合成氧化锌纳米颗粒对废水中铅的吸附研究

Haider Abbas, Samar Iqbal, Muhammad Nadeem, Tabinda Jabeen, Adan Yasin, Nabeel Kadhim Abbood, Muhammad Irfan, Muhammad Ihsan, Muhammad Ismaeel
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引用次数: 0

摘要

水是维持生命所必需的,约占人体的60%。可悲的是,不同的工业过程和人类活动带来的水污染严重危害我们的健康。由于有机和无机化合物、病原体、除草剂、杀虫剂、药物、重金属和视觉污染物释放到水体中,水质的退化导致氧气含量降低。重金属是由于其毒性和生物蓄积性而引起环境特别关注的污染物之一。吸附技术去除有害金属的惊人能力引起了研究人员的关注。利用该技术,通过物理化学相互作用,将吸附剂结合到吸附剂的固体表面。为了消除污染水中的铅,目前的工作将利用共沉淀法合成氧化锌纳米颗粒。为了检验合成的纳米颗粒,将使用多种分析方法,如紫外可见光谱和扫描电子显微镜。原子吸收分光光度法也将用于测量吸附过程前后去除铅的量。在我们的研究过程中,pH、剂量、接触时间等重要因素都将严格规范。为了确认发现的准确性,动力学模型将被应用。本研究的最终目标是提高重金属去除的有效性,并提供有关化学生产的ZnO纳米颗粒用于水过滤的有用信息。这项研究项目有可能对改善环境管理程序和保护我们的水资源作出重大贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adsorption of Lead from Effluents Using Synthesized ZnO Nanoparticles: A Comprehensive Study for Wastewater Treatment
Water is essential for maintaining life, making up about 60% of the human body. Sadly, water pollution brought on by different industrial processes and human activities seriously jeopardizes our health. The degradation of water quality, which results in lower oxygen levels, is caused by the release of organic and inorganic compounds, pathogens, herbicides, pesticides, medicines, heavy metals, and visual contaminants into water bodies. Heavy metals are among these contaminants that are of special concern to the environment because of their toxicity and bioaccumulative characteristics. The amazing capacity of the adsorption technique to eliminate hazardous metals has attracted the attention of researchers. Through physicochemical interactions, adsorbates are bound to the solid surface of adsorbents using this technique. To eliminate lead from contaminated water, ZnO nanoparticles will create in the current work utilizing the coprecipitation technique for synthesis. To examine the synthesized nanoparticles, number of analytical methods will use, such as UV-Visible spectrum and SEM (Scanning Electron Microscopy). Atomic Absorption Spectrophotometry will also be used to measure the amount of lead removed both before and after the adsorption process. Important factors like pH, dose, and contact time will strictly regulate throughout our research. To confirm the veracity of findings, Kinetic Models will apply. Ultimate goal of this research is to increase the effectiveness of heavy metal removal and offer useful information regarding the usage of chemically produced ZnO nanoparticles for water filtration. This research project has the potential to make a substantial contribution to improving environmental management procedures and protecting our water resources.
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