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1)  Three-dimension spectral subtraction fluorescence
三维荧光光谱差谱法
2)  Three-dimensional fluorescence spectrometry
三维荧光光谱法
3)  3D fluorescence spectra
三维荧光谱
1.
In this paper,the excited state dynamics properties of hemicynine were investigated by using time-resolved fluorescence and 3D fluorescence spectra techniques.
本文利用不同波段的时间分辨荧光和三维荧光谱对半花菁分子激发态的动力学特性进行了研究。
4)  Polarized-three-dimenional fluroescence spectrometry
偏振-三维荧光光谱法
5)  3DEEM
三维荧光光谱
1.
Characterization of the Change in DOM During Wastewater Chlorine and Chlorine Dioxide Disinfections by 3DEEM;
污水氯和二氧化氯消毒过程中溶解性有机物变化的三维荧光光谱解析
2.
Three dimensional excitation-emission fluorescence spectra (3DEEM) and excitation fluorescence spectra of 13 kinds of phytoplankton cultures in eutrophied water were measured.
测量了富营养化水体中13种浮游植物的活体三维荧光光谱和激发荧光光谱,通过光谱相似性原则将浮游植物分成3种光谱组,分析了光合色素组成与各光谱组三维荧光光谱特征的关系。
3.
Relationships of dissolved organic matter(DOM) concentrations determined by three dimensional excitation-emission fluorescence matrix(3DEEM),observed protein-like fluorescence intensity(Ipro-like) and humic-like flu.
比较研究了科学岛、巢湖和太湖不同来源水样的三维荧光光谱、COD值和DOC值。
6)  three-dimensional excitation emission matrix fluorescence spectroscopy
三维荧光光谱
1.
The characterization of Rhodamine B was studied by three-dimensional excitation emission matrix fluorescence spectroscopy.
考察了罗丹明B浓度、pH值大小等因素对罗丹明B的荧光光谱影响,给出了其三维荧光光谱图。
2.
Three-dimensional excitation emission matrix fluorescence spectroscopy (3DEEM) was used to investigate the effect of sunlight irradiation on the fluorescence properties of dissolved organic matter (DOM) from Lake Hongfeng and Nanming River waters and a commercial fluka humic acid (FHA).
利用三维荧光光谱研究了太阳辐射对溶解有机质(DOM)荧光光谱特征的影响。
3.
Three-dimensional excitation emission matrix fluorescence spectroscopy (3DEEM) was applied to characterize the fluorescence properties of dissolved organic matter (DOM) in lakes, rivers, streams, and ground waters.
利用三维荧光光谱研究了河流、湖泊等不同来源溶解有机质(DOM)的荧光光谱特性。
补充资料:三维荧光光谱
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性质:又称三维荧光光谱或总发光光谱。与普通荧光光谱不同点在于它能提供激光波长和发射波长同时变化时的荧光强度信息。有两种图形表示:等角三维投影(isometric three-dimensional projection)和等高线光谱(contour spectra)图。它可以通过在普通荧光分光光度计上,保持一定的激发波长增量条件下,重复扫描发射光谱,由手工或计算机采集数据作图;或是利用电视荧光计,采用多色光照射样品,应用二维多通道检测器检测荧光信号,用计算机实时采集数据作图而得。它不仅可用于多组分混合物的定性和定量分析,更常用作一种光谱指纹识别技术用于环境监测、法庭判证和临床的辅助诊断等。 

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