OSHA Compliance

Understanding why “bonding and grounding” may not be enough protection when handling non-conductive flammable liquids

In the world of flammable liquids processing, we have two (2) types of flammable liquids: Members can read all my articles on how these flammable liquids get classified as “conductive” vs. “non-conductive. This post is to explain HOW and WHY the traditional “bonding and grounding” used in the transfer of flammable liquids may be inadequate […]

Why does OSHA’s 1910.146 require O2 to be sampled first?

Before an employee enters the space, the internal atmosphere shall be tested, with a calibrated direct-reading instrument, for oxygen content, for flammable gases and vapors, and for potential toxic air contaminants, in that order. We test for oxygen before testing for flammability (LEL) for two (2) critical reasons: Here is the breakdown of why this

How often do hydrostatic relief valves (HRV) have to be changed or tested?

The frequency for testing or replacing hydrostatic relief valves (HRVs) depends largely on the service environment, the fluid being handled, and the specific regulatory standards like OSHA, NFPA, CGA, or ASME governing your process. Because these valves are designed to protect against thermal expansion in liquid-filled lines—often in “blocked-in” sections—their reliability is critical to preventing

What does it mean to “Functionally Test” my Safety Instrumented System (SIS) (ISA 84)

In the realm of process safety, a Functional Test of the Safety Instrumented System (SIS) is a periodic procedure performed to ensure that an SIS will operate as designed when a real-world demand occurs. While a system might look operational on a control panel, internal “hidden” failures could prevent it from actually shutting down a

Commercial Bakery Ovens are PRCSs, and this is NOT how we manage entry into one of them

A bakery company and three company directors have been fined £373,000 after two (2) workers (43 and 47) died inside a bread oven. The men were carrying out maintenance work when they became trapped inside the 70′ long conveyor oven, where temperatures were above 100°C (212°F). They died from burns and heat exposure after being

Controlling Static by managing flow rates

Managing static electricity during the transfer of flammable liquids is based on the fluid’s conductivity, measured in picosiemens per meter (pS/m). High-conductivity liquids dissipate charge quickly, while low-conductivity liquids (static accumulators) hold onto the charge, creating a spark hazard. The following table summarizes the maximum flow velocities recommended by NFPA 77 and API 2003 to

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