{"title":"二元/三元沸石复合材料对醋酸纤维素膜潜在二氧化碳去除和抗菌特性的协同影响","authors":"Sakeena Arshad, Amina Afzal, Zainab Fatima","doi":"10.1016/j.kjs.2024.100239","DOIUrl":null,"url":null,"abstract":"<div><p>The aim of this research is to synthesize multifunctional mixed matrix cellulose acetate (CA) membranes that can provide better CO<sub>2</sub>/N<sub>2</sub> selectivity and will simultaneously fight against bacteria, to immaculate the indoor environment. For that purpose, two different fillers labelled as binary ZnO@Zeolite (1:10, ZZ) and ternary ZnO–CuO@Zeolite (0.8:0.2:10, ZZC) composites have been synthesized via co-precipitation method to entrench into CA matrix with 8 wt% each. The solution mixing technique assisted by thermal evaporation process (TEAP) has been adopted to formulate the desired membranes. Surface morphology, crystalline structure, thermal decomposition, and mechanical properties of novel composites ZZ and ZZC, along with their respective corresponding membranes CA/ZZ-8 and CA/ZZC-8, have been analyzed using field emission scanning electron microscopy (FESEM), X-ray diffraction (XRD), thermogravimetric analysis (TGA), and universal testing machine (UTM). The inclusion of tri-zeolitic composite (ZZC) favors the formation of denser CA membranes, with a smaller crystallite size (10.8 nm), higher thermal stability (%), and a notable increase in mechanical strength (MPa) in contrast to virgin CA as well as bi-zeolitic composite (ZZ) loaded membranes. The selectivity for CO<sub>2</sub>/N<sub>2</sub> separation of tri-zeolitic composite loaded membranes (CA/ZZC-8) is almost six folds higher compared to the pristine CA membrane, whereas it is five folds for bi-zeolitic composite impregnated membrane (CA/ZZ-8). To eradicate bacterial fouling, bi/tri-zeolitic composite loaded membranes are tested against <em>E. coli</em> bacteria by broth culture method and the results validate their antibiotic nature. Synthesized novel CA membranes with hybrid composites provide convenient access towards the development of multipurpose membranes.</p></div>","PeriodicalId":17848,"journal":{"name":"Kuwait Journal of Science","volume":"51 3","pages":"Article 100239"},"PeriodicalIF":1.2000,"publicationDate":"2024-05-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.sciencedirect.com/science/article/pii/S2307410824000646/pdfft?md5=a253ef479510266cd7fa1c70e3797a93&pid=1-s2.0-S2307410824000646-main.pdf","citationCount":"0","resultStr":"{\"title\":\"Synergetic impact of binary/ternary zeolitic composites on cellulose acetate membranes for potential CO2 removal and antibacterial attributes\",\"authors\":\"Sakeena Arshad, Amina Afzal, Zainab Fatima\",\"doi\":\"10.1016/j.kjs.2024.100239\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>The aim of this research is to synthesize multifunctional mixed matrix cellulose acetate (CA) membranes that can provide better CO<sub>2</sub>/N<sub>2</sub> selectivity and will simultaneously fight against bacteria, to immaculate the indoor environment. For that purpose, two different fillers labelled as binary ZnO@Zeolite (1:10, ZZ) and ternary ZnO–CuO@Zeolite (0.8:0.2:10, ZZC) composites have been synthesized via co-precipitation method to entrench into CA matrix with 8 wt% each. The solution mixing technique assisted by thermal evaporation process (TEAP) has been adopted to formulate the desired membranes. Surface morphology, crystalline structure, thermal decomposition, and mechanical properties of novel composites ZZ and ZZC, along with their respective corresponding membranes CA/ZZ-8 and CA/ZZC-8, have been analyzed using field emission scanning electron microscopy (FESEM), X-ray diffraction (XRD), thermogravimetric analysis (TGA), and universal testing machine (UTM). The inclusion of tri-zeolitic composite (ZZC) favors the formation of denser CA membranes, with a smaller crystallite size (10.8 nm), higher thermal stability (%), and a notable increase in mechanical strength (MPa) in contrast to virgin CA as well as bi-zeolitic composite (ZZ) loaded membranes. The selectivity for CO<sub>2</sub>/N<sub>2</sub> separation of tri-zeolitic composite loaded membranes (CA/ZZC-8) is almost six folds higher compared to the pristine CA membrane, whereas it is five folds for bi-zeolitic composite impregnated membrane (CA/ZZ-8). To eradicate bacterial fouling, bi/tri-zeolitic composite loaded membranes are tested against <em>E. coli</em> bacteria by broth culture method and the results validate their antibiotic nature. 