Donato Laura, Nasser Imen Iben, Majdoub Mustapha, Drioli Enrico
Institute on Membrane Technology, CNR-ITM, University of Calabria, Via P. Bucci, 17/C, 87030 Rende, CS, Italy.
Faculté des Sciences de Monastir, Université de Monastir, Bd. de l'Environnement, Monastir 5019, Tunisia.
Membranes (Basel). 2022 Apr 27;12(5):472. doi: 10.3390/membranes12050472.
Technological progress has made chemistry assume a role of primary importance in our daily life. However, the worsening of the level of environmental pollution is increasingly leading to the realization of more eco-friendly chemical processes due to the advent of green chemistry. The challenge of green chemistry is to produce more and better while consuming and rejecting less. It represents a profitable approach to address environmental problems and the new demands of industrial competitiveness. The concept of green chemistry finds application in several material syntheses such as organic, inorganic, and coordination materials and nanomaterials. One of the different goals pursued in the field of materials science is the application of GC for producing sustainable green polymers and membranes. In this context, extremely relevant is the application of green chemistry in the production of imprinted materials by means of its combination with molecular imprinting technology. Referring to this issue, in the present review, the application of the concept of green chemistry in the production of polymeric materials is discussed. In addition, the principles of green molecular imprinting as well as their application in developing greenificated, imprinted polymers and membranes are presented. In particular, green actions (e.g., the use of harmless chemicals, natural polymers, ultrasound-assisted synthesis and extraction, supercritical CO, etc.) characterizing the imprinting and the post-imprinting process for producing green molecularly imprinted membranes are highlighted.
技术进步使化学在我们的日常生活中占据了至关重要的地位。然而,由于绿色化学的出现,环境污染程度的日益恶化正促使人们越来越多地实现更环保的化学过程。绿色化学的挑战在于在减少消耗和废弃物排放的同时生产更多更好的产品。它是解决环境问题和满足工业竞争力新需求的一种有益方法。绿色化学的概念在多种材料合成中都有应用,比如有机材料、无机材料、配位材料和纳米材料。材料科学领域追求的不同目标之一是应用绿色化学来生产可持续的绿色聚合物和膜。在这种背景下,绿色化学通过与分子印迹技术相结合在印迹材料生产中的应用极其重要。针对这个问题,在本综述中,将讨论绿色化学概念在聚合物材料生产中的应用。此外,还将介绍绿色分子印迹的原理及其在开发绿色化的印迹聚合物和膜方面的应用。特别强调了用于生产绿色分子印迹膜的印迹和印迹后处理过程中的绿色行动(例如使用无害化学品、天然聚合物、超声辅助合成和萃取、超临界二氧化碳等)。