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Safe Product Selection

The complete catalog contents must be reviewed to ensure that the system designer and user make a safe product selection. When selecting products, the total system design must be considered to ensure safe, trouble-free performance. Function, material compatibility, adequate ratings, proper installation, operation, and maintenance are the responsibilities of the system designer and user.

⚠ Warning: Do not mix/interchange Swagelok two-ferrule tube-fitting end connection components (or other products not governed by industrial design standards) with those of other manufacturers.

  • Hydrogen, Sampling, and Corrosion Insights

    The Questions We Answered in Year One of "Ask Swagelok." This past year, we were excited to introduce a new video series called “Ask Swagelok,” where Swagelok experts answer key questions and offer insights into all things fluid systems design. To date, we have published five different conversation...

  • Maximizing Hydrogen Electrolyzer Efficiency

    Optimize Hydrogen Electrolyzer Efficiency with High-Performance Fluid Systems Hydrogen continues to gain traction as a low-carbon energy source with major potential. Here’s one point of evidence: The European Commission  aims to produce 10 million tons and import 10 million tons of renewable hydrog...

  • How to Avoid FPSO Vessel Fluid System Construction Issues

    Tackling the Complexities of Floating Production Storage and Offloading (FPSO) Construction Tommy Jamail, Senior Regional Construction Manager, Asia Pacific Barry Rowe-Platts, Technical Lead, Engineering Services As members of the oil and gas industry have sought to maintain profitable upstream op...

  • Top 5 Hydrogen Infrastructure Best Practices

    The Top 5 Best Practices for Designing Hydrogen Fluid Systems Hydrogen is one of the world’s most promising sources of clean and sustainable energy and power . From transportation and material handling to stationary, portable, and emergency backup power, it’s useful in a range of applications—and i...

  • Seven Tips for Effective Plant Turnarounds

    Seven Tips for More Effective, Efficient Plant Turnarounds Mike Aughenbaugh, Associate Target Market Manager, Swagelok, and Steven Robertson, Downstream Sales Manager, Swagelok Southeast Texas Plant turnaround is a major undertaking for chemical plants and refineries around the world. These comple...

  • How to Avoid Fluid System Leaks

    Why System Performance Depends on Proper Tube Preparation Quality tubing and highly engineered fittings form some of the most critical connections in any refinery. A number of variables must be considered when ensuring each of these connections is optimal—material type, tube size, wall thickness, ...

  • API 682: Building Better Mechanical Seal Support Systems

    API 682 and You: Building Better Mechanical Seal Support Systems Sean Hunsicker, Market Manager, Chemical & Refining Market Mechanical seals became the dominant sealing technology in refineries and chemical plants in the 1980s, causing the American Petroleum Institute (API) to establish a committe...

  • Inventory and Innovation at a Carbon Capture Company

    Consignment Inventory Helps Carbon Capture Tech Company Save Thousands Annually Failure is not an option for carbon capture company LanzaTech’s Georgia-based facility, Freedom Pines—especially when doing the important work of helping its customers convert carbon emissions into usable fuels and chem...

  • Grab Sampling 101: Reducing Plant Costs

    Grab Sampling 101: Reducing Plant Costs When producing a product with a precise chemical composition, an accurate sampling process is critical to plant production. Inadequate chemical product can cost a facility thousands of dollars in revenue, so it is important that samples are taken often to val...

  • Tackling Practical Performance Issues in Fluid and Sampling Systems

    Tackling Practical Performance Issues in Fluid and Sampling Systems Phil Mathews, Director of Technical Services, Swagelok Los Angeles In industrial fluid systems and sampling systems there are six primary goals, three analytical and three operational. The analytical goals are a sample that’s comp...

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