METHODS FOR TREATING WASTEWATER FROM ORGANIC POLLUTANTS

M. Ilmuratova, D. Muktaly, T. Shakiyeva, L. Sassykova
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Abstract

Water pollution by organic and inorganic compounds, heavy metals, dyes, radioactive and pharmaceutical compounds has a significant impact on its use. Globalization, structural changes, economic development around the world-all this contributes to the release of pollutants that cause water pollution. That is why wastewater treatment and recovery, removing pollutants from wastewater and wastewater, is one of the most important issues. This literature review examines the problems of water pollution, its sources and types of pollutants found in water, and also discusses purification methods, including methods of water purification from pollutants, in particular phenol, in the presence of nanocomposite catalysts. Recently, more and more attention has been paid to applied nanotechnology using magnetic and carbon nanocomposites due to the advantages of production cost, high surface area, pore volume and environmental sustainability. The literature review focuses on magnetic nanocomposite catalysts based on alternating and rare earth metals with advantages such as low cost of preparation for water disinfection, high surface area, pore volume and environmental resistance. Magnetic carbon nanocomposites usually demonstrate excellent adsorption characteristics of pollutants from aqueous solutions, therefore, the expansion of the use of nanotechnology in water purification is of great importance.
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处理废水中有机污染物的方法
有机和无机化合物、重金属、染料、放射性和药物化合物造成的水污染对水的使用产生了重大影响。全球化、结构变化、世界各地的经济发展--所有这一切都导致污染物的释放,造成水污染。这就是为什么废水处理和回收、去除废水和废水中的污染物是最重要的问题之一。本文献综述探讨了水污染问题、水污染的来源和水中污染物的类型,还讨论了净化方法,包括在纳米复合催化剂存在的情况下从污染物(尤其是苯酚)中净化水的方法。最近,由于磁性纳米复合材料和碳纳米复合材料具有生产成本低廉、表面积大、孔隙率高和环境可持续发展等优点,人们越来越关注使用这些材料的应用纳米技术。文献综述的重点是基于交替金属和稀土金属的磁性纳米复合催化剂,这些催化剂具有制备水消毒成本低、表面积大、孔隙率高和环境耐受性好等优点。磁性纳米碳复合材料通常对水溶液中的污染物具有出色的吸附特性,因此,扩大纳米技术在水净化领域的应用具有重要意义。
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