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Detection of PAHs in seawater using surface-enhanced Raman scattering (SERS)

机译:使用表面增强拉曼散射(SERS)检测海水中的PAHs

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摘要

The laboratory characterization of a field-operable surface-enhanced Raman scattering sensor (SERS optode) is presented for the detection of aromatic hydrocarbons in seawater. The sensor has been developed for deployment with a robust underwater spec-trograph. To meet the demands of the harsh seawater application, sol-gel derived SERS substrates were used. The calibration curves of six PAHs were determined to be of Langmuir adsorption isotherm type with limits of detection ranging from the μg l~(-1) to ng l~(-1) level. The experimentally determined adsorption constants varied strongly with the molecular weight of the analytes and correlated with their solubility. A mixture of five PAHs dissolved in seawater was investigated to demonstrate the utility of this method for screening. Emphasis was put on the interference from suspended particulate matter (SPM). The Raman measurement with back-scattering configuration was shown to be immune against turbidities up to 1000 NTU. The physico-chemical interference arising from adsorption by the sediment was measured on-line by adding sediment to a PAH-spiked solution. According to the calibration curve, the PAH concentration decrease corresponded to more than 98% of the analyte being scavenged by the sediment.
机译:提出了一种可现场操作的表面增强拉曼散射传感器(SERS optode)的实验室特性,用于检测海水中的芳烃。该传感器已经开发出来,可以与强大的水下光谱仪配合使用。为了满足苛刻的海水应用需求,使用了溶胶-凝胶衍生的SERS基材。确定了六种PAHs的校准曲线为Langmuir吸附等温线类型,检测限范围为μgl〜(-1)至ng l〜(-1)。实验确定的吸附常数随分析物的分子量变化很大,并与它们的溶解度相关。研究了溶解在海水中的五种多环芳烃的混合物,以证明该方法可用于筛查。重点放在悬浮颗粒物(SPM)的干扰上。具有反向散射构型的拉曼测量结果显示可抵抗高达1000 NTU的浊度。通过将沉淀物添加到PAH加标溶液中,可以在线测量由沉淀物吸附引起的物理化学干扰。根据校准曲线,PAH浓度降低对应于被沉积物清除的分析物超过98%。

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