Polat Fatih
Department of Laboratory Technology, Almus Vocational School, Tokat Gaziosmanpasa University, Tokat, Turkey.
Anal Sci. 2025 Mar;41(3):281-287. doi: 10.1007/s44211-024-00696-3. Epub 2024 Dec 9.
In this study, a simple, accurate, and precise analytical strategy was developed for the determination of total nitrogen (total dissolved nitrogen + particulate nitrogen) in surface waters using smartphone technology. The spectrophotometric method based on digestion with persulfate, commonly used in water analyses, was integrated with a digital image-based colorimetric detection system (DIC). To evaluate the accuracy of the total nitrogen-digital image-based colorimetric detection system (TN-DIC), results obtained from the Hach method and UV-VIS spectrophotometer were compared with the RGB values obtained from the smartphone imaging system. T-Test results indicated no statistically significant difference between the results obtained from the TN-DIC method and the standard methods. The linear range of the TN-DIC method was determined to be 0.25-5 mg/L. The analytical quality indicators of the system were established as follows: limit of detection (LOD) 0.095 ppm, limit of quantification (LOQ) 0.29 ppm, %RSD 0.32, and R value 0.9982. Recovery percentages (99-112%) used to measure the analytical performance of the method were calculated through spike applications at concentrations of 1 and 2 ppm in real water samples. Unlike traditional spectrophotometric methods, this smartphone-based approach is fast, simple, and cost-effective, requiring no complex equipment during analysis.
在本研究中,开发了一种简单、准确且精确的分析策略,用于利用智能手机技术测定地表水中的总氮(总溶解氮+颗粒态氮)。将水分析中常用的基于过硫酸盐消解的分光光度法与基于数字图像的比色检测系统(DIC)相结合。为评估总氮-基于数字图像的比色检测系统(TN-DIC)的准确性,将哈希方法和紫外可见分光光度计得到的结果与智能手机成像系统获得的RGB值进行了比较。T检验结果表明,TN-DIC方法得到的结果与标准方法之间无统计学显著差异。TN-DIC方法的线性范围确定为0.25 - 5 mg/L。该系统的分析质量指标确定如下:检测限(LOD)0.095 ppm,定量限(LOQ)0.29 ppm,相对标准偏差(%RSD)0.32,以及R值0.9982。通过在实际水样中添加浓度为1和2 ppm的加标样来计算用于衡量该方法分析性能的回收率(99 - 112%)。与传统分光光度法不同,这种基于智能手机的方法快速、简单且具有成本效益,分析过程无需复杂设备。