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A novel method for highly effective removal and determination of binary cationic dyes in aqueous media using a cotton-graphene oxide composite

机译:一种新的棉花氧化物复合材料高效除去和测定水性介质中二元阳离子染料的新方法

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摘要

The presence of dyes in industrial wastewater is a serious problem that hazards the surrounding environment. Therefore, this work investigates the removal of a binary dye system composed of Methylene Blue (MB) and Crystal Violet (CV) using an innovative composite (cotton fiber-graphene oxide (C-GO)). The simultaneous determination of the concentrations of the dyes in the binary system is a challenge. Thus, a new method was investigated to simultaneously detect the concentration of the dyes in the binary system using first-order derivative UV spectra to avoid the complex overlap of the maximum peaks in the original zero-order absorption spectra. Different parameters affecting the filter sorption mode, such as the concentration of the dyes, the dose of the (C-GO) composite, the dose of NaCl, flow rate, temperature, and pH, were investigated. The data obtained showed high adsorption efficiency for the binary dye system (>99%). This was approved based on the maximum sorption capacity (Q degrees) value obtained for the Langmuir model. Furthermore, this technique was developed, evaluated and applied to treat real industrial waste. The obtained data showed that the C-GO composite was highly efficient in treating industrial wastewater containing such dyes when a sufficient quantity is used. Therefore, it can be used as a promising adsorbent for such dyes in wastewater treatment processes.
机译:工业废水中染料的存在是危害周边环境的严重问题。因此,这种工作调查使用创新的复合材料中的去除亚甲基蓝(MB),结晶紫(CV)组成的二元染料体系的(棉纤维的石墨烯氧化物(C-GO))。在双星系统中的染料浓度的同时测定是一个挑战。因此,进行了研究的新方法,同时检测使用一阶导数的UV光谱,以避免最大峰值在原始零级吸收光谱的复杂重叠在二进制系统中的染料的浓度。影响滤波器吸着模式不同的参数,如染料的浓度,(C-GO)的剂量复合材料,氯化钠的剂量,流速,温度和pH,进行了调查。所获得的数据显示出高吸附效率为二进制染料体系(> 99%)。这是基于最大吸附能力为Langmuir模型得到的(Q度)值的批准。此外,这种技术被开发,评估和应用到实际处理工业废水。所获得的数据表明,C-GO复合材料为当使用足量的处理含有这种染料工业废水高效。因此,它可以被用作用于在废水处理过程这样的染料有希望的吸附剂。

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  • 来源
    《RSC Advances》 |2020年第13期|共12页
  • 作者单位

    Jouf Univ Coll Sci Chem Dept Sakakah Saudi Arabia;

    City Sci Res &

    Technol Applicat SRTA City Nanotechnol &

    Composite Mat Res Dept ATNMRI Alexandria 21934 Egypt;

    City Sci Res &

    Technol Applicat SRTA City Polymer Mat Res Dept ATNMRI Alexandria 21934 Egypt;

    City Sci Res &

    Technol Applicat SRTA City Nanotechnol &

    Composite Mat Res Dept ATNMRI Alexandria 21934 Egypt;

    City Sci Res &

    Technol Applicat SRTA City Nanotechnol &

    Composite Mat Res Dept ATNMRI Alexandria 21934 Egypt;

    Mansoura Univ Fac Sci Chem Dept Mansoura Egypt;

    Atom Energy Author Hot Labs Ctr Nasr 13759 Egypt;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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