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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Coprecipitation-An Efficient Method for Removal of Polymer Nanoparticles from Water
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Coprecipitation-An Efficient Method for Removal of Polymer Nanoparticles from Water

机译:共沉淀 - 一种高分子纳米颗粒从水中除去的有效方法

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摘要

Increasing concentrations of micro- and nanoparticles of common polymers are beginning to cause significant damage to our environment. Techniques such as coagulation and flocculation are commonly used for the removal of particles from water. As a proof of concept, here we investigate the removal of synthetic poly(methyl methacrylate) (PMMA) and poly(vinyl acetate) (PVAc) nanoparticles from aqueous solution through the calcium carbonate (CaCO3) coprecipitation method. The physical entrapment and negative surface charges of the polymer particles play a significant role toward the efficient removal during coprecipitation. Critical parameters, such as the amount of solid precipitated, contact time, interfering ions, and initial concentrations of sodium carbonate and calcium chloride solutions were optimized for maximum removal of polymeric nanoparticles. Our study shows that equilibrium was established within 30 min for the complete removal (99%) of both PMMA and PVAc nanoparticles, using relatively low concentrations of Na2CO3 and CaCl2 solutions. The results also imply that such a simple and efficient coprecipitation method using natural and nontoxic materials could be used as an alternative method for the removal of plastic nanoparticles and other pollutants from water.
机译:常见聚合物的浓度增加浓度和纳米颗粒开始对我们的环境造成重大损害。诸如凝结和絮凝的技术通常用于从水中除去颗粒。作为概念证明,在这里,我们研究了通过碳酸钙(CaCO 3)共沉淀法从水溶液中除去合成聚(甲基丙烯酸甲酯)(PMMA)和聚(乙酸乙烯酯)(PVAC)纳米颗粒。聚合物颗粒的物理夹带和负面电荷在共沉淀过程中有效的去除起显着作用。优化了临界参数,例如沉淀,接触时间,干扰离子和碳酸钠钠和氯化钙溶液的初始浓度,以最大地除去聚合物纳米颗粒。我们的研究表明,使用相对低浓度的Na 2 CO 3和CaCl 2溶液,在30分钟内建立平衡。结果还意味着这种使用天然和无毒材料的简单高效的共沉淀方法可以用作从水中除去塑料纳米粒子和其他污染物的替代方法。

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