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引用次数: 0
摘要
这项研究的目的是合成多功能混合基质醋酸纤维素(CA)膜,这种膜可以提供更好的 CO2/N2 选择性,同时还能抵抗细菌,从而改善室内环境。为此,我们通过共沉淀法合成了两种不同的填料,分别为二元 ZnO@沸石(1:10,ZZ)和三元 ZnO-CuO@ 沸石(0.8:0.2:10,ZZC)复合材料,并将其分别以 8 wt% 的比例添加到醋酸纤维素基质中。采用热蒸发工艺(TEAP)辅助溶液混合技术来配制所需的膜。利用场发射扫描电子显微镜 (FESEM)、X 射线衍射 (XRD)、热重分析 (TGA) 和万能试验机 (UTM) 分析了新型复合材料 ZZ 和 ZZC 以及它们各自对应的膜 CA/ZZ-8 和 CA/ZZC-8 的表面形态、结晶结构、热分解和机械性能。与原始 CA 和双沸石复合材料 (ZZ) 膜相比,三沸石复合材料 (ZZC) 的加入有利于形成更致密的 CA 膜,其结晶尺寸(10.8 纳米)更小,热稳定性(%)更高,机械强度(兆帕)显著增加。与原始 CA 膜相比,三沸石复合负载膜(CA/ZZC-8)的 CO2/N2 分离选择性高出近六倍,而双沸石复合浸渍膜(CA/ZZ-8)则高出五倍。为消除细菌污垢,采用肉汤培养法对双/三沸石复合负载膜进行了抗大肠杆菌测试,结果验证了其抗生素性质。合成的新型 CA 膜与混合复合材料为开发多用途膜提供了便利。
Synergetic impact of binary/ternary zeolitic composites on cellulose acetate membranes for potential CO2 removal and antibacterial attributes
The aim of this research is to synthesize multifunctional mixed matrix cellulose acetate (CA) membranes that can provide better CO2/N2 selectivity and will simultaneously fight against bacteria, to immaculate the indoor environment. For that purpose, two different fillers labelled as binary ZnO@Zeolite (1:10, ZZ) and ternary ZnO–CuO@Zeolite (0.8:0.2:10, ZZC) composites have been synthesized via co-precipitation method to entrench into CA matrix with 8 wt% each. The solution mixing technique assisted by thermal evaporation process (TEAP) has been adopted to formulate the desired membranes. Surface morphology, crystalline structure, thermal decomposition, and mechanical properties of novel composites ZZ and ZZC, along with their respective corresponding membranes CA/ZZ-8 and CA/ZZC-8, have been analyzed using field emission scanning electron microscopy (FESEM), X-ray diffraction (XRD), thermogravimetric analysis (TGA), and universal testing machine (UTM). The inclusion of tri-zeolitic composite (ZZC) favors the formation of denser CA membranes, with a smaller crystallite size (10.8 nm), higher thermal stability (%), and a notable increase in mechanical strength (MPa) in contrast to virgin CA as well as bi-zeolitic composite (ZZ) loaded membranes. The selectivity for CO2/N2 separation of tri-zeolitic composite loaded membranes (CA/ZZC-8) is almost six folds higher compared to the pristine CA membrane, whereas it is five folds for bi-zeolitic composite impregnated membrane (CA/ZZ-8). To eradicate bacterial fouling, bi/tri-zeolitic composite loaded membranes are tested against E. coli bacteria by broth culture method and the results validate their antibiotic nature. Synthesized novel CA membranes with hybrid composites provide convenient access towards the development of multipurpose membranes.
期刊介绍:
Kuwait Journal of Science (KJS) is indexed and abstracted by major publishing houses such as Chemical Abstract, Science Citation Index, Current contents, Mathematics Abstract, Micribiological Abstracts etc. KJS publishes peer-review articles in various fields of Science including Mathematics, Computer Science, Physics, Statistics, Biology, Chemistry and Earth & Environmental Sciences. In addition, it also aims to bring the results of scientific research carried out under a variety of intellectual traditions and organizations to the attention of specialized scholarly readership. As such, the publisher expects the submission of original manuscripts which contain analysis and solutions about important theoretical, empirical and normative issues.