Lou Xiang-Yang, Yohai Lucia, Boada Roberto, Resina-Gallego Montserrat, Han Dong, Valiente Manuel
Grup de Tècniques de Separació en Química (GTS-UAB Research Group), Department of Chemistry, Facultat de Ciències, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain.
Instituto de Investigaciones en Ciencia y Tecnología de Materiales (INTEMA), Universidad Nacional de Mar del Plata-Consejo Nacional de Investigaciones Científicas y Técnicas (UNMdP-CONICET), Mar del Plata B7608FDQ, Argentina.
Molecules. 2023 Dec 21;29(1):59. doi: 10.3390/molecules29010059.
Increasing levels of boron in water exceeding acceptable thresholds have triggered concerns regarding environmental pollution and adverse health effects. In response, significant efforts are being made to develop new adsorbents for the removal of boron from contaminated water. Among the various materials proposed, inorganic adsorbents have emerged as promising materials due to their chemical, thermal, and mechanical stability. This review aims to comprehensively examine recent advances made in the development of inorganic adsorbents for the efficient removal of boron from water. Firstly, the adsorption performance of the most used adsorbents, such as magnesium, iron, aluminum, and individual and mixed oxides, are summarized. Subsequently, diverse functionalization methods aimed at enhancing boron adsorption capacity and selectivity are carefully analyzed. Lastly, challenges and future perspectives in this field are highlighted to guide the development of innovative high-performance adsorbents and adsorption systems, ultimately leading to a reduction in boron pollution.
水中硼含量不断增加并超过可接受阈值,引发了对环境污染和健康不良影响的担忧。作为回应,人们正在大力研发新型吸附剂,用于从受污染水中去除硼。在提出的各种材料中,无机吸附剂因其化学、热和机械稳定性而成为有前景的材料。本综述旨在全面考察无机吸附剂开发方面的最新进展,以高效去除水中的硼。首先,总结了最常用吸附剂(如镁、铁、铝以及单一和混合氧化物)的吸附性能。随后,仔细分析了旨在提高硼吸附容量和选择性的各种功能化方法。最后,强调了该领域的挑战和未来前景,以指导创新型高性能吸附剂和吸附系统的开发,最终减少硼污染。