Department of Chemistry, National Institute of Technology Mizoram, Chaltlang, Aizawl, 796012, India.
Department of Chemistry, National Institute of Technology Mizoram, Chaltlang, Aizawl, 796012, India.
Chemosphere. 2022 Nov;307(Pt 2):135869. doi: 10.1016/j.chemosphere.2022.135869. Epub 2022 Aug 7.
A majority of water pollution or contamination occurs through the discharge of effluents from industries. Wastewater treatment is crucial to protect our water sources from harmful pollutants. Therefore, a number of efforts have been made to tackle this issue by employing different techniques. Clay minerals and polymers are among these materials used extensively in wastewater treatment. While both have their own drawbacks, it is fascinating to discover that they complement each other to overcome most of their limitations. As a result, clay-polymer nanocomposites (CPNs) have been found to be highly efficient in the adsorption of pollutants from water and show promising results to be a long-term candidate for this purpose. In this paper, we discuss about different types of clay and polymers used in the preparation of CPNs. The work also focuses on the different types of clay-polymer nanocomposites, their synthesis and factors affecting their performance such as pH, temperature, contact time, pollutant concentration and adsorbent dose. In addition, the maximum adsorption capacity, mechanism and kinetics of adsorption are highlighted to assess the performance of CPNs. Various studies indicate that CPNs are only a few steps away from becoming one of the best options for wastewater treatment due to their multiple desirable properties.
大多数水污染或污染是通过工业废水排放造成的。废水处理对于保护我们的水源免受有害污染物至关重要。因此,人们已经做出了许多努力来解决这个问题,采用了不同的技术。粘土矿物和聚合物是广泛用于废水处理的材料。虽然它们各有缺点,但令人着迷的是,它们相互补充,克服了大多数限制。因此,已经发现粘土-聚合物纳米复合材料(CPN)在吸附水中污染物方面非常有效,并有望成为该目的的长期候选材料。本文讨论了用于制备 CPN 的不同类型的粘土和聚合物。这项工作还侧重于不同类型的粘土-聚合物纳米复合材料的合成以及影响其性能的因素,如 pH 值、温度、接触时间、污染物浓度和吸附剂剂量。此外,还强调了最大吸附容量、吸附机制和动力学,以评估 CPN 的性能。各种研究表明,由于 CPN 具有多种理想的特性,它们距离成为废水处理的最佳选择之一只有几步之遥。