Fabiana Rodrigues de Almeida, Ivana Lourenço de Mello Ferreira, R. A. dos Reis
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引用次数: 0
Abstract
The inefficiency of conventional water treatment methods in terms of removing micropollutants is prompting research into other technologies. Among these, the process of separation by nanofiltration membranes is particularly promising because of the low operating cost, rapid implementation of the system, high selectivity and easy integration with other treatment processes. Studies in this area are recent and there are many avenues for future research. This mini-review describes the main characteristics of the polymeric membranes used for nanofiltration, and the various methods and polymer materials under investigation. At the end, we report the result of a survey conducted in the ScienceDirect, Scopus and Web of Science platforms using different keywords, to depict a global panorama of the current research involving polymeric nanofiltration membranes. The results revealed a particular dearth of published studies involving application of these membranes to remove micropollutants with endocrine disruptive action. Furthermore, research involving nanofiltration membranes utilizing calcium alginate is very recent. This study provides an overview of the investigation of polymeric nanofiltration membranes.
传统的水处理方法在去除微污染物方面效率低下,这促使人们对其他技术进行研究。其中,纳滤膜分离工艺特别有前景,因为其操作成本低,系统实施迅速,选择性高,易于与其他处理工艺集成。这一领域的研究是最近的,未来的研究有很多途径。这篇小型综述描述了用于纳滤的聚合物膜的主要特性,以及正在研究的各种方法和聚合物材料。最后,我们报告了在ScienceDirect、Scopus和Web of Science平台上使用不同关键词进行的一项调查结果,以描绘当前聚合物纳滤膜研究的全球全景。研究结果表明,很少有已发表的研究涉及应用这些膜去除具有内分泌破坏作用的微污染物。此外,利用海藻酸钙的纳滤膜的研究是非常新的。本研究综述了聚合物纳滤膜的研究进展。
期刊介绍:
Mini-Reviews in Organic Chemistry is a peer reviewed journal which publishes original reviews on all areas of organic chemistry including organic synthesis, bioorganic and medicinal chemistry, natural product chemistry, molecular recognition, and physical organic chemistry. The emphasis will be on publishing quality papers very rapidly, without any charges.
The journal encourages submission of reviews on emerging fields of organic chemistry including:
Bioorganic Chemistry
Carbohydrate Chemistry
Chemical Biology
Chemical Process Research
Computational Organic Chemistry
Development of Synthetic Methodologies
Functional Organic Materials
Heterocyclic Chemistry
Macromolecular Chemistry
Natural Products Isolation And Synthesis
New Synthetic Methodology
Organic Reactions
Organocatalysis
Organometallic Chemistry
Theoretical Organic Chemistry
Polymer Chemistry
Stereochemistry
Structural Investigations
Supramolecular Chemistry