
When heat exchangers are ultimately destined for a Tüpraş refinery, "approved supplier" isn't a marketing phrase — it's a specific, audited status the client grants to individual manufacturers after a formal qualification process. Tüpraş (Türkiye Petrol Rafinerileri A.Ş.) operates Turkey's four major refineries, processing crude oil into fuels, lubricants, and petrochemical feedstocks, and its vendor approval process reflects the rigor expected in large-scale downstream refining infrastructure. For procurement and engineering teams in Italy sourcing heat exchangers for this kind of work, understanding what that process actually involves is far more useful than searching for a badge.
This article explains what Tüpraş vendor approval covers for heat exchange equipment, the engineering baseline it's built on, and what to look for when qualifying a heat exchanger manufacturer for Tüpraş-linked or Tüpraş-grade projects.
Tüpraş maintains its own vendor qualification and approval process, and getting onto it involves a detailed audit of a manufacturer's quality management system, welding and tube-to-tubesheet joining procedures, material control, non-destructive testing capability, and documented fabrication history. For heat exchangers specifically, auditors pay close attention to tube bundle fabrication, tubesheet design, and — for exchangers in hydroprocessing, crude preheat, and sour water service — the high-temperature and sour-service metallurgy applied to shell, channel, and tube-side components.
That audit is typically carried out by Tüpraş's own inspection personnel or a third-party inspection agency acting on its behalf, and the resulting approval is specific to the manufacturer and often to defined equipment categories and material classes.
Because approval is granted directly by Tüpraş to a named manufacturer, it isn't something any supplier can assert without going through that process. What buyers researching suppliers can assess independently — before any formal audit — is whether a manufacturer's engineering and quality practices are already built to the level Tüpraş requires.
Regardless of a unit's final destination, the technical requirements that underpin Tüpraş-grade heat exchanger fabrication are largely the same requirements that govern quality heat exchanger manufacturing generally:
TEMA (Tubular Exchanger Manufacturers Association) standards govern mechanical design, in conjunction with ASME Section VIII, Division 1 or 2, for the pressure-containing shell and channel, with Tüpraş's own engineering standards layered on top for refinery process unit projects.
Exchangers in crude preheat trains, hydroprocessing units, and sour water service are frequently engineered with Cr-Mo alloy steels for high-temperature duty, along with NACE MR0175/ISO 15156-compliant materials for shell, tubesheet, and tube bundle where sour water or wet H2S conditions apply.
Full mill test certificates and heat-number traceability carried from raw plate and tube stock through to the finished, assembled exchanger.
WPS and PQR documentation for all pressure-boundary welds, with welders individually qualified under ASME Section IX, alongside qualified tube-to-tubesheet joint procedures (welded, expanded, or combination) and hardness testing where sour-service limits apply.
Radiographic and ultrasonic examination of pressure-boundary welds, tube-to-tubesheet joint testing, and magnetic particle or dye-penetrant testing where applicable, along with hydrogen-induced cracking (HIC) testing where required.
Shell side and tube side each pressure-tested to code before the exchanger leaves the shop floor.
Hold-point sign-off from an accredited inspection body such as Lloyd's Register, Bureau Veritas, TÜV, or DNV at critical stages of fabrication.
A manufacturer that applies this level of control as standard practice — not only on projects with a named end client — is generally the one positioned to succeed if and when a formal Tüpraş audit takes place.
Notdstone designs and manufactures heat exchangers and related pressure equipment for the Oil & Gas, Petrochemical, Energy, and Water Treatment sectors, serving Italy, the GCC, and international markets, with more than three decades of engineering experience across the team. Our fabrication and QA/QC processes are structured around the technical baseline described above — process-appropriate material selection where required, documented material traceability, ASME IX-qualified welding, qualified tube-to-tubesheet joining, comprehensive NDT, and dual-side hydrostatic testing before delivery.
To be clear with buyers researching this topic: formal vendor approval with Tüpraş is issued directly by Tüpraş to specific manufacturers following its own audit process, and we're not claiming that status here. What we can speak to with confidence is the engineering rigor our heat exchangers are built to on every project.
TEMA-designed shell-and-tube units for heating, cooling, condensation, and energy recovery, engineered for demanding refinery process conditions.
ASME Section VIII-compliant vessels engineered for safe containment under demanding pressure and temperature conditions.
API 650/620-referenced tanks for liquids, gases, chemicals, and petroleum products.
Distillation, absorption, and stripping columns engineered for process efficiency in refining and petrochemical service.
Custom-engineered reactors for controlled chemical processing and reaction management.
Factory-assembled modular skids integrating exchangers, vessels, pumps, piping, and instrumentation to compress site installation time.
It means the manufacturer has been formally audited and listed as an approved vendor by Tüpraş, covering their quality system, welding and tube-joining procedures, and testing capability for specific equipment categories.
TEMA standards govern the mechanical design, paired with ASME Section VIII (Division 1 or 2) for the pressure boundary, often supplemented with NACE MR0175/ISO 15156 for sour service and Tüpraş's own refinery engineering standards.
Many do — crude preheat trains and hydroprocessing units typically require Cr-Mo alloy steels for high-temperature duty, while sour water and wet H2S service call for NACE-compliant materials for tubes, tubesheets, and channels, rather than standard carbon steel.
Yes, provided their code compliance, material traceability, and third-party inspection arrangements meet the project specification and export logistics support delivery.
Ask for written confirmation of the approval status and its exact scope — which equipment categories and material classes it covers — rather than relying on a general claim.
If your project requires heat exchangers engineered to international codes and manufactured under documented quality control, our engineering team can review your process requirements and provide a project-specific proposal. Get in touch with Notdstone to discuss your specifications.

