Wazne Mohammad, Mermillod-Blondin Florian, Vallier Manon, Krause Stefan, Barthélémy Nans, Simon Laurent
CNRS, ENTPE, Université Claude Bernard Lyon 1, UMR 5023 LEHNA, Villeurbanne F 69622, France.
School of Geography, Earth and Environmental Sciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.
MethodsX. 2023 Dec 27;12:102540. doi: 10.1016/j.mex.2023.102540. eCollection 2024 Jun.
Recent studies on the distribution of microplastics in aquatic sediments have deployed different methods and devices for density separation of microplastics from sediments. However, instrument specific limitations have been noted, including their high cost, difficulty in handling, or/and the potential for elevated contamination risk due to their plastic composition. This study improves existing sediment microplastic separation techniques by modifying the commonly used conical shape glass separating funnels. The modification consists in connecting a silicone tube at the base of the funnel, whose opening and closure was manually controlled by a Mohr clamp. This adjustment made to the funnels have effectively mitigated critical clogging problems frequently encountered in density separation units. An experiment was conducted using sand-based sediment spiked with polyamide fragments to validate this method modification. Following a complete extraction protocol with the modification of separating funnels, the microplastic extraction efficiency from sediments was high with a 90% recovery rate. Based on these promising results, future studies should consider naturally diverse substrates, as recovery efficiency may be sediment-dependent. Two key adjustments to the glass separation funnels:•Removal of stopcocks•Use of silicone tubes and Mohr clamps to control sediment release.
最近关于微塑料在水生沉积物中分布的研究采用了不同的方法和装置来从沉积物中进行微塑料的密度分离。然而,已注意到仪器存在特定局限性,包括成本高、操作困难,以及由于其塑料成分导致污染风险增加的可能性。本研究通过改进常用的锥形玻璃分离漏斗来改进现有的沉积物微塑料分离技术。改进之处在于在漏斗底部连接一根硅胶管,其开合由莫尔夹手动控制。对漏斗的这种调整有效地缓解了密度分离装置中经常遇到的严重堵塞问题。使用掺有聚酰胺碎片的砂基沉积物进行了一项实验,以验证这种方法的改进。按照改进分离漏斗后的完整提取方案,沉积物中微塑料的提取效率很高,回收率达90%。基于这些令人鼓舞的结果,未来的研究应考虑自然多样的底物,因为回收效率可能取决于沉积物。对玻璃分离漏斗的两项关键调整:•移除旋塞•使用硅胶管和莫尔夹来控制沉积物的释放。