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Biomass-Based Synthesis of Green and Biodegradable Molecularly Imprinted Membranes for Selective Recognition and Separation of Tetracycline

机译:基于生物量的绿色和可生物降解的分子印迹膜的合成,用于选择性识别和分离四环素

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Aggravating environmental problems have driven the unprecedented development of sustainable materials. Treatments of environmental pollutants with biomass-based sustainable materials are catching attention of more researchers. In the present work, a biomass-based strategy was developed to prepare sustainable molecularly imprinted nanocomposite membranes (S-MINMs). Based on this strategy, biomass-activated carbon nanoparticles (ACNPs) as the porous filler were integrated into the porous cellulose acetate (CA)/chitosan (CS) hybrid membranes to synthesize renewable and easy degradable basal membranes. The specific recognition sites were fabricated from simple free radical polymerization method, and using methacrylic acid (MAA) and acrylamide (Am) as functional monomers, we obtain improved adsorption capacity on tetracycline (TC, template molecule). Performance of S-MINMs was evaluated by adsorption isotherm, adsorption kinetics, perm-selectivity, reusability and biodegradability. Results indicated that the as-prepared S-MINMs not only exhibited desirable biodegradability, but also possess superior adsorption and separation performance toward TC (15.99 mg g(-1) for adsorption capacity and 4.91 for perms-selectivity factor). The method developed here shows great potential for development of sustainable membranes for selective separation of various pollutants.
机译:加重环境问题推动了可持续材料的前所未有的发展。对基于生物质的可持续材料的环境污染物的处理正在引起更多研究人员的注意力。在本作工作中,开发了一种基于生物质的策略以制备可持续的分子印迹纳米复合材料膜(S-迷你)。基于该策略,将生物量激活的碳纳米粒子(ACNP)整合到多孔纤维素(CA)/壳聚糖(CS)杂化膜中,以合成可再生和易降解的基础膜。特定识别位点由简单的自由基聚合方法制成,并使用甲基丙烯酸(MAA)和丙烯酰胺(AM)作为功能性单体,我们在四环素(TC,模板分子)上获得了改善的吸附能力。通过吸附等温线,吸附动力学,渗透性,可重用性和生物降解性评估S-MinMS的性能。结果表明,制备的S-MINMS不仅表现出理想的生物降解性,而且对TC(15.99mg g(-1)的吸附能力和4.91用于允许选择性因子的4.91具有卓越的吸附和分离性能)。此处开发的方法显示出可持续膜的发展,用于选择性分离各种污染物。

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