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Novel smart composite materials for industrial wastewater treatment and reuse

机译:用于工业废水处理和回用的新型智能复合材料

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With the current levels of industrial development it is very difficult to prevent organic pollutants and toxic heavy metals from contaminating water. Thus purification of contaminated industrial water and its reuse is a global concern. The present study highlights application of a novel standalone technology in the form of polymers that efficiently extract a range of organic and inorganic impurities simultaneously for reuse of industrial effluent. Previous studies have focused on water soluble synthetic polymers for removal of organic contaminants, while biodegradable polymers are being used for extraction of toxic metals from water. Our earlier reports already describe a combination of synthetic and natural polymers with the ability to eliminate organic and inorganic spiked impurities from water on a lab scale. In the present work a series of novel smart composite materials have been synthesized and fully characterized. The avant-garde novelty of these materials for simultaneous removal of organic impurities such as phenols, anhydrides, textile dyes, pesticides, herbicides, antibiotics and inorganic heavy metals has been demonstrated and the novel polymers have shown a removal efficiency of more than 90% for each of the contaminants. Furthermore, the established 4-cycle reusability and an extensive reduction in levels of chemical oxygen demand suggests these materials would act as an improvement to the current methods for treating effluent water. The high reproducibility in synthesis, properties and elimination spectrum brands them as promising materials for industrial water remediation and reuse.
机译:在目前的工业发展水平下,很难防止有机污染物和有毒重金属污染水。因此,净化污染的工业用水及其再利用是全球关注的问题。本研究着重介绍了一种新型独立技术的应用,该技术以聚合物的形式有效地同时提取多种有机和无机杂质,以再利用工业废水。先前的研究集中在水溶性合成聚合物上,以去除有机污染物,而可生物降解的聚合物则用于从水中提取有毒金属。我们较早的报告已经描述了合成和天然聚合物的组合,能够在实验室规模上从水中消除有机和无机加标杂质。在本工作中,已经合成了一系列新颖的智能复合材料并对其进行了充分表征。这些材料具有前卫性,可同时去除有机杂质,例如酚,酸酐,纺织染料,农药,除草剂,抗生素和无机重金属,并且新型聚合物显示出90%以上的去除效率。每种污染物。此外,已确立的4循环可重复使用性和化学需氧量水平的大幅降低表明,这些材料将对当前处理废水的方法起到改善作用。合成,特性和消除光谱的高重复性使它们成为工业用水修复和回用的有前途的材料。

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