Laboratory of Biotechnology, Materials and Environment, Faculty of Sciences, Ibn Zohr University, Agadir, Morocco.
Health Services Vocational School, Department of Pharmacy, Sivas Cumhuriyet University, 58140, Sivas, Turkey.
Environ Sci Pollut Res Int. 2024 Jun;31(28):39907-39944. doi: 10.1007/s11356-023-27640-8. Epub 2023 May 25.
Water contamination by pesticides is increasing dramatically due to population growth and the extensive use of pesticides in agriculture, leading to grave environmental and health concerns. Thus, efficient processes and the design and development of effective treatment technologies are required due to the enormous demand for fresh water. The adsorption approach has been widely used to remove organic contaminants such as pesticides because of its performance, less expense, high selectivity, and simplicity of operation compared to other treatment technologies. Among alternative adsorbents, biomaterials abundantly available for pesticide sorption from water resources have attracted the attention of researchers worldwide. The main objective of this review article is to (i) present studies on a wide range of raw or chemically modified biomaterials potentially effective in removing pesticides from aqueous media; (ii) indicating the effectiveness of biosorbents as green and low-cost materials for removing pesticides from wastewater; and (iii) furthermore, report the application of response surface methodology (RSM) for modeling and optimizing adsorption.
由于人口增长和农业中大量使用农药,水污染中农药的含量正急剧增加,这引发了严重的环境和健康问题。因此,由于对淡水的巨大需求,需要有效的处理过程和设计、开发有效的处理技术。与其他处理技术相比,吸附法因其性能、低费用、高选择性和操作简单而被广泛用于去除有机污染物,如农药。在替代吸附剂中,从水资源中大量存在的生物材料因其对农药的吸附而受到全世界研究人员的关注。本文综述的主要目的是:(i)介绍大量潜在有效去除水相介质中农药的原始或化学改性生物材料的研究;(ii)表明生物吸附剂作为绿色、低成本材料去除废水中农药的有效性;以及 (iii) 进一步报告响应面法(RSM)在吸附建模和优化中的应用。