探索碳纳米片对水溶液中六价铬的解毒作用

Q4 Earth and Planetary Sciences
Madhur Kant, F. Khatoon, Mousumi Sen
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引用次数: 0

摘要

为了保护水生生态系统的稳定和公众健康,必须减少废水中的有毒污染物。当务之急是寻找经济有效的技术来处理市政、园艺、水产养殖和工业废水。由甘油、硫酸和三聚氰胺经水热反应制得的掺氮纳米碳片(N-CNS)对重金属和有机化合物等有害水污染物具有很强的吸附性。氮的加入改变了氯化萘的整体元素组成,有利于氯化萘与污染物的相互作用。本次研究的目的是调查液态溶液中的铬(VI)[Cr(VI)]在氯化萘表面吸附的可能性。吸附六价铬的理想 pH 值为 2.0。当起始金属浓度达到 700 毫克/升时,Cr(VI) 的吸附能力增强。当 pH 值为 2.0、初始六价铬浓度为 700 毫克/升时,六价铬的最大去除率为 256.41 毫克/克。我们采用 Freundlich 和 Langmuir 吸附等温线来确定吸附平衡常数。通过拟合曲线和相关系数 (R2),我们发现 Langmuir 等温线模型的拟合效果最佳,表明 CNS 的表面是均匀的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the Role of Carbon Nanosheets for Detoxification of Cr(VI) from Aqueous Solution
Toxic pollutants in wastewater must be reduced in order to protect the aquatic ecosystem's stability and the public's health. Finding affordable and effective technologies for treating municipal, horticultural, aquacultural and industrial wastewater is urgently needed. Nitrogen-doped carbon nanosheets (N-CNS), which are produced by hydrothermal reaction from glycerol, sulfuric acid and melamine, have strong adsorptive behaviour against hazardous aqueous pollutants such as heavy metals and organic compounds. The overall elemental composition of CNS is altered by nitrogen incorporation, favouring CNS interaction with pollutants. The objective of the current investigation was to investigate the possibility for Chromium(VI) [Cr(VI)] adsorption on the CNS from a liquid solution. The ideal pH for Cr (VI) adsorption was noted to be 2.0. The Cr(VI) adsorption was enhanced when the starting metal concentration is more up to 700 mg L-1. A maximum removal of 256.41 mg g-1was seen when pH was 2.0 at 700 mg L-1 initial Cr(VI) concentration. We employed both the Freundlich and the Langmuir adsorption isotherms to determine the adsorption equilibrium constants. Using fitting curves and correlation coefficients (R2), it has been found that the model of the Langmuir isotherm is a best fit and it indicates homogeneous surface of CNS.
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来源期刊
CiteScore
0.50
自引率
0.00%
发文量
195
审稿时长
4-8 weeks
期刊介绍: Information not localized
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