在酸盐检测中有效纠正溶解有机碳干扰,使用紫外线光谱学与相应的度偏移方法相结合
Jing Dong1,2, Junwu Tang1,3, Guojun Wu1,3
1Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences Xi'an 710119 China dongjing@opt.ac.cn jwtang@vip.163.com wuguojun@opt.ac.cn liruizhuo@opt.ac.cn.
RSC advances
|February 13, 2024
概括
这项研究引入了一种新方法,可以准确测量水中的酸盐含量,即使有溶解有机碳 (DOC) 干扰. 该技术通过纠正DOC引起的错误,显著提高了酸盐检测的准确性.
科学领域:
- 环境科学 环境科学
- 分析化学 分析化学
- 水质监测 水质监测
背景情况:
- 酸盐污染是一个主要的环境和健康问题.
- 由于溶解有机碳 (DOC) 的干扰,在水中准确检测酸盐具有挑战性.
研究的目的:
- 开发一种新的方法,可靠地检测在水中含有DOC干扰的酸盐.
- 建立一个有效的DOC干扰校正模型,以改进酸盐分析.
主要方法:
- 用同等度偏移方法检测酸盐.
- 使用第一阶导数确定DOC特征波长.
- 开发了一种用于酸盐预测的部分最小平方 (PLS) 模型.
- 应用光谱减法和二进制线性回归用于DOC校正.
- 实现了一个滑动窗口算法来选择波长.
主要成果:
- 酸盐预测中的相对误差从94.44%降低到3.36%.
- 预测的平方平均误差从1.6108毫克L-1降低到0.1037毫克L-1.1.
- 证明了DOC诱导的酸盐测量偏差的有效校正.
结论:
- 拟议的方法显著提高了在DOC干扰的水样中酸盐测量的准确性.
- 该技术与标准方法具有可比性,为水质监测提供了可靠的解决方案.
- 这种方法有效地减轻了DOC在酸盐检测中所带来的分析挑战.
更多相关视频
相关概念视频
Precipitation Titration: Endpoint Detection Methods
1.8K
In argentometric precipitation titrations, endpoints can be detected visually by the Mohr, Volhard, and Fajans methods. In the Mohr method, adding a soluble chromate indicator gives an initial yellow color to the analyte solution. As the titrant is added, the first excess of silver ions forms a red silver chromate precipitate, marking the endpoint. The solution pH should be maintained at about 8 by adding solid CaCO3.
In the Volhard method, a standard excess of AgNO3 is first added to the...
In the Volhard method, a standard excess of AgNO3 is first added to the...
1.8K
UV–Vis Spectrometers
1.3K
The absorbance of UV and visible (UV–visible) radiations is measured using a UV–visible spectrophotometer. Deuterium lamps, which emit UV radiation, and tungsten lamps, which produce radiation in the visible region, are used as light sources in UV–visible spectrophotometers. A monochromator or prism is used for diffraction grating, i.e., to split the incoming radiation into different wavelengths. A system of slits is used to focus the desired wavelength on the sample cell.
1.3K
Atomic Absorption Spectroscopy: Interference
761
Interference leads to systematic error in atomic absorption (AA) measurements by enhancing or diminishing the analytical signal or the background. These interferences can be grouped into three main categories: spectral interference, chemical interference, and physical interference.
Spectral interference occurs when signals from other elements or molecules overlap with the analyte signal, falsely elevating or masking the analyte's absorbance. This interference can be corrected using Zeeman,...
Spectral interference occurs when signals from other elements or molecules overlap with the analyte signal, falsely elevating or masking the analyte's absorbance. This interference can be corrected using Zeeman,...
761
Ultraviolet and Visible (UV–Vis) Spectroscopy: Overview
2.6K
Ultraviolet–visible (UV–visible or UV–Vis) spectroscopy is an analytical technique that investigates the interaction between matter and UV–Vis light within the electromagnetic spectrum. This method is widely used for its versatility, simplicity, and relatively quick data acquisition, making it valuable for both qualitative and quantitative analysis. When UV–Vis radiation passes through a material, molecules absorb light depending on the energy required for...
2.6K


