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利用荧光激发发射矩阵(FEEM)和并行因子分析(PARAFAC)识别过程水中的油污。

Identification of oil contamination in process water using fluorescence excitation emission matrix (FEEM) and parallel factor analysis (PARAFAC).

机构信息

Specialised Testing and Sustainable Energy Research Department, Eskom, RT&D, Johannesburg, South Africa E-mail:

HORIBA Instruments Inc., Fluorescence Division, Piscataway, NJ, USA.

出版信息

Water Sci Technol. 2024 Aug;90(3):908-919. doi: 10.2166/wst.2024.223. Epub 2024 Jul 2.

Abstract

Fuel oil is widely used within Eskom, a power generation company in South Africa. Eskom's coal-fired power stations use up to 30,000 L of fuel oil per hour during a cold start-up, a consequence of which results in oil leaks to the dams. Oil contamination in water treatment plants causes irreversible membrane fouling, requiring costly replacement. This research work focused on the development of a rapid method for the identification of low concentrations of the water-soluble oil component fraction of crude fuel oil. For the developed method, known volumes of the water-soluble fraction of crude oil were spiked into various matrices of process water. FEEMs were collected using the patented HORIBA Aqualog spectrometer and data were modelled with PARAFAC. The results were well described with a four-component model, which included an oil component and three natural organic matter components, with a split-half validation match of 90%. The oil component was verified using linear regression of the PARAFAC component scores yielding an value of 0.98. From the scores, a qualitative pass/fail test was developed such that process water can be analysed and subjected to the model to indicate the presence of oil contamination beyond a damaging threshold

摘要

燃料油在南非的一家发电公司 Eskom 中被广泛使用。Eskom 的燃煤电厂在冷启动时每小时使用多达 30000 升燃料油,由此导致油泄漏到水坝。水处理厂的油污会造成不可逆转的膜污染,需要昂贵的更换。这项研究工作专注于开发一种快速识别粗燃料油水溶性油分的方法。对于所开发的方法,将已知体积的粗油的水溶性部分注入到各种工艺水的基质中。使用专利的 HORIBA Aqualog 光谱仪收集 FEEMs,并使用 PARAFAC 对数据进行建模。结果用一个包含油分和三个天然有机物成分的四成分模型很好地描述,其中包括一个油分和三个天然有机物成分,具有 90%的对半验证匹配。使用 PARAFAC 成分得分的线性回归验证了油分,得到的 值为 0.98。从得分中,可以开发出定性的通过/失败测试,以便对工艺水进行分析并应用模型来指示油污染是否超过了破坏性阈值。

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