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MV/LV Switchboards

MV/LV switchboards are designed to meet international standards and customized to client specifications. Our switchboard solutions are developed by our internal technical department, ensuring compliance with project requisitions and all relevant CEI and international standards.

We provide a full range of services, including planning, wiring, testing, packing, shipment, and detailed technical documentation. Our switchboards offer protection degrees of IP55, IP65, and IP66, ensuring reliability and safety in various industrial environments. Tailored to meet the specific needs of each project, our switchboards guarantee robust performance and long-lasting durability.

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PROJECTS

Our Successful Projects

Oil&Gas

Revamp of the Fluid Catalytic Cracking Unit

The project involves upgrading the Reactor and Regenerator sections of the FCC Unit at Lukoil’s refinery in Bulgaria. This upgrade will boost the unit’s efficiency, enabling it to process more oil and produce higher-quality products. Additionally, it sets the stage for Lukoil’s future investments in the refinery, positioning the company for long-term success in the industry.

Bioenergy

Sannazzaro Revamping

The Sannazzaro Revamping is a project for the partial conversion of Eni’s Sannazzaro de’ Burgondi refinery, in the province of Pavia. Developed by Eni, the project involves the conversion of the Hydrocracker HDC2 unit, the construction of a pretreatment plant for waste and residues, and the upgrade of logistics and auxiliary infrastructure. The new biorefinery will have a capacity of approximately 550,000 tonnes/year and will produce HVO diesel and SAF-biojet, contributing to the decarbonization of transport and to the expansion of Eni’s biorefining capacity.

Bioenergy

H2GS — Sweden — 2.1 MTPY HDRI and BRI Plant

H2 Green Steel was launched in 2021 in Boden, northern Sweden, is designed to produce 2.1 million tonnes per year of hot direct reduced iron (HDRI) and hot briquetted iron (HBI) using fossil-free hydrogen-based direct reduction technology. The project aims to decarbonize steel production by replacing fossil fuels with renewable hydrogen during the iron reduction process. Integrated with an electric arc furnace (EAF), the plant is expected to reduce CO₂ emissions from ironmaking by up to 95% compared with conventional blast furnace technology, supporting the production of near-zero-emission steel. The start of production is planned in 2026.

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