School of Environmental Sciences, University of Venda, Thohoyandou Private Bag X5050, South Africa.
Hydrology and Water Resource Department, School of Environmental Sciences, University of Venda, Thohoyandou Private Bag X5050, South Africa.
Int J Environ Res Public Health. 2019 Nov 20;16(23):4596. doi: 10.3390/ijerph16234596.
Numerous pollutants, including dyes, heavy metals, pesticides, and microorganisms, are found in wastewater and have great consequences when discharged onto natural freshwater sources. Heavy metals are predominantly reported in wastewater. Heavy metals are persistent, non-biodegradable and toxic, transforming from a less toxic form to more toxic forms in environmental media under favourable conditions. Among heavy metals, copper is dominantly found in wastewater effluent. In this review, the effects of high concentration of copper in plants and living tissues of both aquatic animals and humans are identified. The performance of different polymer adsorbents and the established optimum conditions to assess the resultant remediation effect as well as the amount of copper removed are presented. This procedure allows the establishment of a valid conclusion of reduced time and improved Cu (II) ion removal in association with recent nano-polymer adsorbents. Nano-polymer composites are therefore seen as good candidates for remediation of Cu ions while pH range 5-6 and room temperature were mostly reported for optimum performance. The optimum conditions reported can be applied for other metal remediation and development of potent novel adsorbents and process conditions.
废水中存在大量污染物,包括染料、重金属、农药和微生物,如果排放到天然淡水中,将会造成严重后果。废水中主要存在重金属。重金属具有持久性、不可生物降解性和毒性,在环境介质中条件适宜时,会从毒性较低的形态转化为毒性更高的形态。在重金属中,铜主要存在于废水废水中。在本综述中,确定了高浓度铜对水生动物和人类的植物和活体组织的影响。介绍了不同聚合物吸附剂的性能以及建立的最佳条件,以评估修复效果以及去除的铜量。该程序可以得出一个有效的结论,即在与最近的纳米聚合物吸附剂相关联时,减少时间并提高 Cu(II)离子的去除率。因此,纳米聚合物复合材料被视为修复 Cu 离子的良好候选材料,而 pH 值范围 5-6 和室温则是报告的最佳性能条件。报告的最佳条件可应用于其他金属修复以及有前途的新型吸附剂和工艺条件的开发。