February 27,2026
Roy

Lined valve low fugitive emission solutions help regulate unintended gas leaks from valves, pumps, and other industrial equipment. These releases can negatively impact environmental safety and regulatory compliance. Therefore, facilities must choose appropriate testing standards to ensure their valve systems remain tight. 

This guide compares ISO 15848 and TA-Luft to help determine which fugitive emission requirements best match your operational needs.

Core Requirements of ISO 15848 

ISO 15848 is an international standard that was established in 2006. This was implemented because of an increased demand for sustainable valves. The lack of a harmonized regulation to confirm and classify the environmental impact of leakage to the atmosphere from valves was the main motivator behind it. 

In this framework, the entire industrial valve, including the body seals, will be subjected to type testing. The ISO type test classifies the complete industrial valve into a pressure, temperature, endurance, and tightness class. Its requirements are highly specific and detailed, resulting in a test duration of approximately one to two weeks.

ISO 15848, entitled “Industrial Valves – Measurement, Test, and Qualification Procedures for Fugitive Emissions,” consists of two parts: 

  • Part 1: Classification system and qualification procedures for the type of testing of Industrial Valves — A difference is made here between three tightness classes: A, B, and C, with class A having the smallest environmental leak. 
  • Part 2: Production acceptance test of Industrial Valves — Only products that pass the first test proceed to this stage. Leakage is then tested at room temperature using helium detection without mechanical effects.

Specifying an industrial valve according to ISO 15848 provides the following advantages for purchasers: 

  • Industrial valves created by various manufacturers may be directly compared on the basis of the classification. 
  • The complete industrial valve meets the requirements, also applying specifically to the highly loaded stem thread with needle valves. 
  • The specified mechanical and thermal load cycles guarantee that the sealing elements demonstrate adequate leak tightness even after numerous heating and cooling phases. 
  • Tightness class “A” permits a leak rate ten times lower than TA-Luft at temperatures below 250°C.

TA-Luft Compliance 

The TA-Luft test qualifies only a “high-quality sealing system.” It is a German national directive with the associated test procedure VDI 2440. Established in 1964, this directive was the only widely recognized industry standard for classifying fugitive emission leakage in valves until 2006. 

This only defines allowable leakage levels for the stem or gland but does not specify the testing conditions. Rather, it is up to the manufacturer to test the parts under the conditions based on the intended product use. However, this can be considered by the majority as inconsistent, for it will solely rely on each manufacturer’s decision under which conditions leak tests are performed. 

The requirements of TA-Luft are very general. Its test duration usually does not take longer than one to two days. There is also no requirement for the number of mechanical cycles or the number of thermal cycles. 

Many seal manufacturers promote “TA-Luft packings,” but using this type alone, unfortunately, does not guarantee long-term leak tightness. Overall sealing performance depends on several factors, including stem surface finish and the clearance between the gland and the stem.

ISO 15848 vs TA-Luft: A Comparison Table

FeaturesISO 15848TA-Luft
ScopeComplete industrial valveMainly focuses on sealing system 
Type International standard (est. 2006)German national directive (est. 1964)
Testing MethodType testing with pressure, temperature, and endurance classesDefines allowable leakage but limited test conditions
Tightness ClassesA, B, C (Class A = lowest leakage)No tightness classification system
Mechanical / Thermal CyclesRequiredNot specified 
ConsistencyStandardized and comparable across manufacturersMainly focuses on the sealing system 

Which One to Follow? 

Selecting between these two standards often relies on the project location and specific client requirements. 

ISO 15848 Fugitive Emission Standard remains as widely recognized globally as an efficient and comprehensive testing method. It provides detailed performance data that allows for direct comparison between various valve products. Many international engineering firms now mandate this specific standard for new capital projects. 

Meanwhile, TA-Luft is still relevant for facilities operating under German or European environmental permits. Some clients may still prefer it because of long-standing plant specifications and historical documentation. However, it is also important to note that the industry trend is shifting toward adopting the ISO standard for broader compatibility. 

Regardless, a lined valve low fugitive emission solution is commonly designed to meet both standards. Precision engineering ensures that the valve packing and body seals achieve the needed tightness levels. Always consult with your valve manufacturer to review their test data and compliance certifications, simplifying your maintenance planning and environmental reports. 

Conclusion

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Managing fugitive emissions needs a clear understanding of testing standards like ISO 15848 and TA-Luft. The former one provides a comprehensive and internationally accepted method, while the latter one focuses on specific regulatory compliance based on the manufacturer. Both standards reduce leakage while supporting environmental compliance.
Lianke offers lined valve low fugitive emission solutions for demanding environments. As a company with over 20 years of expertise, we continuously maintain strict manufacturing controls and provide our clients with detailed documents and results for both testing standards. Invest in Lianke to ensure the best valve for your specific pressure and temperature conditions.

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