Membrane-based LPME: HF-LPME, EME, PALME review and application papers
| Membrane LPME | Subject | Author(s) | Year | References |
|---|---|---|---|---|
| Membrane-based LPME reviews | Efficiencies of HF-LPME | Alsharif et al. | 2017 | [124] |
| HF-LPME, SBME and EME for pesticide analyses | Prosen | 2019 | [125] | |
| Microextraction with supported membranes | Pedersen-Bjergaard | 2020 | [126] | |
| HF-LPME for analysis of metal ions and pharmaceuticals | Khan et al. | 2020 | [127] | |
| HF-LPME with polymer inclusion membrane (PIM) | Olasupo, Suah | 2022 | [128] | |
| 3-phase HF-LPME and PALME | Gjelstad | 2019 | [129] | |
| Mass transfer in EME | Huang et al. | 2016 | [130] | |
| EME | Huang et al. | 2017 | [131] | |
| EME overview | Druoin et al. | 2019 | [132] | |
| Conductive vial EME/PALME, drugs | Skaalvik et al. | 2021 | [133] | |
| Environmental applications of EME | Shi et al. | 2023 | [134] | |
| Chemically modified EME membranes | Li et al. | 2022 | [135] | |
| EME, the liquid membrane, review | Hansen et al. | 2022 | [136] | |
| EME, fundamentals and applications, review | Martins et al. | 2023 | [137] | |
| HF-LPME food, environmental, forensics applications | HF-LPME, GC-MS, OP pesticides, fish | Sun et al. | 2011 | [138] |
| UAE, HF-LPME, GC/NPD, OP pesticides, baby foods | González-Curbelo et al. | 2013 | [139] | |
| Automated 3-Phase HF-LPME, HPLC/UV, herbicides, water | Tajik et al. | 2015 | [140] | |
| DES-HF-LPME, GC-MS, phenolics from beverage plastics | Afshar Mogaddam et al. | 2020 | [141] | |
| NADES, SLM, PALME, LC-MS/MS, OP nerve agents, urine | Bauchouareb et al. | 2022 | [142] | |
| HF-LPME, GC-MS, organo-tin compounds in fruit juice | González-Domínguez, Sayago | 2023 | [143] | |
| HF-LPME, HPLC, herbicides in soil | Moret et al. | 2023 | [144] | |
| HF-LPME, HPLC-FLD, fluoroquinolones, chicken liver | Moema et al. | 2023 | [145] | |
| HF-LPME, PALME, GC-MS, aromatic amines, urine | Lorenzo-Parodi et al. | 2023 | [146] | |
| NADES-HD-LPME, HPLC/UV, triazines, water, urine | Díaz-Álvarez et al. | 2023 | [147] | |
| EME food, forensics applications | EME, HPLC/UV, caffein, gallic acid, coffee | Khajeh et al. | 2017 | [148] |
| EME, HPLC/UV, melamine, infant formulae | Rezaee et al. | 2022 | [149] | |
| MAE, EME/PALME, IC, perchlorate in seafood | Nsubuga et al. | 2016 | [150] | |
| ENE-AAS determination of Cr(VI) in food samples | Goodarzi et al. | 2022 | [151] | |
| Chitosan SLM/EME/PALME/HPLC/UV, coffee, tea | Román-Hidalgo et al. | 2023 | [152] |
LPME: liquid phase microextraction; HF-LPME: hollow fiber LPME; EME: electromembrane extraction; PALME: parallel artificial liquid membrane extraction; SBME: solvent bar microextraction; GC: gas chromatography; MS: mass spectrometry; OP: organophosphorus; UAE: ultrasound-assisted extraction; NPD: nitrogen/phosphorus detector; HPLC: high performance liquid chromatography; UV: ultraviolet; DES: deep eutectic solvent; NADES: natural deep eutectic solvent; SLM: supported liquid membrane; MS/MS: tandem mass spectrometry; FLD: fluorescence detection; UV: ultraviolet; MAE: microwave aided extraction; IC: ion chromatography; UHPLC: ultra-high performance liquid chromatography
JMK: Conceptualization, Investigation, Visualization, Writing—original draft, Writing—review & editing.
The author declares that he has no conflicts of interest.
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© The Author(s) 2024.