Vevere Laima, Yakushin Vladimir, Sture-Skela Beatrise, Andersons Janis, Cabulis Ugis
Latvian State Institute of Wood Chemistry, 27 Dzerbenes Str., LV-1006 Riga, Latvia.
Polymers (Basel). 2024 Aug 24;16(17):2406. doi: 10.3390/polym16172406.
Cryogenics is the science and technology of very low temperatures, typically below 120 K. The most common applications are liquified natural gas carriers, ground-based tanks, and propellant tanks for space launchers. A crucial aspect of cryogenic technology is effective insulation to minimise boil-off from storage tanks and prevent frost build-up. Rigid closed-cell foams are prominent in various applications, including cryogenic insulation, due to their balance between thermal and mechanical properties. Polyurethane (PU) foam is widely used for internal insulation in cryogenic tanks, providing durability under thermal shocks and operational loads. External insulation, used in liquified natural gas carriers and ground-based tanks, generally demands less compressive strength and can utilise lower-density foams. The evolution of cryogenic insulation materials has seen the incorporation of environmentally friendly blowing agents and bio-based polyols to enhance sustainability. Fourth-generation physical blowing agents, such as HFO-1233zd(E) and HFO-1336mzz(Z), offer low global warming potential and improved thermal conductivity. Additionally, bio-based polyols from renewable resources like different natural oils and recycled polyethylene terephthalate (PET) are being integrated into rigid PU foams, showing promising properties for cryogenic applications. Research continues to optimise these materials for better mechanical performance and environmental impact.
低温学是研究极低温(通常低于120K)的科学与技术。其最常见的应用包括液化天然气运输船、地面储罐以及航天发射器的推进剂罐。低温技术的一个关键方面是有效的隔热,以尽量减少储存罐中的蒸发损失并防止结霜。硬质闭孔泡沫材料因其热性能和机械性能之间的平衡,在包括低温隔热在内的各种应用中表现突出。聚氨酯(PU)泡沫广泛用于低温罐的内部隔热,能在热冲击和运行负载下保持耐用性。用于液化天然气运输船和地面储罐的外部隔热,通常对抗压强度要求较低,可以使用低密度泡沫材料。低温隔热材料的发展历程中,引入了环保型发泡剂和生物基多元醇以提高可持续性。第四代物理发泡剂,如HFO - 1233zd(E)和HFO - 1336mzz(Z),具有较低的全球变暖潜能值和改进的热导率。此外,来自不同天然油和回收聚对苯二甲酸乙二酯(PET)等可再生资源的生物基多元醇正被整合到硬质PU泡沫中,在低温应用中显示出良好的性能。研究仍在继续优化这些材料,以获得更好的机械性能和环境影响。