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Furfural Determination with Disposable Polymer Films and Smartphone-Based Colorimetry for Beer Freshness Assessment

机译:一次性聚合物膜和基于智能手机的比色法测定糠醛以评估啤酒的新鲜度

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We have developed disposable color-changing polymeric films for quantification of furfural-a freshness indicator-in beer using a smartphone-based reader. The films are prepared by radical polymerization of 4-vinylaniline, as a furfural-sensitive indicator monomer, 2-hydroxymethyl methacrylate as a comonomer, and ethylene dimethyl methacrylate (EDMA) as a cross-linker. The sensing mechanism is based on the Stenhouse reaction in which aniline and furfural react in acidic media with the generation of a deep red cyanine derivative, absorbing at 537 nm, which is visible to the naked eye. The colorimetric response has been monitored using either a portable fiber-optic spectrophotometer or the built-in camera of a smartphone. Under the optimized conditions, a linear response to furfural in beer was obtained in the 39 to 500 mu g L-1 range, with a detection limit of 12 mu g L-1, thus improving the performance of other well-established colorimetric or chromatographic methods. The novel films are highly selective to furfural, and no cross-reactivity has been observed from other volatile compounds generated during beer aging. A smartphone application (app), developed for Android platforms, measures the RGB color coordinates of the sensing membranes after exposure to the analyte. Following data processing, the signals are converted into concentration values by preloaded calibration curves. The method has been applied to determination of furfural in pale lager beers with different storage times at room temperature. A linear correlation (r > 0.995) between the storage time and the furfural concentration in the samples has been confirmed; our results have been validated by HPLC with diode-array detection.
机译:我们已经开发了一次性变色聚合物膜,用于使用基于智能手机的阅读器对糠醛(一种新鲜度指标)进行定量分析。该膜是通过对糠醛敏感的指示剂单体4-乙烯基苯胺,作为共聚单体的甲基丙烯酸2-羟甲基酯和作为交联剂的乙烯甲基丙烯酸二甲酯(EDMA)进行自由基聚合制备的。感应机制基于Stenhouse反应,其中苯胺和糠醛在酸性介质中反应,并生成深红色花青衍生物,其在537 nm处吸收,肉眼可见。使用便携式光纤分光光度计或智能手机的内置摄像头可以监控比色响应。在最佳条件下,啤酒中糠醛的线性响应在39至500μg L-1范围内,检出限为12μgL-1,从而改善了其他公认的比色法或色谱法的性能。方法。新型薄膜对糠醛具有高度选择性,并且未发现与啤酒老化过程中产生的其他挥发性化合物产生交叉反应。专为Android平台开发的智能手机应用程序(app),可在暴露于分析物后测量传感膜的RGB颜色坐标。经过数据处理后,信号会通过预加载的校准曲线转换为浓度值。该方法已应用于室温下不同贮藏时间的淡啤酒中糠醛的测定。储存时间和样品中糠醛浓度之间存在线性相关性(r> 0.995)。我们的结果已经通过带有二极管阵列检测的HPLC进行了验证。

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