Xin Mingyuan, Wang Qiang, Wang Qiang, Wang Haoyu, Muhammad Furqan, Nie Guanze
Key Laboratory of Coal Cleaning Conversion and Chemical Engineering Process, Xinjiang Uyghur Autonomous Region, College of Chemical Engineering, Xinjiang University Urumqi Xinjiang 830017 PR China
Dandong Chemical Engineering Institute Co., LTD. Dandong Liaoning China.
RSC Adv. 2024 Jan 2;14(1):90-100. doi: 10.1039/d3ra07033f.
The development of refrigerant adsorbent materials is not only essential for enhancing the efficiency of refrigeration systems but also plays a pivotal role in environmental conservation and addressing global warming challenges. However, traditional adsorbent materials are often limited in widespread applications in industrial scales due to various disadvantages, such as low adsorption efficiency, difficulties in desorption, and poor reusability. In this context, three distinct PILs, P[EVIM][PF], P[BVIM][PF] and P[HVIM][PF], were synthesized and characterized. In addition, their structure as well as adsorption capacities towards three different Freon refrigerants (R12, R22 and R134a) were explored. The results indicated that the synthesized PILs had high thermal stability and exceptional adsorption capabilities, with P[EVIM][PF] demonstrating the best adsorption performance. These PILs consistently maintain a stable saturated adsorption capacity throughout nine consecutive adsorption-desorption cycles, and the desorption rate of the adsorbent tubes consistently exceeded 96%. Thus, the superior recyclability of these PILs was verified. These PILs provide a promising route for efficient adsorption of Freon refrigerants, highlighting their potential significance in pertinent industries and environmental conservation efforts.
制冷剂吸附材料的开发不仅对于提高制冷系统的效率至关重要,而且在环境保护和应对全球变暖挑战方面也发挥着关键作用。然而,传统吸附材料由于存在各种缺点,如吸附效率低、解吸困难和可重复使用性差等,在工业规模的广泛应用中往往受到限制。在此背景下,合成并表征了三种不同的离子液体聚合物(PILs),即P[EVIM][PF]、P[BVIM][PF]和P[HVIM][PF]。此外,还探索了它们的结构以及对三种不同氟利昂制冷剂(R12、R22和R134a)的吸附容量。结果表明,合成的离子液体聚合物具有高热稳定性和出色的吸附能力,其中P[EVIM][PF]表现出最佳的吸附性能。这些离子液体聚合物在连续九个吸附-解吸循环中始终保持稳定的饱和吸附容量,吸附管的解吸率始终超过96%。因此,验证了这些离子液体聚合物具有优异的可回收性。这些离子液体聚合物为高效吸附氟利昂制冷剂提供了一条有前景的途径,凸显了它们在相关行业和环境保护工作中的潜在重要意义。