Murshid Nimer, Mouhtady Omar, Abu-Samha Mahmoud, Obeid Emil, Kharboutly Yahya, Chaouk Hamdi, Halwani Jalal, Younes Khaled
College of Engineering and Technology, American University of the Middle East, Kuwait.
Water and Environment Sciences Lab, Lebanese University, Tripoli, Lebanon.
Gels. 2022 Oct 30;8(11):702. doi: 10.3390/gels8110702.
Water pollution is caused by multiple factors, such as industrial dye wastewater. Dye-contaminated water can be treated using hydrogels as adsorbent materials. Recently, composite hydrogels containing metal oxide nanoparticles (MONPs) have been used extensively in wastewater remediation. In this study, we use a statistical and artificial intelligence method, based on principal component analysis (PCA) with different applied parameters, to evaluate the adsorption efficiency of 27 different MONP composite hydrogels for wastewater dye treatment. PCA showed that the hydrogel composites CTS@FeO, PAAm/TiO, and PEGDMA-rGO/FeO@cellulose should be used in situations involving high pH, time to reach equilibrium, and adsorption capacity. However, as the composites PAAm-co-AAc/TiO, PVPA/FeO@SiO, PMOA/ATP/FeO, and PVPA/FeO@SiO, are preferred when all physical and chemical properties investigated have low magnitudes. To conclude, PCA is a strong method for highlighting the essential factors affecting hydrogel composite selection for dye-contaminated water treatment.
水污染由多种因素造成,比如工业染料废水。受染料污染的水可以使用水凝胶作为吸附材料进行处理。近来,含有金属氧化物纳米颗粒(MONPs)的复合水凝胶已广泛用于废水修复。在本研究中,我们使用一种基于主成分分析(PCA)并采用不同应用参数的统计和人工智能方法,来评估27种不同的MONP复合水凝胶对废水染料处理的吸附效率。主成分分析表明,水凝胶复合材料CTS@FeO、PAAm/TiO和PEGDMA-rGO/FeO@纤维素应在涉及高pH值、达到平衡的时间和吸附容量的情况下使用。然而,当所研究的所有物理和化学性质的数值较低时,复合材料PAAm-co-AAc/TiO、PVPA/FeO@SiO、PMOA/ATP/FeO和PVPA/FeO@SiO是更可取的。总之,主成分分析是一种强有力的方法,可用于突出影响选择水凝胶复合材料处理受染料污染水的关键因素。