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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Separation of Refrigerant Gas Mixtures Containing R32, R134a, and R1234yf through Poly(ether-block-amide) Membranes
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Separation of Refrigerant Gas Mixtures Containing R32, R134a, and R1234yf through Poly(ether-block-amide) Membranes

机译:通过聚(醚嵌段 - 酰胺)膜将含R32,R134a和R1234YF的制冷剂气体混合物的分离

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Hydrofluorocarbons (HFCs) are powerful greenhouse gases whose production and consumption must be phased down in order to reach the reduction goals established by the Kigali Amendment to the Montreal Protocol. However, the share of recycled refrigerant gases remains very low owing to the extremely inefficient separation of refrigerant mixtures by cryogenic distillation. In this sense, the HFCs, difluoromethane (R32, GWP = 675) and 1,1,1,2-tetrafluoroethane (R134a, GWP = 1430), together with the hydrofluoroolefin (HFO) 2,3,3,3- !in tetrafluoropropene (R1234yf, GWP = 4), are among the most common constituents of HFC/HFO refrigerant mixtures currently employed in the refrigeration and air-conditioning sector. Therefore, the feasibility of using membrane technology for the selective separation of these compounds is assessed in this work for the first time. A comprehensive study of their gas permeation through several poly(ether-block-amide) (PEBA) membranes that differ on the content and type of backbone segments is performed. Results show that PEBA membranes exhibit superior permeability of R32 (up to 305 barrer) and R134a (up to 230 barrer) coupled with reasonably high selectivity for the gas pairs R32/R1234yf (up to 10) and R134a/R1234yf (up to 8). Moreover, for the blends R32/R1234yf and R32/R134a, the membrane separation performance is not significantly affected under the mixed gas conditions tested. Thus, results evidence that consideration should be given to membrane technology for the cost-efficient separation of HFC/HFO mixtures in order to boost the recycling of these compounds.
机译:氢氟烃(HFCS)是强大的温室气体,必须逐步逐步逐步逐步逐步逐步逐步达到蒙特利尔议定书的减排目标。然而,由于冷冻蒸馏极度低效率,再生制冷剂气体的份额仍然非常低。在这种意义上,HFCs,二氟甲烷(R32,GWP = 675)和1,1,1,2-四氟乙烷(R134A,GWP = 1430),以及氢氟烯烃(HFO)2,3,3,3-!在四氟丙烯(R1234YF,GWP = 4),是目前在制冷和空调部门采用的HFC / HFO制冷剂混合物的最常见成分之一。因此,在这项工作中首次评估使用用于选择性分离这些化合物的膜技术的可行性。通过几种聚(醚嵌段 - 酰胺)(PEBA)膜的气体渗透综合研究,其含有不同于骨架段的含量和类型的膜。结果表明,PEBA膜具有优异的R32(最多305个禁止)和R134a(最多230个禁迹)的渗透性,其对气体对的相当高的选择性R32 / R1234YF(最多10)和R134A / R1234YF(最多8) 。此外,对于共混物R32 / R1234YF和R32 / R134A,在测试的混合气体条件下,膜分离性能不会显着影响。因此,应考虑考虑HFC / HFO混合物的成本有效分离的结果证据,以提高这些化合物的再循环。

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