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首页> 外文期刊>Frontiers in Chemistry >Fabrication of CMC-g-PAM Superporous Polymer Monoliths via Eco-Friendly Pickering-MIPEs for Superior Adsorption of Methyl Violet and Methylene Blue
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Fabrication of CMC-g-PAM Superporous Polymer Monoliths via Eco-Friendly Pickering-MIPEs for Superior Adsorption of Methyl Violet and Methylene Blue

机译:通过生态友好的Pickering-MIPE制备CMC-g-PAM超多孔聚合物整体材料,以实现甲基紫和亚甲基蓝的优异吸附

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摘要

A series of superporous carboxymethylcellulose-graft-poly(acrylamide) (CMC-g-PAM) polymer monoliths presenting interconnected pore structure and excellent adsorption properties were prepared by one-step free-radical grafting polymerization reaction of CMC and acrylamide (AM) in the oil-in-water (O/W) Pickering-medium internal phase emulsions (Pickering-MIPEs) composed of non-toxic edible oil as a dispersion phase and natural Pal nanorods as stabilizers. The effects of Pal dosage, AM dosage, and co-surfactant Tween-20 (T-20) on the pore structures of the monoliths were studied. It was revealed that the well-defined pores were formed when the dosages of Pal and T-20 are 9-14% and 3%, respectively. The porous monolith can rapidly adsorb 1585 mg/g of methyl violet (MV) and 1625 mg/g of methylene blue (MB). After the monolith was regenerated by adsorption-desorption process for 5 times, the adsorption capacities still reached 92.1% (for MV) and 93.5% (for MB) of the initial maximum adsorption capacities. The adsorption process was fitted with Langmuir adsorption isotherm model and pseudo-second-order adsorption kinetic model very well, which indicate that mono-layer chemical adsorption mainly contribute to the high-capacity adsorption for dyes. The superporous polymer monolith prepared from eco-friendly Pickering-MIPEs shows good adsorption capacity and fast adsorption rate, which is potential adsorbent for the decontimination of dye-containing wastewater.
机译:通过CMC与丙烯酰胺(AM)一步自由基接枝聚合反应,制备了具有连通孔结构和优良吸附性能的一系列多孔羧甲基纤维素接枝聚(丙烯酰胺)(CMC-g-PAM)聚合物整体材料。水包油(O / W)Pickering中内相乳液(Pickering-MIPE),由无毒食用油作为分散相和天然Pal纳米棒作为稳定剂。研究了Pal剂量,AM剂量和助表面活性剂Tween-20(T-20)对整料孔结构的影响。揭示了当Pal和T-20的剂量分别为9-14%和3%时,形成了清晰的孔。多孔整料可以快速吸附1585 mg / g的甲基紫(MV)和1625 mg / g的亚甲基蓝(MB)。通过吸附-脱附过程使整料再生5次之后,吸附容量仍达到初始最大吸附容量的92.1%(对于MV)和93.5%(对于MB)。吸附过程很好地拟合了Langmuir吸附等温线模型和拟二阶吸附动力学模型,表明单层化学吸附主要是对染料的高容量吸附。由环保的Pickering-MIPEs制备的超孔聚合物整料显示出良好的吸附能力和快速的吸附速率,这是去污含染料废水的潜在吸附剂。

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