Abst'/> Molecular identification of polymers and anthropogenic particles xtracted from oceanic water and fish stomach - A Raman micro- spectroscopy study
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Molecular identification of polymers and anthropogenic particles xtracted from oceanic water and fish stomach - A Raman micro- spectroscopy study

机译:从海水和鱼胃中提取的聚合物和人为颗粒的分子鉴定-拉曼光谱研究

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AbstractPacific Ocean trawl samples, stomach contents of laboratory-raised fish as well as fish from the subtropical gyres were analyzed by Raman micro-spectroscopy (RMS) to identify polymer residues and any detectable persistent organic pollutants (POP). The goal was to access specific molecular information at the individual particle level in order to identify polymer debris in the natural environment. The identification process was aided by a laboratory generated automated fluorescence removal algorithm. Pacific Ocean trawl samples of plastic debris associated with fish collection sites were analyzed to determine the types of polymers commonly present. Subsequently, stomach contents of fish from these locations were analyzed for ingested polymer debris. Extraction of polymer debris from fish stomach using KOH versus ultrapure water were evaluated to determine the optimal method of extraction. Pulsed ultrasonic extraction in ultrapure water was determined to be the method of choice for extraction with minimal chemical intrusion. The Pacific Ocean trawl samples yielded primarily polyethylene (PE) and polypropylene (PP) particles >1 mm, PE being the most prevalent type. Additional microplastic residues (1 mm - 10 μm) extracted by filtration, included a polystyrene (PS) particle in addition to PE and PP. Flame retardant, deca-BDE was tentatively identified on some of the PP trawl particles. Polymer residues were also extracted from the stomachs of Atlantic and Pacific Ocean fish. Two types of polymer related debris were identified in the Atlantic Ocean fish: (1) polymer fragments and (2) fragments with combined polymer and fatty acid signatures. In terms of polymer fragments, only PE and PP were detected in the fish stomachs from both locations. A variety of particles were extracted from oceanic fish as potential plastic pieces based on optical examination. However, subsequent RMS examination identified them as various non-plastic fragments, highlighting the importance of chemical analysis in distinguishing between polymer and non-polymer residues.Graphical abstractDisplay OmittedHighlightsUse of Raman micro-spectroscopy in the extraction and identification plastic debris in the marine environment.Molecular identification of polymer aggregates to prevent potential misidentifications using optical techniques alone.Two variations of polymer debris detected in oceanic fish stomach.Use of water based extraction to prevent possible polymer degradation.Raman micro-spectroscopy based examination of oceanic water and fish for the definitive characterization of polymer waste and associated additives extracted using a water based isolation.
机译: 摘要 使用拉曼显微光谱仪分析了太平洋拖网样本,实验室饲养的鱼类以及亚热带回旋鱼类的胃中含量( RMS)以识别聚合物残留物和任何可检测到的持久性有机污染物(POP)。目的是在单个粒子级别访问特定的分子信息,以便识别自然环境中的聚合物碎片。鉴定过程由实验室生成的自动荧光去除算法辅助。分析了与鱼类采集地点相关的塑料垃圾的太平洋拖网样本,以确定通常存在的聚合物类型。随后,分析了来自这些地点的鱼的胃内容物是否摄入了聚合物碎片。评价了使用KOH与超纯水从鱼胃中提取聚合物碎片的方法,以确定最佳的提取方法。已确定在超纯水中进行脉冲超声萃取是萃取时化学干扰最少的选择方法。太平洋拖网样本主要产生大于1毫米的聚乙烯(PE)和聚丙烯(PP)颗粒,PE是最普遍的类型。通过过滤提取的其他微塑料残留物(1mm-10μm)除PE和PP外还包括聚苯乙烯(PS)颗粒。暂时在某些聚丙烯拖网颗粒上鉴定了阻燃剂十溴二苯醚。还从大西洋和太平洋鱼类的胃中提取了聚合物残留物。在大西洋鱼类中鉴定出两种类型的与聚合物相关的碎片:(1)聚合物碎片和(2)具有聚合物和脂肪酸组合特征的碎片。就聚合物碎片而言,在两个位置的鱼胃中仅检测到PE和PP。根据光学检查,从海洋鱼类中提取了各种颗粒,作为潜在的塑料碎片。但是,随后的RMS检查将它们识别为各种非塑料碎片,突显了化学分析在区分聚合物和非聚合物残基中的重要性。 图形摘要 省略显示 突出显示 在海洋环境中提取和识别塑料碎片中使用拉曼显微技术。 仅通过光学技术即可对聚合物聚集体进行分子鉴定,以防止潜在的误识别。 聚合物碎片的两种变体 使用水基萃取物以防止聚合物降解。 基于拉曼光谱的海洋水和鱼类检查,以明确鉴定使用水基分离法提取的聚合物废物和相关添加剂。

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