巯基化静电纺纳米纤维膜去除水溶液中的汞离子

Pardeep Kumar, U. Qureshi, K. M. Brohi, F. Ahmed, Zeeshan Khatri, I. Kim, Avesh Kumar, Atif Hussain Memon
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摘要

由于工业和发电厂对不断增长的人口的高需求,环境状况日益恶化。它们排放的有毒物质污染环境,特别是水环境,对生物的健康构成严重威胁。汞是水系统中毒性最大的元素之一。饮用水中汞的可接受限度是2ppb。高剂量暴露可引起神经肌肉变化、情绪变化、震颤、头痛、失眠、感觉障碍、智力功能测试表现不佳、神经反应改变,高剂量暴露还可引起呼吸衰竭、肾效应和死亡。从水中去除汞的方法有很多。本文以硫醇功能化SiO2制备了无珠尼龙纳米纤维膜,并利用吸附技术去除水中的剧毒汞离子。在pH-6条件下,对10mg样品在15 min内的最大去除率为88.77%。利用傅里叶变换红外光谱(FTIR)和扫描显微镜(SEM)对纳米纤维进行了表征。在未来的工作中,可以进一步研究硫醇功能化SiO2膜作为过滤系统处理含汞海水和淡水的性能。由于工业和发电厂对不断增长的人口的高需求,环境状况日益恶化。它们排放的有毒物质污染环境,特别是水环境,对生物的健康构成严重威胁。汞是水系统中毒性最大的元素之一。饮用水中汞的可接受限度是2ppb。高剂量暴露可引起神经肌肉变化、情绪变化、震颤、头痛、失眠、感觉障碍、智力功能测试表现不佳、神经反应改变,高剂量暴露还可引起呼吸衰竭、肾效应和死亡。从水中去除汞的方法有很多。本文以硫醇功能化SiO2制备了无珠尼龙纳米纤维膜,并利用吸附技术去除水中的剧毒汞离子。10mg样品的最大去除率为88.77%,在15…
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mercury (Hg) ions removal from aqueous solution using thiol functionalized electrospun nanofiber membranes
Environment conditions are going worst day by day, due to high demand of industries and power plants for increasing population. They discharge toxic materials which contaminate environment particularly aqueous environment and pose serious health threats to living organisms. Mercury is one of the most toxic elements found in aqueous systems. The acceptable limit of mercury in drinking water is 2ppb. Its high exposure may cause Neuromuscular changes, emotional changes, tremors, headaches, insomnia, disturbance in sensations, poor performance on tests of mental function, change in nerve response and high exposure may also causes respiratory failure, kidney effect and death. The removal of mercury from water has been achieved by various methods. In this work the electrospun bead free nylon nanofiber membranes were fabricated with thiol functionalized SiO2 and used to remove highly toxic mercury ions from water by adsorption technique. Maximum removal efficiency of 10mg sample is 88.77% which is achieved in 15 minutes at pH-6. Fourier Transform Infrared (FTIR) spectroscopy and Scanning Microscope (SEM) measurements were carried out to characterize the nanofibers. In future this work can be modified to investigate the performance of thiol functionalized SiO2 membrane as filtration system for treating mercury loaded sea and fresh water.Environment conditions are going worst day by day, due to high demand of industries and power plants for increasing population. They discharge toxic materials which contaminate environment particularly aqueous environment and pose serious health threats to living organisms. Mercury is one of the most toxic elements found in aqueous systems. The acceptable limit of mercury in drinking water is 2ppb. Its high exposure may cause Neuromuscular changes, emotional changes, tremors, headaches, insomnia, disturbance in sensations, poor performance on tests of mental function, change in nerve response and high exposure may also causes respiratory failure, kidney effect and death. The removal of mercury from water has been achieved by various methods. In this work the electrospun bead free nylon nanofiber membranes were fabricated with thiol functionalized SiO2 and used to remove highly toxic mercury ions from water by adsorption technique. Maximum removal efficiency of 10mg sample is 88.77% which is achieved in 15...
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