University of Limoges, E2Lim Laboratory, 123 Avenue Albert Thomas, 87060, Limoges Cedex, France; Instituto de la Grasa, Spanish National Research Council (CSIC), Campus Universitario Pablo de Olavide, Ed. 46, Ctra. de Utrera, km. 1, Seville, 41013, Spain.
University of Limoges, E2Lim Laboratory, 123 Avenue Albert Thomas, 87060, Limoges Cedex, France.
J Environ Manage. 2024 Jun;360:121223. doi: 10.1016/j.jenvman.2024.121223. Epub 2024 May 23.
This study proposes an evaluation of the Diffusive Gradients in Thin films (DGT) technique to assess the labile fraction of trace metals and metalloids in anaerobic digestates. Experiments were performed in presence and absence of air to determine whether maintaining anaerobic conditions is mandatory during DGT deployments. A theoretically expected linear accumulation profile was observed for Fe, Mn, Ni, Mo, and As(III) in a manure-derived digestate and for Mn in distillery waste-derived digestate, whereas Al and Cu were detected without a consistent trend over time. The DGT technique can thus be used to evaluate the labile fraction of some trace elements in these digestates. The labile fraction of some elements was shown to evolve over 72 h when deployments were performed in the presence of air. We thus strongly recommend to systematically perform time-series deployments to identify and consider only the elements with a linear accumulation trend and to maintain anaerobic conditions.
本研究提出了一种评估薄膜扩散梯度(DGT)技术的方法,以评估厌氧消化物中痕量金属和类金属的生物可利用分数。实验在有氧和无氧条件下进行,以确定在 DGT 部署过程中是否必须保持厌氧条件。在一种源自粪便的消化物中,Fe、Mn、Ni、Mo 和 As(III)以及在一种源自酿酒厂废物的消化物中 Mn 的理论预期线性积累分布得到了观察,而 Al 和 Cu 的检测结果没有随时间呈现一致的趋势。因此,DGT 技术可用于评估这些消化物中一些痕量元素的生物可利用分数。当在有氧条件下进行部署时,一些元素的生物可利用分数在 72 小时内发生了变化。因此,我们强烈建议系统地进行时间序列部署,以识别和仅考虑具有线性积累趋势的元素,并保持厌氧条件。