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用于检测和去除废水中六价铬并将六价铬转化为能量收集源的铜(II)掺杂勃姆石基多功能传感器的研制

Development of a Cu(ii) doped boehmite based multifunctional sensor for detection and removal of Cr(vi) from wastewater and conversion of Cr(vi) into an energy harvesting source.

作者信息

Roy Shubham, Bardhan Souravi, Chanda Dipak Kr, Ghosh Saheli, Mondal Dhananjoy, Roy Jhilik, Das Sukhen

机构信息

Department of Physics, Jadavpur University, Raja S.C. Mullick Road, Kolkata-700032, India.

出版信息

Dalton Trans. 2020 May 28;49(20):6607-6615. doi: 10.1039/d0dt00888e. Epub 2020 Apr 28.

Abstract

This article reports a copper doped boehmite (CBH) based nano-material which is capable of detecting and removing hexavalent chromium simultaneously. Basic characterization has been performed to determine its phase purity, particle size (∼20 nm), morphology and surface properties (surface area 15.29 m g and pore diameter 3.9 nm) by using some basic characterization tools. The Rietveld refinement method has been adopted to analyze the microstructural details of the synthesized nanostructure. Photoinduced electron transfer (PET) based quenching of fluorescence is mainly responsible for chromium sensing in this case. This nanosensor is exceptionally sensitive (limit of detection ∼ 6.24 μM) and merely selective towards hexavalent chromium ions. Industrial wastewater samples have also been used here to demonstrate the real life applicability of this material, which shows the same trend. This fluoro-sensor gains its multi-functionality when it comes to the adsorption based removal of Cr(vi) from wastewater. The synthesized material shows a remarkably high adsorption rate (∼85% in just 5 minutes) due to its sponge-like porous structure. Adsorption of hexavalent chromium from wastewater enhances the dielectric constant of this material significantly (∼7.93 times). Ionic polarization-dependent enhancement of the dielectric constant resulting from industrial wastewater treatment is a quite unmarked approach. Very low tangent loss with augmented dielectric permittivity makes this nano-material desirable for energy harvesting applications. Previously many articles have reported the sensing and removal of various industrial effluents. Keeping this in mind, this work has been designed and, apart from sensing and removal, it provides a new insight into energy harvesting from wastewater.

摘要

本文报道了一种基于铜掺杂勃姆石(CBH)的纳米材料,它能够同时检测和去除六价铬。通过使用一些基本表征工具进行了基本表征,以确定其相纯度、粒径(约20纳米)、形态和表面性质(表面积15.29平方米/克,孔径3.9纳米)。采用Rietveld精修方法分析合成纳米结构的微观结构细节。在这种情况下,基于光致电子转移(PET)的荧光猝灭是铬传感的主要原因。这种纳米传感器异常灵敏(检测限约为6.24微摩尔),并且仅对六价铬离子具有选择性。这里还使用了工业废水样本以证明这种材料在实际生活中的适用性,结果呈现相同趋势。当涉及到基于吸附从废水中去除Cr(Ⅵ)时,这种荧光传感器具有多功能性。由于其海绵状多孔结构,合成材料显示出非常高的吸附率(仅5分钟内约85%)。从废水中吸附六价铬显著提高了这种材料的介电常数(约7.93倍)。工业废水处理导致的基于离子极化的介电常数增强是一种相当独特的方法。具有增强介电常数的极低切线损耗使得这种纳米材料适用于能量收集应用。此前许多文章报道了对各种工业废水的传感和去除。考虑到这一点,开展了这项工作,除了传感和去除外,它还为从废水中收集能量提供了新的见解。

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