Among various power generation sectors such as thermal, hydro, nuclear, tidal, and wind power, Ilshin Autoclave holds core capabilities in engineering and optimization technologies for nuclear power systems. power generation environments through precision design and fabrication technologies aimed at enhancing the performance and ensuring the reliability of key facilities, including reactor structures, control systems, and heat exchangers.
The power generation engineering sector is rapidly growing as a central pillar of the global energy industry, and South Korea is also expanding investments to stabilize power supply and secure sustainable energy. Ilshin Autoclave continuously pursues the development of new technologies and resource-saving process engineering to enhance the efficiency, safety, and eco-friendliness of power generation facilities, with a focus on nuclear energy.
We maximize efficiency and stability throughout the plant lifecycle by integrating system engineering technologies into the plant industry. Applied across various sectors such as chemical engineering and power generation, we conduct engineering activities across the entire process—from planning, design, and materials to construction, operation, and decommissioning.
Through this, we realize enhanced plant productivity, optimized operational efficiency, and standardized maintenance.
Ilshin Autoclave contributes to improving overall industrial efficiency by developing, scaling up, designing, and optimizing new chemical processes, as well as enhancing existing processes through process modeling technology.
We increase the potential for commercialization by applying optimal design, process modeling, and improvement technologies to new processes in fields such as fuel cells, wastewater treatment, and advanced material synthesis. We also conduct engineering activities to improve the productivity and stability of existing chemical processes, including oil refining, petrochemicals, and pollutant treatment.
Chemical process engineering encompasses all stages, from fundamental research and core technology development to equipment fabrication know-how, providing optimized solutions for industrial sites based on accurate data analysis and accumulated technical expertise.
Project Management engineering is a specialized field that manages all stages from project discovery to execution. To ensure project success, we strengthen core management capabilities throughout the business cycle, including feasibility analysis, proposals and contracts, risk management, and schedule/quality control.
Project execution involves various procedures such as bidding, contracting, design, procurement, fabrication, commissioning, performance testing, handover, operation, and decommissioning, necessitating a specialized organization for systematic management.
Beyond simply procuring physical plants, PM engineering provides integrated management solutions that create optimal project outcomes based on core technical expertise, management know-how, and diverse industrial experience.