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Fabrication of a Smartphone-Based Spectrophotometer and Its Application in Monitoring Concentrations of Organic Dyes

机译:基于智能手机的分光光度计制造及其在监测有机染料浓度的应用

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In this study, an in-house constructed paper-based spectrophotometer is presented and demonstrated for detecting three organic dyes, namely, methylene blue, malachite green, and rhodamine B, and monitoring the efficiency of their removal from a wastewater sample with Sistan sand as a costless adsorbent. The compact design and light weight of this simple spectrophotometer delivered portability, with materials costing less than a dollar. Spectral analysis of the captured images was performed using free downloadable software from the Google Play store. The main experimental parameters affecting the efficiency of dye adsorption including pH, sorbent dosage, initial dye concentration, and contact time were investigated and optimized using the Taguchi design experimental method. Validation experiments were performed using a standard commercial bench-top spectrophotometer, and results were compared in terms of analytical performance, speed, and cost of analysis. The smartphone-based spectrometer was able to measure accurately, as confirmed using the commercial spectrometer, with enhanced sensitivity for methylene blue and rhodamine B. The combination of the high spectral accuracy of the paper-based spectrophotometer, together with sand as a readily accessible sorbent, enabled us to develop a powerful yet simple approach and tool for the removal and monitoring of dyes within wastewater samples, which is potentially available to everybody who owns a smartphone.
机译:在这项研究中,提出并证明了一种内部构建的纸质分光光度计,用于检测三种有机染料,即亚甲基蓝,孔雀石绿色和罗丹明B,并监测与Sistan Sand的废水样品从废水样品中移除的效率一种无成本吸附剂。这种简单的分光光度计的紧凑设计和重量重量提供了便携性,材料成本低于一美元。使用Google Play商店的免费可下载软件执行捕获图像的光谱分析。影响染料吸附效率的主要实验参数包括pH,吸附剂剂量,初始染料浓度和接触时间,并使用TAGUCHI设计实验方法进行优化。使用标准商业台式分光光度计进行验证实验,并在分析性能,速度和分析成本方面进行比较结果。基于智能手机的光谱仪能够准确地测量,如使用商业光谱仪确认,具有增强的亚甲基蓝色和罗丹明B的灵敏度。基于纸张分光光度计的高光谱精度的组合与沙子一起作为易于接近的吸附剂,使我们能够开发一种功能强大但简单的方法和工具,用于清除和监控废水样本中的染料,这可能适用于拥有智能手机的每个人。

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