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膨胀型涂料及其在石油和天然气工业中的应用:配方与数值模型的使用

Intumescent Coatings and Their Applications in the Oil and Gas Industry: Formulations and Use of Numerical Models.

作者信息

Hafiz Taher, Covello James, Wnek Gary E, Melaiye Abdulkareem, Wei Yen, Ji Jiujiang

机构信息

Department of Macromolecular Science and Engineering, Case Western Reserve University, Cleveland, OH 44106, USA.

Research and Development, Goodyear Tire & Rubber Company, Akron, OH 44316, USA.

出版信息

Polymers (Basel). 2025 Jul 11;17(14):1923. doi: 10.3390/polym17141923.

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 extend critical failure times under hydrocarbon fire conditions. Recent advancements in nano-enhanced and bio-derived ICs have also improved thermal stability and mechanical durability. Furthermore, numerical modeling based on heat transfer, mass conservation, and kinetic equations aids in optimizing formulations for real-world applications. Nevertheless, challenges remain in terms of standardizing modeling frameworks and enhancing the environmental sustainability of ICs. This review highlights the progress made and the opportunities for continuous advances and innovation in IC technologies to meet the ever-evolving challenges and complexities in oil and gas industry operations. Consequently, the need to enhance fire protection by utilizing a combination of tools improves predictive modeling and supports regulatory compliance in high-risk industrial environments.

摘要

由于碳氢化合物具有可燃性以及作业设施条件极端,石油和天然气行业面临重大火灾隐患。膨胀型防火涂料(ICs)是一种关键的被动防火策略,在受热时会形成隔热炭层,从而减少热传递并延缓结构失效。这篇综述文章概述了膨胀型防火涂料在减轻石油和天然气行业火灾风险、增强结构韧性以及减少环境影响方面的有效性的最新进展。所调查的文献表明,热重分析、扫描电子显微镜和大规模火灾测试等分析技术已被用于评估涂料的隔热性能。结果表明,在烃类火灾条件下,受保护钢表面的温度显著降低,从而延长了关键失效时间。纳米增强型和生物衍生型膨胀型防火涂料的最新进展也提高了热稳定性和机械耐久性。此外,基于传热、质量守恒和动力学方程的数值模拟有助于优化实际应用中的配方。然而,在标准化建模框架和提高膨胀型防火涂料的环境可持续性方面仍存在挑战。本综述强调了所取得的进展以及膨胀型防火涂料技术持续进步和创新的机会,以应对石油和天然气行业运营中不断演变的挑战和复杂性。因此,通过结合多种工具加强防火保护的需求有助于改进预测建模并支持高风险工业环境中的法规遵从性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df3c/12298081/08e95584acbf/polymers-17-01923-g001.jpg

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