首页> 外文期刊>International Journal of Physical Sciences >Heavy metal removal by ambient-temperature argon plasma modified polyethylene terephthalate (PET) fibers with surface acrylic acid grafting
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Heavy metal removal by ambient-temperature argon plasma modified polyethylene terephthalate (PET) fibers with surface acrylic acid grafting

机译:室温氩等离子体改性的聚对苯二甲酸乙二醇酯(PET)纤维表面丙烯酸接枝去除重金属

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摘要

This study utilized the capability of ambient-temperature plasma in modifying the surface properties of materials to activate the nonwoven polyethylene terephthalate (PET) fiber surfaces. The effects of different plasma treatment parameters (such as plasma power, treatment time) and grafting parameters (such as grafting temperature, acrylic acid monomer concentration, grafting time) on the activation and grafting of the PET fibers were studied. The feasibility of applying ambient-temperature plasma combined with grafting technology for the preparation of ion exchangers in the wastewater treatment was evaluated. The results showed that the optimal modification effect of PET fibers by Argon plasma and the highest hydrophilicity was achieved at a plasma power of 800 W and treatment time of 10 s. During the grafting procedure, the optimal grafting yield of 4.45% was observed at a grafting temperature of 90°C, an acrylic acid monomer concentration of 6 M, and a reaction time of 5 h. The above surface modification and acrylic acid grafting conditions were used to prepare the ion exchangers for the investigation of subsequent adsorption behaviors. Suitable adsorption performance was achieved at a solution pH of 6, with the adsorption of Copper ion of 0.073 mmole Cu/g-polymer, Lead ion of 0.037 mmole Pb/g-polymer, and Nickel ion of 0.012 mmole Ni/g-polymer. After calculation, the reaction heat was found to be 13.74 kJ/mol, indicating that the adsorption was an endothermic reaction.
机译:这项研究利用常温等离子体的能力来改变材料的表面特性,以激活非织造聚对苯二甲酸乙二醇酯(PET)纤维表面。研究了不同等离子体处理参数(如等离子体功率,处理时间)和接枝参数(如接枝温度,丙烯酸单体浓度,接枝时间)对PET纤维活化和接枝的影响。评价了常温等离子体结合接枝技术在废水处理中制备离子交换剂的可行性。结果表明,在800 W的等离子体功率和10 s的处理时间下,氩气对PET纤维的改性效果最佳,亲水性最高。在接枝过程中,在90℃的接枝温度,6M的丙烯酸单体浓度和5小时的反应时间下观察到4.45%的最佳接枝率。上述表面改性和丙烯酸接枝条件用于制备离子交换剂,用于研究随后的吸附行为。在溶液的pH值为6时,铜离子的吸附量为0.073 mmole Cu / g聚合物,铅离子为0.037 mmole Pb / g聚合物,镍离子为0.012 mmole Ni / g聚合物,可获得合适的吸附性能。经计算,发现反应热为13.74kJ / mol,表明吸附是吸热反应。

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