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首页> 外文期刊>Chemistry: A European journal >Rapid and effective adsorption of lead ions on fine poly(phenylenediamine) microparticles
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Rapid and effective adsorption of lead ions on fine poly(phenylenediamine) microparticles

机译:铅离子在聚苯二胺细颗粒上的快速有效吸附

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摘要

Fine microparticles of poly(p-phenylenediamine) (PpPD) and poly(m-phenylenediamine) (PmPD) were directly synthesized by a facile oxidative precipitation polymerization and their strong ability to adsorb lead ions from aqueous solution was examined. It was found that the degree of adsorption of the lead ions depends on the pH, concentration, and temperature of the lead ion solution, as well as the contact time and microparticle dose. The adsorption data fit the Langmuir isotherm and the process obeyed pseudo-second-order kinetics. According to the Langmuir equation, the maximum adsorption capacities of lead ions onto PpPD and PmPD microparticles at 30 degrees C are 253.2 and 242.7 mg g(-1), respectively. The highest adsorptivity of lead ions is up to 99.8%. The adsorption is very rapid with a loading half-time of only 2 min as well as initial adsorption rates of 95.24 and 83.06 mg g(-1) min(-1) on PpPD and PmPD particles, respectively. A series of batch experiment results showed that the PpPD microparticles possess an even stronger capability to adsorb lead ions than the PmPD microparticles, but the PmPD microparticles, with a more-quinoid-like structure, show a stronger dependence of lead-ion adsorption on the pH and temperature of the lead-ion solution. A possible adsorption mechanism through complexation between Pb2+ ions and =N-groups on the macromolecular chains has been proposed. The powerful leadion adsorption on the microparticles makes them promising adsorbents for wastewater cleanup.
机译:聚(对苯二胺)(PpPD)和聚(间苯二胺)(PmPD)的微粒是通过容易的氧化沉淀聚合直接合成的,并研究了它们从水溶液中吸附铅离子的强大能力。发现铅离子的吸附程度取决于铅离子溶液的pH,浓度和温度,以及接触时间和微粒剂量。吸附数据符合Langmuir等温线,且该过程遵循拟二级动力学。根据Langmuir方程,在30摄氏度时,铅离子在PpPD和PmPD微粒上的最大吸附容量分别为253.2和242.7 mg g(-1)。铅离子的最高吸附率高达99.8%。 PpPD和PmPD颗粒的吸附速度非常快,半衰期仅为2分钟,初始吸附速率分别为95.24和83.06 mg g(-1)min(-1)。一系列分批实验结果表明,PpPD微粒具有比PmPD微粒更高的吸附铅离子的能力,但PmPD微粒具有更类似于醌的结构,表现出更强的铅离子吸附依赖性。铅离子溶液的pH和温度。有人提出了可能通过大分子链上的Pb2 +离子与= N-基团络合的吸附机理。微粒上强大的铅吸附使其成为有望用于废水净化的吸附剂。

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