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Microplastics Detection in Streaming Tap Water with Raman Spectroscopy

机译:拉曼光谱法检测自来水中的微量塑料

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摘要

Microplastic particles have been found in drinking water sources worldwide and, thus, also in our food and beverages. Especially small microplastics, with sizes of 1 mm and less, cannot be identified reliably without spectroscopic means such as Fourier transform infrared spectroscopy (FTIR) or Raman spectroscopy, usually applied to the particles extracted from the samples. However, for drinking and tap water, with its comparatively low biological loads, direct observation may be possible and allows a point-of-entry monitoring for beverages and food to ensure uncontaminated drinking water is being used. In a proof of concept, we apply Raman spectroscopy to observe individual microplastic particles in tap water with added particulate and fluorescent contaminants streaming with 1 L/h through a custom-made flow cell. We evaluated several tubing materials for compatibility with microplastic suspensions containing three different polymers widely found in microplastic surveys worldwide. The experiment promises the monitoring of streaming tap water and even clear surface waters for microplastics smaller than 0.1 mm.
机译:在全世界的饮用水源以及我们的食品和饮料中都发现了微塑料颗粒。如果没有通常用于从样品中提取的颗粒的光谱方法,例如傅立叶变换红外光谱(FTIR)或拉曼光谱法,就无法可靠地识别尺寸特别小的1mm以下的微型塑料。但是,对于具有较低生物负荷的饮用水和自来水,可以直接观察,并且可以对饮料和食品进行进入点监控,以确保使用未污染的饮用水。在概念验证中,我们应用拉曼光谱法观察自来水中的单个微塑料颗粒,并通过定制的流通池以1 L / h的速度流过添加的颗粒和荧光污染物。我们评估了几种管材与包含三种在全球微塑料调查中广泛发现的不同聚合物的微塑料悬浮液的相容性。该实验有望监测小于0.1毫米的微塑料的流动自来水,甚至透明的地表水。

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