Haque S K Nazmul, Bhuyan Md Murshed, Jeong Jae-Ho
Research Center for Green Energy Systems, Department of Mechanical, Smart, and Industrial Engineering (Mechanical Engineering Major), Gachon University, 1342 Seongnam-daero, Sujeong-gu, Seongnam-si 13120, Republic of Korea.
Gels. 2024 May 28;10(6):375. doi: 10.3390/gels10060375.
Along with serving as drug delivery sensors and flexible devices, hydrogels are playing pioneering roles in water purification. Both chemical and radiation methods can produce hydrogels, with the latter method gaining preference for its pure adducts. The water treatment process entails the removal of heavy and toxic metals (above the threshold amount), dyes, and solid wastes from industrial effluents, seawater, and groundwater, as well as sterilization for microorganism destruction. This review analyzed the different types of hydrogels produced by applying various radiations for water treatment. Particularly, we examined the hydrogels created through the application of varying levels of gamma and electron beam radiation from the electron gun and Co-60 sources. Moreover, we discuss the optimized radiation doses, the compositions (monomers and polymers) of raw materials required for hydrogel preparation, and their performance in water purification. We present and predict the current state and future possibilities of radiation-induced hydrogels. We explain and compare the superiority of one radiation method over other radiation methods (UV-visible, X-ray, microwave, etc.) based on water treatment.
水凝胶除了用作药物递送传感器和柔性器件外,还在水净化领域发挥着开创性作用。化学方法和辐射方法都可以制备水凝胶,后一种方法因其产物纯净而更受青睐。水处理过程需要从工业废水、海水和地下水中去除重金属和有毒金属(超过阈值量)、染料和固体废物,以及进行杀菌以消灭微生物。本综述分析了通过应用各种辐射制备的不同类型水凝胶在水处理中的应用。特别是,我们研究了通过应用来自电子枪和钴 - 60源的不同水平的伽马射线和电子束辐射制备的水凝胶。此外,我们讨论了优化的辐射剂量、制备水凝胶所需原料的组成(单体和聚合物)及其在水净化中的性能。我们展示并预测了辐射诱导水凝胶的当前状态和未来可能性。我们基于水处理解释并比较了一种辐射方法相对于其他辐射方法(紫外可见、X射线、微波等)的优越性。