Starch-Mg/Al layered double hydroxide composites as an efficient solid phase extraction sorbent for non-steroidal anti-inflammatory drugs as environmental pollutants
[Display omitted] •S-Mg/Al LDH composites were synthesized using an eco-friendly co-precipitation method.•S-Mg/Al LDH composites act as an efficient and fast solid phase extraction sorbent.•S-Mg/Al LDH composites were reused up to 30 times without a decrease in performance.•Determination of several...
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Veröffentlicht in: | Journal of hazardous materials 2021-01, Vol.401, p.123782, Article 123782 |
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Sprache: | eng |
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•S-Mg/Al LDH composites were synthesized using an eco-friendly co-precipitation method.•S-Mg/Al LDH composites act as an efficient and fast solid phase extraction sorbent.•S-Mg/Al LDH composites were reused up to 30 times without a decrease in performance.•Determination of several NSAIDs in real samples was made using the proposed method.
Using a co-precipitation method, starch-Mg/Al layered double hydroxide (S-Mg/Al LDH) composites were synthesized. Their physicochemical properties were assessed by Fourier-transform infrared spectroscopy, X-ray diffraction, scanning electron microscopy, and thermo-gravimetric analysis. The quantification of six non-steroidal anti-inflammatory drugs (NSAIDs) was conducted using real samples (e.g., hospital waste water, river water, sewage treatment plant water, and tablet formulations) by gas chromatography-mass spectrometry. For the development of this method, the system was optimized in terms of several key variables (e.g., pH, flow rate, and eluent type/volume). The developed method for NSAIDs exhibited good resolution, sensitivity, reproducibility, and specificity even in complex matrices with limits of detection between 4 and 20 pg/mL. Hence, S-Mg/Al LDH composites were proven to be efficient and fast solid phase extraction (SPE) sorbents for NSAIDs. In addition, each LDH-SPE cartridge showed good reusability without a noticeable change in performance (e.g., up to 30 cycles) and target recoveries between 99.5 – 82.9 %. This work should open up new opportunities for a sesnsitive and sustainable quantitative method for the determination of NSAIDs in complex samples. |
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ISSN: | 0304-3894 1873-3336 |
DOI: | 10.1016/j.jhazmat.2020.123782 |