Namjan Maneerat, Kaewwonglom Natcha, Dechakiatkrai Theerakarunwong Chonlada, Jakmunee Jaroon, Khongpet Wanpen
Program of Chemistry, Faculty of Science and Technology, Nakhon Sawan Rajabhat University, Nakhon Sawan 60000, Thailand.
Laboratory for Analytical Instrumentation and Electrochemistry Innovation, Department of Chemistry, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.
J Anal Methods Chem. 2023 Jan 13;2023:3400863. doi: 10.1155/2023/3400863. eCollection 2023.
The miniaturization of analytical systems and the utilization of nontoxic natural extract from plants play significant roles for green analytical chemistry methodology. In this work, the microfluidic hydrodynamic sequential injection (HSI) with the LED-phototransistor colorimetric detection system has been proposed to create an ecofriendly and low-cost miniaturized analytical system for online determination of iron in water samples using Maknoi & Jenjitt. extracts as high stability and good selectivity of a natural reagent. The proposed method was designed for online solution mixing and colorimetric detection on a microfluidic platform. The Maknoi & Jenjitt. extracts and standard/samples were sequentially aspirated to fill the channel before entering the built-in flow cell. The intensity of iron- Maknoi & Jenjitt. extract complex was monitored under the optimum conditions of flow rate, sample volume, mixing zone length, and aspiration sequences, by altering the gain control of the colorimetric detector to achieve good sensitivity. The results demonstrated a good performance of the green analytical systems. A linear calibration graph in the range of 0.5-6.0 mg L was obtained with a limit of detection at an adequate level of 0.11 mg L for water samples with a sample throughput of 30 h. The precise and accurate measurement results were achieved with relative standard deviations in the range of 1.61-1.72%, and percent recoveries were found in the range of 90.6-113.4. The proposed method offers cost-effective, easy operation over an appropriate analysis time (2 min/injection) with good sensitivity and is environmentally friendly with low consumption of solutions and the use of high stability and good selectivity of nontoxic reagents. The achieved method was demonstrated to be a good choice for routine analysis.
分析系统的小型化以及植物无毒天然提取物的利用对绿色分析化学方法具有重要意义。在这项工作中,提出了一种带有LED - 光电晶体管比色检测系统的微流控流体动力顺序注射(HSI)方法,以创建一种环保且低成本的小型化分析系统,用于在线测定水样中的铁,使用Maknoi & Jenjitt.提取物作为具有高稳定性和良好选择性的天然试剂。所提出的方法旨在在微流控平台上进行在线溶液混合和比色检测。在进入内置流通池之前,依次吸入Maknoi & Jenjitt.提取物和标准品/样品以填充通道。通过改变比色检测器的增益控制以获得良好的灵敏度,在流速、样品体积、混合区长度和抽吸顺序的最佳条件下监测铁 - Maknoi & Jenjitt.提取物络合物的强度。结果表明绿色分析系统具有良好的性能。对于水样,在0.5 - 6.0 mg/L范围内获得了线性校准曲线,检测限为0.11 mg/L,样品通量为30次/小时。测量结果精确准确,相对标准偏差在1.61 - 1.72%范围内,回收率在90.6 - 113.4%范围内。所提出的方法具有成本效益,在适当的分析时间(每次进样2分钟)内操作简便,具有良好的灵敏度,对环境友好,溶液消耗低,并且使用了高稳定性和良好选择性的无毒试剂。所实现的方法被证明是常规分析的良好选择。