Department of Chemical Engineering and Materials Science , Wayne State University , Detroit , Michigan 48202 , United States.
ACS Appl Mater Interfaces. 2019 Feb 20;11(7):7472-7478. doi: 10.1021/acsami.8b21674. Epub 2019 Feb 11.
Effluent wastewater containing dyes from textile, paint, and various other industrial wastes have long posed environmental damage. Functional nanomaterials offer new opportunities to treat these effluent wastes in an unprecedentedly rapid and efficient fashion due to their large surface area-to-volume ratio. In this work, we explore a new approach of wastewater treatment using macroionic coacervate complexes formed with zwitterionic polyampholytes and anionic inorganic polyoxometalate (POM) nanoclusters to extract methylene blue (MB) dye as well as other cationic industrial dyes from model wastewater. Biphasic organic-inorganic macroion complexes are designed to produce a small volume of coacervate adsorbents of high density and viscoelasticity, in contrast to a large volume of supernatant solution for rapid and efficient dye removal. The efficiency of coacervate extraction is characterized by the adsorption isotherm and maximum MB uptake capacity against the concentrations of polyampholyte, POM, and LiCl salt using UV-vis spectrophotometry to optimize the coacervate formation conditions. Our macroionic coacervate complexes could reach nearly 99% removal efficiency for the model wastewater samples of varied MB concentration in <1 min. The extraction capacity up to ∼400 mg/g far surpasses the dye extraction efficiency of widely used activated carbon adsorbents. We also explore the regeneration of coacervate complexes containing high concentration of extracted MB by a simple Fenton oxidation process to bleach coacervate complexes for repeated POM usage, which shows similar MB extraction efficiency after regeneration. Hence, coacervate extraction based upon spontaneous liquid-liquid separating complexation between polyzwitterions and POMs is demonstrated as a rapid, efficient, and sustainable method for industrial dye wastewater treatment. In perspective, coacervate extraction could advantageously possess dual processing options in separation industry through either membrane fabrication or use directly in mixer-settlers.
含有染料的废水来自纺织、涂料和各种其他工业废物,长期以来对环境造成了破坏。由于具有较大的表面积与体积比,功能纳米材料为以前所未有的快速和高效方式处理这些废水废物提供了新的机会。在这项工作中,我们探索了一种使用两性聚电解质与阴离子多金属氧酸盐纳米簇形成聚离子凝聚复合物处理废水的新方法,以从模型废水中提取亚甲蓝 (MB) 染料和其他阳离子工业染料。设计了两相有机-无机聚离子复合物,以产生高密度和高粘弹性的小体积凝聚吸附剂,与大量上清液相比,可实现快速高效的染料去除。使用紫外可见分光光度法通过吸附等温线和最大 MB 摄取容量来表征凝聚萃取的效率,以优化凝聚形成条件。我们的聚离子凝聚复合物在 <1 分钟内可以达到近 99%的去除效率,对于不同 MB 浓度的模型废水样品。萃取容量高达 ∼400mg/g,远远超过了广泛使用的活性炭吸附剂的染料萃取效率。我们还通过简单的芬顿氧化过程探索了含有高浓度提取 MB 的凝聚复合物的再生,以漂白凝聚复合物以重复使用 POM,在再生后显示出相似的 MB 萃取效率。因此,聚两性离子与 POM 之间自发液-液分离配合的凝聚萃取被证明是一种快速、高效、可持续的工业染料废水处理方法。从长远来看,凝聚萃取可以通过膜制造或直接在混合沉降器中使用,在分离行业中具有双重处理选择。