Intumescent Coatings and Their Applications in the Oil and Gas Industry: Formulations and Use of Numerical Models
Taher Hafiz, James Covello, Gary E. Wnek, Abdulkareem Melaiye, Yen Wei, Jiujiang Ji

TL;DR
This review discusses how intumescent coatings protect oil and gas infrastructure from fires by forming insulating layers and highlights recent advancements in their formulation and modeling.
Contribution
The paper reviews recent advancements in intumescent coatings and numerical models for fire protection in the oil and gas industry.
Findings
Intumescent coatings significantly reduce temperatures on steel surfaces during hydrocarbon fires.
Nano-enhanced and bio-derived coatings improve thermal stability and mechanical durability.
Numerical models help optimize coating formulations for real-world applications.
Abstract
The oil and gas industry is subject to significant fire hazards due to the flammability of hydrocarbons and the extreme conditions of operational facilities. Intumescent coatings (ICs) serve as a crucial passive fire protection strategy, forming an insulating char layer when exposed to heat, thereby reducing heat transfer and delaying structural failure. This review article provides an overview of recent developments in the effectiveness of ICs in mitigating fire risks, enhancing structural resilience, and reducing environmental impacts within the oil and gas industry. The literature surveyed shows that analytical techniques, such as thermogravimetric analysis, scanning electron microscopy, and large-scale fire testing, have been used to evaluate the thermal insulation performances of the coatings. The results indicate significant temperature reductions on protected steel surfaces that…
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Taxonomy
TopicsFlame retardant materials and properties · Fire dynamics and safety research · Engineering and Material Science Research
