赖氨酸偶联氧化石墨烯纳米填料对混合基质壳聚糖膜CO2分离性能的影响

IF 0.9 Q4 ENGINEERING, CHEMICAL Indian Chemical Engineer Pub Date : 2022-09-14 DOI:10.1080/00194506.2022.2119895
Aviti Katare, Swapnil Sharma, B. Mandal
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引用次数: 3

摘要

具有较高气体分离能力的先进膜材料因其易于制造、低成本和优异的分离性能而引起了人们对CO2分离的极大兴趣。对填料进行氨基酸表面改性是改善聚合物与填料之间结合的有效途径。我们使用l -赖氨酸功能化氧化石墨烯(f-GO)纳米片在壳聚糖(CS)基质中制备了mm。目前的研究重点是l -赖氨酸与氧化石墨烯的化学偶联,利用碳二亚胺作为CO2/N2分离的偶联剂。采用FTIR、XRD、Raman、TGA、AFM、FESEM、接触角、吸水率等测试方法对制备的氧化石墨烯、Lys-c-GO和Lys-c-GO包埋壳聚糖膜的理化特性进行了研究。成功地将活性层厚度为5µm的无缺陷致密层浇铸在PES支架上,并在温度为25 ~ 105℃的膨胀条件下用于混合气体(CO2/N2)分离研究。在最佳工作温度为95℃,进水绝对压力为1.21 bar的条件下,将扫描/进水流量比保持在1.5,制备的膜具有较强的CO2渗透性和CO2/N2选择性。图形抽象
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Effects of L-lysine-conjugated-graphene oxide as a nanofiller on the CO2 separation performance of mixed matrix chitosan membrane
ABSTRACT Advanced membrane materials with higher gas separation capabilities have developed a lot of interest in CO2 separation because of their ease of fabrication, low cost and excellent separation performance. Amino acid surface modification of fillers is an efficient approach for improving the bond between the polymer and the fillers. We created MMMs in the Chitosan (CS) matrix using L-lysine functionalised graphene oxide (f-GO) nanosheets. The current research focuses on the many elements of chemical conjugation of L-lysine onto graphene oxide utilising carbodiimide as a coupling agent for CO2/N2 separation. FTIR, XRD, Raman, TGA, AFM, FESEM, contact angle and water uptake tests were used to investigate the physicochemical characteristics of the produced GO, Lys-c-GO and Lys-c-GO embedded chitosan membranes. A defect-free dense layer with an active layer thickness of 5 µm was successfully cast on a PES support and used for a mixed gas (CO2/N2) separation research at temperatures ranging from 25 to 105 degrees Celsius under swelling circumstances. By maintaining a sweep/feedwater flow rate ratio of 1.5 at an optimal operating temperature of 95°C and feed absolute pressure of 1.21 bar, the fabricated membrane demonstrated strong CO2 permeance and CO2/N2 selectivity. GRAPHICAL ABSTRACT
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来源期刊
Indian Chemical Engineer
Indian Chemical Engineer ENGINEERING, CHEMICAL-
CiteScore
3.00
自引率
6.70%
发文量
33
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