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Sorption of heavy metals on a chitosan-grafted-polypropylene nonwoven geotextile

机译:壳聚糖接枝聚丙烯非织造土工布对重金属的吸附

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This work describes the development of an environmental friendly functionalized polypropylene nonwoven geotextile (PP) in order to trap heavy metals in sediments and sludges. Chitosan was chosen as the sorbent because of its ability to trap heavy metals, of its natural origin (from shells), and of its low cost. PP was first functionalized with acrylic acid using a cold plasma process, in order to bring some reactive carboxylic functions onto the surface. Chitosan was then covalently grafted on the acrylic acid modified polypropylene. The functionalized surfaces were characterized by FTIR (Fourier Transform InfraRed) and chitosan was thus proven to be grafted. The ability of the functionalized textile to trap heavy metals was then investigated. Copper was chosen as the model heavy metal, and artificial solutions of CuSO4 were prepared for the experiments. Sorption studies among the concentration of copper in polluted solutions at 20°C were carried out with PP-g-AA-chitosan (Polypropylene-grafted-Acrylic acid-chitosan) in order to evaluate the maximum of absorption of this surface: the textile can chelate copper increasingly with the initial copper concentration until 800 ppm where it reaches a plateau at about 30 mg/L. The effects of pH and of the ionic strength (absorption in a NaCl containing solution) were finally investigated. The trapping of Cu2+ decreases slowly when the ionic strength increases. For a seawater-like NaCl concentration of 30g/L, the textile still chelates about 20 mg/L of Cu2+. Finally, the optimum pH to trap the maximum amount of copper was determined to be 4.75, which corresponds to the optimum pH for the solubility of the chitosan.Key words: Polypropylene nonwoven / chitosan / cold plasma / heavy metal / depollution / sediment
机译:这项工作描述了一种环保的功能化聚丙烯非织造土工布(PP)的开发,目的是将重金属捕获在沉积物和淤泥中。壳聚糖之所以被选作吸附剂,是因为其能够捕获重金属,其天然来源(来自贝壳)以及成本低廉。首先使用冷等离子体工艺用丙烯酸对PP进行功能化,以将一些反应性羧基官能团带到表面。然后将壳聚糖共价接枝到丙烯酸改性的聚丙烯上。通过FTIR(傅立叶变换红外)对功能化的表面进行了表征,从而证明了壳聚糖已被接枝。然后研究了功能化纺织品捕获重金属的能力。选择铜作为模型重金属,并为实验准备了人工硫酸铜溶液。为了评估该表面的最大吸收率,使用PP-g-AA-壳聚糖(聚丙烯接枝丙烯酸-壳聚糖)对20°C下污染溶液中的铜浓度进行了吸附研究。以初始铜浓度逐渐螯合铜,直到800 ppm达到约30 mg / L的稳定水平。最后研究了pH和离子强度(在含NaCl的溶液中吸收)的影响。当离子强度增加时,Cu2 +的俘获缓慢降低。对于浓度为30g / L的类似海水的NaCl,纺织品仍会螯合约20 mg / L的Cu2 +。最终,捕获最大铜量的最佳pH值确定为4.75,这对应于壳聚糖的溶解度的最佳pH值。关键词:聚丙烯无纺布/壳聚糖/冷等离子体/重金属/污染/沉积物

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