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首页> 外文期刊>Sensors and Actuators >On-site chemosensing and quantification of Cr(Ⅵ) in industrial wastewater using one-step synthesized fluorescent carbon quantum dots
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On-site chemosensing and quantification of Cr(Ⅵ) in industrial wastewater using one-step synthesized fluorescent carbon quantum dots

机译:一步合成荧光碳量子点在工业废水中进行六价铬的现场化学传感和定量

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摘要

Wastewater from the vanadium extraction industry contains Cr(VI) and severely threatens the environment in China. The on-site monitoring and quantitative determination of Cr(VI) in this wastewater is urgently needed to protect the environment and human health. To address this issue, amino-functionalized carbon quantum dots (CQDs) were easily synthesized as fluorescence probes. CQD fluorescence was selectively and sensitively quenched by Cr(VI) due to the formation of ionic bonds between Cr(VI) anions and the amino groups on the CQD surface. On-site semiquantitative Cr(VI) chemosensing was realized with a portable UV lamp easily, rapidly, and cost-efficiently, providing on-stream visual proof for the dischargeability of the waste stream. The CQDs-based quantitative Cr(VI) determination method for the industrial wastewater was established with a linear range spanning 4 orders of magnitude and a limit of detection as low as 140 nmol/L, far exceeding the Cr(VI) concentration limit for the discharge of Cr(VI)-containing industrial wastewater in China. This quantitative chemosensing method is highly selective and sensitive in complex solutions, including the wastewater from the vanadium extraction industry. Therefore, this CQDs-based chemosensing method can be used not only for on-site chemosensing and quantitative Cr(VI) concentration determination in wastewater, but has considerable potential for monitoring hazardous materials in other industrial effluents.
机译:钒提取行业的废水中含有Cr(VI),严重威胁着中国的环境。为了保护环境和人类健康,迫切需要对废水中的六价铬进行现场监测和定量测定。为了解决这个问题,氨基官能化的碳量子点(CQDs)可以轻松合成为荧光探针。由于Cr(VI)阴离子和CQD表面的氨基之间形成离子键,因此Cr(VI)选择性地灵敏地淬灭了CQD荧光。使用便携式紫外线灯可轻松,快速且经济高效地实现现场半定量Cr(VI)化学传感,从而为废物流的可排放性提供了在线视觉证明。建立了基于CQDs的工业废水定量Cr(VI)测定方法,其线性范围跨越4个数量级,检出限低至140 nmol / L,远远超过了工业废水中Cr(VI)的浓度极限。中国含六价铬工业废水的排放。这种定量化学传感方法在复杂的溶液(包括来自钒提取行业的废水)中具有很高的选择性和敏感性。因此,这种基于CQDs的化学传感方法不仅可以用于现场化学传感和定量测定废水中的Cr(VI)浓度,而且在监测其他工业废水中的有害物质方面具有巨大的潜力。

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