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Development of an Adsorbent for Bisphenol A Based on a Polymer Grafted from Microcrystalline Cellulose

机译:基于从微晶纤维素接枝的聚合物的双酚A对双酚A的吸附剂的研制

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摘要

We aimed to develop a sustainable adsorbent for bisphenol A (BPA), an endocrine disruptor that seriously threatens human health. First, microcrystalline cellulose (MCC) was reacted with 2-bromoisobutyrylbromide to obtain a surface initiator (SI) for the grafting of polystyrene (PS), poly(lauryl methacrylate) (PLMA), and poly(N,N-dimethylaminoethyl methacrylate) (PDM) through ARGET-ATRP. These polymers may have favorably interacted with BPA, which led to its removal. SIs were characterized by FTIR and XPS to corroborate the grafting of 2-bromoisobutyryl and determine its abundance. X-ray diffraction analysis indicated retained crystal morphology with decreased MCC crystallinity. FTIR, thermogravimetric, and elemental analyses confirmed the grafting of MCC with polymers and revealed their composition. PS and PLMA had a minor effect on the crystallinity and morphology of MCC microfibers, whereas grafting PDM decreased the crystallinity of cellulose and the particle size. MCC grafted with polymers were tested as adsorbents of BPA by measuring the equilibrium uptake and removal through column filtration. PDM was found to endow cellulose with superior capacity of removing BPA, which was enhanced with increased amount of grafted polymer. A comparison of MCC grafted with PDM with activated carbon as adsorbents of BPA suggested the superior performance of the developed materials based on the largest maximum uptake.
机译:我们旨在为双酚A(BPA)开发一种可持续的吸附剂,这是一种严重威胁人类健康的内分泌干扰。首先,将微晶纤维素(MCC)与2-溴异丁酰基溴反应,得到用于嫁接聚苯乙烯(PS),聚(月桂基甲基丙烯酸酯)(PLMA)的表面引发剂(Si),以及聚(N,N-二甲基氨基甲基丙烯酸甲酯)( PDM)通过Arget-ATRP。这些聚合物可能有利地与BPA相互作用,这导致其去除。 SIS以FTIR和XPS为特征,以证实2-溴代丁酰基的接枝并确定其丰度。 X射线衍射分析表明保留的晶体形态,降低了MCC结晶度。 FTIR,Thermogravimetric和元素分析证实了MCC与聚合物的接枝,并揭示了它们的组合物。 PS和PLMA对MCC微纤维的结晶度和形态有次要影响,而接枝PDM降低了纤维素的结晶度和粒径。通过测量平衡摄取和通过柱过滤除去,用聚合物接枝聚合物接枝的MCC作为BPA的吸附剂。发现PDM赋予纤维素,以具有优异的去除BPA的能力,其随着嫁接聚合物的增加而增强。作为BPA的吸附剂与活性炭接枝的MCC与活性炭的比较表明,基于最大的最大摄取的发达材料的优异性能。

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