Department of Environmental Engineering, Faculty of Civil Planning and Geo Engineering, Institut Teknologi Sepuluh Nopember, Surabaya, East Java, Indonesia.
Bioengineered. 2023 Dec;14(1):2252234. doi: 10.1080/21655979.2023.2252234.
Membrane technology can play a suitable role in removing pharmaceutical active compounds since it requires low energy and simple operation. Even though membrane technology has progressed for wastewater applications nowadays, modifying membranes to achieve the strong desired membrane performance is still needed. Thus, this study overviews a comprehensive insight into the application of modified polymer membranes to remove pharmaceutical active compounds from wastewater. Biotoxicity of pharmaceutical active compounds is first prescribed to gain deep insight into how membranes can remove pharmaceutical active compounds from wastewater. Then, the behavior of the diffusion mechanism can be concisely determined using mass transfer factor model that represented by β and B with value up to 2.004 g h mg and 1.833 mg g for organic compounds including pharmaceutical active compounds. The model refers to the adsorption of solute to attach onto acceptor sites of the membrane surface, external mass transport of solute materials from the bulk liquid to the membrane surface, and internal mass transfer to diffuse a solute toward acceptor sites of the membrane surface with evidenced up to 0.999. Different pharmaceutical compounds have different solubility and relates to the membrane hydrophilicity properties and mechanisms. Ultimately, challenges and future recommendations have been presented to view the future need to enhance membrane performance regarding fouling mitigation and recovering compounds. Afterwards, the discussion of this study is projected to play a critical role in advance of better-quality membrane technologies for removing pharmaceutical active compounds from wastewater in an eco-friendly strategy and without damaging the ecosystem.
膜技术在去除药物活性化合物方面可以发挥适当的作用,因为它需要的能量低,操作简单。尽管膜技术在废水处理方面已经取得了进展,但仍需要对膜进行改性以实现所需的膜性能。因此,本研究综述了改性聚合物膜在去除废水中药物活性化合物方面的应用。首先规定药物活性化合物的生物毒性,以深入了解膜如何从废水中去除药物活性化合物。然后,可以使用质量传递因子模型(β和 B)简洁地确定扩散机制的行为,该模型的值高达 2.004 g h mg 和 1.833 mg g,适用于包括药物活性化合物在内的有机化合物。该模型表示溶质在膜表面接受点上的吸附、溶质从主体液体到膜表面的外部传质以及溶质向膜表面接受点的内部传质,证据表明达到 0.999。不同的药物化合物具有不同的溶解度,这与膜的亲水性特性和机制有关。最终,提出了挑战和未来建议,以展望未来在减轻膜污染和回收化合物方面增强膜性能的需求。随后,本研究的讨论将在以生态友好的策略去除废水中药物活性化合物的高质量膜技术方面发挥关键作用,而不会破坏生态系统。