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用于生物乙醇渗透汽化脱水的PSSAMA_Na包覆银纳米颗粒嵌入海藻酸钠膜的新型制备方法。

Novel fabrication of PSSAMA_Na capped silver nanoparticle embedded sodium alginate membranes for pervaporative dehydration of bioethanol.

作者信息

Kulkarni Akshay S, Sajjan Ashok M, M Ashwini, Banapurmath Nagaraj R, Ayachit Narasimha H, Shirnalli Geeta G

机构信息

Department of Chemistry, KLE Technological University Hubballi 580031 India

Department of Food and Industrial Microbiology, University of Agricultural Sciences Dharwad 580 005 India.

出版信息

RSC Adv. 2020 Jun 12;10(38):22645-22655. doi: 10.1039/d0ra01951h. eCollection 2020 Jun 10.

Abstract

Polystyrene-4-sulfonic acid co maleic acid sodium salt (PSSAMA_Na) capped silver nanoparticle (Ag_Np) embedded sodium alginate (Na-Alg) nanocomposite membranes have been developed to improve the pervaporation (PV) dehydration of bioethanol. The effect of PSSAMA_Na capped Ag_Nps on the micro-morphology, physicochemical properties and separation performance of the derived membranes was analyzed as a function of temperature at the azeotropic composition of the bioethanol-water mixture. WAXD analysis shows a decrease in crystalline domains with the increase in PSSAMA_Na capped Ag_Nps content and confirms the presence of Ag_Nps. DSC analysis demonstrated that the hydrophilic nature enhances as the PSSAMA_Na capped Ag_Nps content increases in the membrane matrix. Further, both total permeation flux and separation selectivity were increased with an increase in PSSAMA_Na capped Ag_Nps content. The results revealed that the membrane with 3 mass% of PSSAMA_Na capped Ag_Nps exhibited the highest permeation flux (13.40 × 10 kg m h) and separation selectivity (11 406) at 30 °C which indicate its better PV performance. The total permeation flux and permeation flux of water values were close to each other, which confirms that the membranes can be efficiently used to remove the water from azeotropic aqueous bioethanol.

摘要

已开发出聚苯乙烯 - 4 - 磺酸共马来酸钠盐(PSSAMA_Na)包覆的银纳米颗粒(Ag_Np)嵌入海藻酸钠(Na - Alg)的纳米复合膜,以改善生物乙醇的渗透蒸发(PV)脱水性能。在生物乙醇 - 水混合物的共沸组成下,分析了PSSAMA_Na包覆的Ag_Np对所得膜的微观形态、物理化学性质和分离性能随温度的影响。广角X射线衍射(WAXD)分析表明,随着PSSAMA_Na包覆的Ag_Np含量增加,结晶域减少,并证实了Ag_Np的存在。差示扫描量热法(DSC)分析表明,随着膜基质中PSSAMA_Na包覆的Ag_Np含量增加,亲水性增强。此外,随着PSSAMA_Na包覆的Ag_Np含量增加,总渗透通量和分离选择性均增加。结果表明,含有3质量% PSSAMA_Na包覆的Ag_Np的膜在30°C时表现出最高的渗透通量(13.40×10 kg m h)和分离选择性(11406),这表明其具有更好的PV性能。水的总渗透通量和渗透通量值彼此接近,这证实了该膜可有效地用于从共沸含水生物乙醇中除去水。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08c7/9054592/59cb265202bf/d0ra01951h-f1.jpg

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