrete, robust, and replicable solutions. Here we design, test, and perfect systems and structures designed to ensure performance, safety, and reliability over time, with an integrated approach that follows every phase: from the idea to the design, through to construction and installation.
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Roofing fastening systems

For years, IRCI has been developing and manufacturing autonomous mounting systems for fixing photovoltaic panels on different types of roofs. The work is the result of a process of design and continuous testing, with solutions designed to be reliable and adaptable to different application contexts.

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Ground structures and trackers: advanced solutions that comply with regulations

Over time, we have developed a complete range of structures for ground-mounted photovoltaic systems, including:

  • Fixed structures
  • Variable tilt systems, manually adjustable according to the season
  • Facilities on solar trackers

Each solution is designed in compliance with regulations and, in particular, with NTC 2018, with the aim of combining efficiency, resistance, and practicality of management.

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BESS experimentation

In the context of the energy transition, we have dedicated a specific area to the experimentation and testing of BESS (Battery Energy Storage Systems) from leading manufacturers. The aim is to verify the consistency between the performance stated in the datasheets and actual behavior under conditions of use, evaluating aspects such as capacity, efficiency, load response, and operational stability.

Through testing and measurements, we collect useful data to guide design choices and support the integration of storage systems into industrial plants and contexts, using technical and verifiable criteria.

Distinctive value:
a single point of contact, maximum reliability.

Our strength lies in our ability to provide a product that is conceived, designed, built, and installed by a single point of contact. This model simplifies processes, reduces complexity, and has become synonymous with reliability for our clients, with the aim of combining efficiency, durability, and ease of management.

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Molecular Dissociation

IRCI has always worked towards the valorization of organic by-products and the recovery of materials that would otherwise be destined for landfill.

Building on the plant engineering expertise developed over time, in 2017, an initial experimental prototype was created for the treatment of organic waste and end-of-life materials, with the aim of:

  • Obtaining syngas, which can be used in specific production processes.
  • Break down the incoming material, reducing its volume;

The development of the prototype has made it possible to refine the disintegration process, making it applicable in specific industrial contexts.

This process led to the design and construction of a plant dedicated to the thermal disintegration of the organic component contained in WEEE, in particular shredded electronic boards, equipped with a dedicated supervision system.

The goal is to enhance the value of the treated waste, with a reduction of up to 80% in the amount destined for landfill and the recovery of valuable materials present inside the boards.

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Energy Efficiency

IRCI supports companies in a concrete process of reducing consumption and decarbonizing factories and production areas. We are constantly searching for solutions that can be applied to the industrial world: our method is proactive, based on analysis, experimentation, and continuous improvement, in order to identify real opportunities and introduce more effective technologies and approaches. The work starts with a technical assessment of the existing situation: analysis of consumption, plant configuration, critical issues, and areas for optimization. On this basis, we engage in direct discussion with the customer about the objectives: what to optimize, what results to achieve, and what priorities to set.

From here we define an intervention strategy and integrate mechanical and electrical expertise to develop tailor-made solutions: optimization of lines and systems, targeted upgrades, integrations, and automations where useful.

The objective is clear:
Greater operational efficiency, less energy wasted, lower environmental impact, through measurable interventions consistent with the plant’s daily needs.

This journey has also been made possible by a young and competent technical team, capable of combining rapid development, solid engineering foundations, and openness to innovation, transforming operational needs into concrete and verifiable actions.

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Irciponic

It promotes agricultural innovation through aquaponics technology, combining fish farming with water recirculation and hydroponics to produce plants and animals in a sustainable way. This practice reduces water consumption, utilizes the nutrients produced by the animals, and purifies the water thanks to the plants, improving the environmental quality and productivity of agricultural areas.

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