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A new 3D printed radial flow-cell for chemiluminescence detection: Application in ion chromatographic determination of hydrogen peroxide in urine and coffee extracts

机译:用于化学发光检测的新型3D印刷径向流动细胞:在尿液和咖啡提取物中的离子色谱法测定中的应用

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A new polymer flow-cell for chemiluminescence detection (CLD) has been designed and developed by diverging multiple linear channels from a common centre port in a radial arrangement. The fabrication of radial flow-cell by 3D PolyJet printing and fused deposition modeling (FDM) has been evaluated, and compared with a similarly prepared spiral flow-cell design commonly used in chemiluminescence detectors. The radial flow-cell required only 10 h of post-PolyJet print processing time as compared to ca. 360 h long post-PolyJet print processing time required for the spiral flow-cell. Using flow injection analysis, the PolyJet 3D printed radial flow-cell provided an increase in both the signal magnitude and duration, with an average increase in the peak height of 63% and 58%, peak area of 89% and 90%, and peak base width of 41% and 42%, as compared to a coiled-tubing spiral flow-cell and the PolyJet 3D printed spiral flow-cell, respectively. Computational fluid dynamic (CFD) simulations were applied to understand the origin of the higher CLD signal obtained with the radial flow-cell design, indicating higher spatial coverage near the inlet and lower linear velocities in the radial flow-cell. The developed PolyJet 3D printed radial flow-cell was applied in a new ion chromatography chemiluminescence based assay for the detection of H2O2 in urine and coffee extracts. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过以径向布置从公共中心端口发散多个线性通道,设计和开发了用于化学发光检测(CLD)的新的聚合物流动细胞。已经评估了通过3D多射精印刷和融合沉积建模(FDM)的径向流动细胞的制造,并与常用于化学发光探测器的类似制备的螺旋流动细胞设计进行了比较。与CA相比,径向流动单元仅需要10小时的多jet打印处理时间。螺旋流动单元所需的360小时长的PolyJet打印处理时间。使用流量注射分析,多射斑3D印刷的径向流动单元提供了信号幅度和持续时间的增加,峰值高度的平均增加63%和58%,峰面积为89%和90%,以及峰值与卷绕管螺旋流动细胞和Polyjet 3D印刷螺旋流动细胞相比,基础宽度为41%和42%。应用计算流体动力学(CFD)模拟以了解用径向流动单元设计获得的较高CLD信号的来源,表示径向流动单元中的入口附近的较高的空间覆盖率和较低的线性速度。在新的离子色谱化学发光的基础测定中施加开发的多射斑3D印刷径向流动细胞,用于检测尿液和咖啡提取物中的H2O2。 (c)2018 Elsevier B.v.保留所有权利。

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