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首页> 外文期刊>Electroanalysis >Amperometric Sniffer for Volatile Amines Based on Paper-Supported Room Temperature Ionic Liquids Enabling Rapid Assessment of Fish Spoilage
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Amperometric Sniffer for Volatile Amines Based on Paper-Supported Room Temperature Ionic Liquids Enabling Rapid Assessment of Fish Spoilage

机译:基于纸支持的室温离子液体的挥发性胺安培嗅探器,可快速评估鱼的腐败度

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A gas sensors based on a room temperature ionic liquid (RTIL) supported on paper is proposed as amperometric sniffer for monitoring volatile amines (VAs) released from fish samples, in order to gain indication of their state of turning spoiled. It was used as a paper electrochemical detector (PED) for a flow injection system in which controlled headspace volumes in equilibrium with ice-stored fish samples were directly injected. The performance of this RTIL-PED sensor was preliminarily tested on synthetic samples of trimethylamine (TMA), dimethylamine (DMA), methylamine (MA) and ammonia (i.e. the main species responsible for the typical flavor of spoiled fish), thus verifying that only TMA, DMA and MA can be detected because NH_3 oxidation occurred beyond the solvent discharge. This notwithstanding, detection of the sole TMA, DMA and MA as a whole turned out to be well suited for the rapid assessment of fish spoilage, since during storage the release enhancement for these amines is largely predominant over that of NH_3. Repeatable (8% RSD) sharp peaks were detected for all amines above over a wide range (5–1000 nmol) and a detection limit of a little more than 3 nmol was inferred for a signal-to-noise ratio of 3. This approach was applied to the detection of VAs released from real fish samples (sardines), in parallel to the determination of their total volatile basic nitrogen (TVBN), which is a conventional indicator frequently adopted for the chemical quality assessment of fish. A substantially satisfactory agreement was found by comparing the data achieved by these two approaches.
机译:提出了一种基于纸上支撑的室温离子液体(RTIL)的气体传感器作为安培嗅探器,用于监测从鱼样品中释放的挥发性胺(VA),以便获得其变质状态的指示。它用作流动注入系统的纸质电化学检测器(PED),在该系统中,直接注入与冰蓄鱼样品平衡的受控顶空体积。对该RTIL-PED传感器的性能进行了初步测试,包括三甲胺(TMA),二甲胺(DMA),甲胺(MA)和氨(即造成变质鱼典型风味的主要物种)的合成样品,从而验证了可以检测到TMA,DMA和MA,因为在溶剂排放之外发生了NH_3氧化。尽管如此,检测到唯一的TMA,DMA和MA整体上非常适合快速评估鱼的腐败程度,因为在储存过程中,这些胺的释放增强主要超过NH_3。在宽范围(5–1000 nmol)范围内,所有上述胺均检测到可重复的(8%RSD)尖峰,而信噪比为3时,推断出检测限略高于3 nmol。与测定其总挥发性碱性氮(TVBN)平行,该方法被用于检测从真实鱼样品(沙丁鱼)中释放的VA,这是经常用于鱼类化学质量评估的常规指标。通过比较这两种方法获得的数据,发现基本令人满意的协议。

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