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Distribution and Chemical Analysis of Pharmaceuticals and Personal Care Products (PPCPs) in the Environmental Systems: A Review

机译:药品和个人护理产品(PPCP)在环境系统中的分布和化学分析:综述

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摘要

PPCPs are found almost everywhere in the environment especially at an alarming rate and at very low concentration in the aquatic systems. Many methods—including pressurized hot water extraction (PHWE), pressurized liquid extraction (PLE), ultrasound-assisted extraction (UAE), and micro-assisted extraction (MAE)—have been employed for their extraction from both surface waters and biota. Solid-phase extraction (SPE) proved to be the best extraction method for these polar, non-volatile, and thermally unstable compounds in water. However, ultrasonic extraction works better for their isolation from sediment because it is cheap and consumes less solvent, even though SPE is preferred as a clean-up method for sediment samples. PPCPs are in groups of—acidic (e.g., diclofenac, ibuprofen, naproxen), neutral (e.g., caffeine, carbamazepine, fluoxetine), and basic pharmaceuticals, as well as antibiotics and estrogens amongst others. PPCPs which are present in trace levels (ng/L) are more often determined by liquid chromatography-mass spectrometry (LC-MS), gas chromatography-mass spectrometry (GC-MS), and high-performance liquid chromatography-ultraviolent (HPLC-UV). Of these, LC-MS and LC-MS-MS are mostly employed for the analysis of this class of compounds, though not without a draw-back of matrix effect. GC-MS and GC-MS-MS are considered as alternative cost-effective methods that can also give better results after derivatization.
机译:在环境中几乎所有地方都发现了PPCP,特别是在水生系统中,其警惕性和浓度非常低。从地表水和生物区系中提取水的方法很多,包括加压热水提取(PHWE),加压液体提取(PLE),超声辅助提取(UAE)和微辅助提取(MAE)。事实证明,固相萃取(SPE)是水中这些极性,非挥发性和热不稳定化合物的最佳萃取方法。但是,尽管SPE作为沉积物样品的净化方法是首选的,但超声波萃取更便宜,因为它们便宜且消耗的溶剂少,因此可以更好地与沉积物分离。 PPCP分为以下类别:酸性(例如,双氯芬酸,布洛芬,萘普生),中性(例如,咖啡因,卡马西平,氟西汀)和碱性药物,以及抗生素和雌激素。痕量水平(ng / L)中存在的PPCP通常通过液相色谱-质谱(LC-MS),气相色谱-质谱(GC-MS)和高效液相色谱-紫外(HPLC-紫外线)。其中,LC-MS和LC-MS-MS主要用于分析这类化合物,尽管并非没有基质效应的缺点。 GC-MS和GC-MS-MS被认为是另一种具有成本效益的方法,也可以在衍生化后获得更好的结果。

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