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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

AIN TSILA GAS FIELD DEVELOPMENT

Ain Tsila is a gas condensate field situated in the Illizi Basin, Algeria, located within the Isarene permit in Blocks 228 and 229a. The Ain Tsila field boasts reserves amounting to 2.1 trillion cubic feet of sales gas, alongside 67 million barrels of condensate and 108 million barrels of liquefied petroleum gas (LPG). Discovered in 2009 through the successful drilling of the Ain Tsila-1 well, this gas condensate field garnered significant recognition, ranking as the ninth-largest discovery globally for that year. Spanning an extensive area exceeding 1,000 square kilometers, Ain Tsila represents a substantial addition to the energy landscape.

Oil&Gas

Modernización Refinería Talara

The “Modernización Refinería Talara” project involves the refurbishment and modernization of the Talara refinery located in Peru. The project seeks to achieve two key objectives: reducing sulfur content in diesel, gasoline, and LPG fuels to a maximum of 50 ppm and increasing the refinery’s crude processing capacity from 65,000 to 95,000 barrels per day (BPD), allowing for the processing of heavy crude and conversion of residual products into marketable ones.

Energy

New Hydrogen Production Unit – Porto Marghera

The project aims at implementing two hydrogen production lines for the Venice biorefinery in Porto Marghera. Its primary objective is to increase the availability of hydrogen at the biorefinery to fulfill the requirements of the EcofiningTM unit in terms of quality, quantity, and availability, all while optimizing energy efficiency. As part of a phased transition to producing decarbonized hydrogen, these units are designed to significantly reduce the emission of fossil CO2 into the atmosphere by utilizing biogenic charges recirculated by the EcofiningTM unit.

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