In industrial facilities, from energy production to petrochemical processing, the heart of every critical process involves equipment that must withstand high pressure, temperature, and harsh chemical conditions. As Cryonos Engineering, we are not just a supplier but a strategic solution partner that analyzes process requirements for the **reactors, storage tanks, and heat transfer systems** your facility needs.
With our robust manufacturing infrastructure and deep engineering experience, we offer certified and highly secure equipment solutions that fully comply with international standards (ASME, EN, PED Directives). Our turnkey approach, extending from design and material selection to precise manufacturing processes, testing, and commissioning, minimizes technical risks in your projects. Whether it’s a cryogenic storage tank or a complex pressure vessel, every piece of equipment manufactured under Cryonos assurance is optimized for your facility’s efficiency and safety.
The continuous operation of industrial facilities relies on the reliable and high-volume storage of raw materials or process gases. Cryonos offers a wide range of **high-capacity (bulk) storage tanks** for everything from liquefied industrial gases (LIN, LOX, LAR, LNG, LPG) to chemical raw materials.
Especially in cryogenic applications, our double-walled, vacuum/perlite insulated tanks minimize heat input, thus minimizing the boil-off losses of the stored liquid. Designed in fixed vertical or horizontal configurations, considering seismic and wind loads, these massive tanks reduce your facility’s logistical costs and guarantee supply security.

Safety is an undisputed priority in processes operating under high pressure. Cryonos specializes in the design and supply of pressure vessels such as **reactors, separators, air tanks, and filter housings** required by the energy, chemical, and oil & gas sectors.
Every pressure vessel is specifically engineered according to your project’s temperature, pressure, and corrosion requirements. Manufactured using qualified materials and certified welding methods in compliance with strict international codes such as **ASME Sec. VIII Div.1/2, EN 13445**, and **PED 2014/68/EU**, our vessels offer maximum operational safety and a long service life even in the harshest working conditions.

Cryogenic Liquid to Gas: Efficient and Continuous Conversion
Liquids stored in cryogenic form (such as -196°C) must be converted back to the gas phase for use within the facility. Cryonos offers high-efficiency **vaporizer** solutions for this critical phase change.
Depending on the application’s flow rate requirements and climatic conditions, we design **Atmospheric Vaporizers** which use ambient air heat without energy cost, or **Water Bath / Electrically Heated Vaporizers** for very high capacities and stable gas outlet temperatures. Our systems ensure continuous and uninterrupted gas flow thanks to designs optimized for icing management.

Not every industrial process fits standard molds. Space constraints in your facility, special chemical resistance requirements, or unique process parameters may require tailor-made solutions. Cryonos Engineering develops **custom-made tank and equipment** solutions for your “off-catalogue” needs.
With our extensive material knowledge, ranging from stainless steel to special alloys, and our flexible manufacturing capabilities, we design and implement mixer-equipped tanks with specific geometries, process columns, or jacketed heating/cooling tanks. No matter how complex the equipment you need, our engineering team will transform it into a manufacturable and safe design.

Energy efficiency and precise temperature control are the cornerstones of modern industry. Cryonos offers high-performance **heat exchangers** for your process heating, cooling, or energy recovery needs.
We determine the most suitable exchanger type based on the application’s pressure and temperature limits, primarily shell-and-tube type. Our exchangers, which are meticulously thermally calculated and manufactured from corrosion-resistant materials, help you increase process efficiency and reduce energy costs by maximizing the heat transfer coefficient.

