Wax screen-based fabrication of paper devices for the determination of iron in particulates of selected welding fumes in Addis Ababa, Ethiopia

IF 1.3 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY Bulletin of the Chemical Society of Ethiopia Pub Date : 2024-03-12 DOI:10.4314/bcse.v38i3.2
Gizachew Wendimu, Ahmed Hussen, R. Mohan B.
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Abstract

In this study a paper-based analytical device was developed using screen printing technique for the determination of particulate iron from welding fumes. The operational parameters such as volume and concentration of 1,10-phenanthroline, volume and concentration of hydroxylamine were optimized by the Box Behnken Design (BBD) using Minitab. Additionally, the µ-PAD's sample solution holding capacity and reaction time were also optimized. Under the optimized condition, particulate metal concentrations were colorimetrically quantified usinga handheld mobile phone and image processing software, ImageJ. Very good analytical performance such as good linearity of the calibration curve and better selectivity was observed by the developed method. The limit of detection for Fe3+ assay was 4.6 mg/L; which is adequate to determine the threshold concentration limit of particulate iron set by the regulatory bodies (6 mg/L). The µ-PAD revealed 95-99% recovery compared with the UV-Vis spectrophotometry (98-100%). Furthermore, welding fume samples were collected in Addis Ababa over five days, using mixed cellulose ester filters and the findings show a high concentration that exceeds the standard levels. Analyzing particulate iron with µ-PADs yielded results consistent with UV-Vis spectrophotometry, suggesting µ-PADs' potential application for occupational particulate iron exposure measurement, eliminating the need for expensive analytical devices. KEY WORDS: µ-PADs, Particulate iron, Response surface methodology, Wax screen-printing, Welding fume, Colorimetric detection Bull. Chem. Soc. Ethiop. 2024, 38(3), 563-576.                                                             DOI: https://dx.doi.org/10.4314/bcse.v38i3.2                                                    
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在埃塞俄比亚亚的斯亚贝巴用蜡筛制造纸质装置,用于测定特定焊接烟尘微粒中的铁含量
本研究利用丝网印刷技术开发了一种纸基分析装置,用于测定焊接烟尘中的微粒铁。使用 Minitab,通过盒式贝肯设计(BBD)对 1,10-菲罗啉的体积和浓度、羟胺的体积和浓度等操作参数进行了优化。此外,还对 µ-PAD 的样品溶液保持能力和反应时间进行了优化。在优化条件下,使用手持手机和图像处理软件 ImageJ 对微粒金属浓度进行了比色定量。所开发的方法具有很好的分析性能,如校准曲线线性良好,选择性较好。Fe3+ 检测的检测限为 4.6 毫克/升,足以确定监管机构规定的颗粒铁阈值浓度限(6 毫克/升)。与紫外可见分光光度法(98%-100%)相比,µ-PAD 的回收率为 95%-99%。此外,在亚的斯亚贝巴使用混合纤维素酯过滤器收集了五天的焊接烟尘样本,结果显示浓度很高,超过了标准水平。用 µ-PADs 分析微粒铁的结果与紫外可见分光光度法一致,这表明 µ-PADs 有可能应用于职业微粒铁暴露测量,从而无需昂贵的分析设备。关键字:µ-PADs、微粒铁、响应面方法学、蜡丝网印刷、焊接烟尘、比色检测 Bull.Chem.Soc.2024, 38(3), 563-576. DOI: https://dx.doi.org/10.4314/bcse.v38i3.2
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来源期刊
CiteScore
2.20
自引率
8.30%
发文量
113
审稿时长
6-12 weeks
期刊介绍: The Bulletin of the Chemical Society of Ethiopia (BCSE) is a triannual publication of the Chemical Society of Ethiopia. The BCSE is an open access and peer reviewed journal. The BCSE invites contributions in any field of basic and applied chemistry.
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