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首页> 外文期刊>Environmental Monitoring and Assessment >Optimization and application of hollow fiber liquid-phase microextraction and microwave-assisted extraction for the analysis of non-steroidal anti-inflammatory drugs in aqueous and plant samples
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Optimization and application of hollow fiber liquid-phase microextraction and microwave-assisted extraction for the analysis of non-steroidal anti-inflammatory drugs in aqueous and plant samples

机译:中空纤维液相微萃取和微波辅助提取的优化与应用,用于分析水性和植物样品中的非甾体抗炎药分析

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摘要

Human consumption of non-steroidal anti-inflammatory drugs (NSAIDs) is increasing, which poses a great risk of pollution by these pharmaceuticals on the aquatic environment. Therefore, this study reports the optimization of microwave-assisted extraction using water as a green solvent and hollow fiber liquid-phase microextraction (HF-LPME) methods followed by high-performance liquid chromatography-high resolution mass spectrometry analysis of NSAIDs in wastewater and aquatic plant,Eichhornia crassipes. The optimized MAE resulted in efficient transfer of selected NSAIDs from plant samples into the aqueous phase yielding the recoveries ranging from 91 to115%. A multivariate approach based on half fractional factorial and central composite design was used during the optimization of HF-LPME. Under the optimized conditions, the maximum enrichment factors for naproxen, fenoprofen, diclofenac, and ibuprofen were 49, 126, 93 and 156, respectively. The overall analytical method recoveries ranged from 86 to 116% while the limits of quantitation for wastewater and plant samples ranged from 0.09 to 0.59 mu g L(-1)and from 0.11 to 0.59 mu g kg(-1), respectively. The precision of the proposed analytical method which was measured in terms of RSD values did not exceed 5%. Naproxen was the most abundant compound in both wastewater and theEichhornia crassipesplant samples with concentrations of up to 3.30 mu g L(-1)and 10.97 mu g kg(-1), respectively. The detection of NSAIDs inEichhornia crassipesmeans this plant has the ability to bioaccumulate pharmaceutical load in surface water.
机译:人类消费非甾体抗炎药(NSAIDs)正在增加,这造成了这些药物对水生环境的危险风险。因此,本研究报告了使用水作为绿色溶剂和中空纤维液相微萃取(HF-LPME)方法的微波辅助提取的优化,然后进行了高效液相色谱 - 高分辨率 - 在废水和水生中NSAIDS的高分辨率质谱分析植物,Eichhornia Crassipes。优化的MAE导致从植物样品中选择的NSAIDS将所选的NSAID转移到水相中,得到的回收率范围为91-115%。 HF-LPME优化期间使用基于半分数阶段和中央复合设计的多变量方法。在优化的条件下,萘普生,Fenoprofen,双氯芬酸和布洛芬的最大富集因子分别为49,126,93和156。总分析方法回收率范围为86至116%,而废水和植物样品的定量限制为0.09至0.59μg1(-1)和0.11至0.59μg(-1)。根据RSD值测量的所提出的分析方法的精度不超过5%。萘普生是废水中最丰富的化合物,分别是浓度高达3.30μg1(-1)和10.97μgkg(-1)浓度的浓度。 NSAIDs ineichhornia rassipesmeans的检测该植物能够在地表水中生物累积药物载荷。

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