Bertanza Giorgio, Abbà Alessandro, Alias Carlotta, Amatucci Achille, Binelli Andrea, Castiglioni Sara, Fossati Marco, Cruzeiro Catarina, Torre Camilla Della, Domini Marta, Feretti Donatella, Gilioli Gianni, Magni Stefano, Mazzoleni Giovanna, Menghini Michele, Pedrazzani Roberta, Schroeder Peter, Simonetto Anna, Steimberg Nathalie, Ventura Vera, Vezzoli Simona, Zerbini Ilaria
Dipartimento di Ingegneria Civile, Architettura, Territorio e Ambiente e di Matematica, Università degli Studi di Brescia. Via Branze 43, Brescia I-25123, Italy.
MISTRAL, Centro Interuniversitario di Ricerca, Milano Bicocca e Verona "Modelli Integrati di Studio per la Tutela della Salute e la Prevenzione negli Ambienti di Vita e di Lavoro", Università di Brescia, Italy.
MethodsX. 2024 Feb 7;12:102599. doi: 10.1016/j.mex.2024.102599. eCollection 2024 Jun.
Sewage sludge (biosolids) management represents a worldwide issue. Due to its valuable properties, approximately one half of the EU production is recovered in agriculture. Nevertheless, growing attention is given to potential negative effects deriving from the presence of harmful pollutants. It is recognized that a (even very detailed) chemical characterization is not able to predict ecotoxicity of a mixture. However, this can be directly measured by bioassays. Actually, the choice of the most suitable tests is still under debate. This paper presents a multilevel characterization protocol of sewage sludge and other organic residues, based on bioassays and chemical-physical-microbiological analyses. The detailed description of the experimental procedure includes all the involved steps: the criteria for selecting the organic matrices to be tested and compared; the sample pre-treatment required before the analyses execution; the chemical, physical and microbiological characterisation; the bioassays, grouped in three classes (baseline toxicity; specific mode of action; reactive mode of action); data processing. The novelty of this paper lies in the integrated use of advanced tools, and is based on three pillars:•the direct ecosafety assessment of the matrices to be reused.•the adoption of innovative bioassays and analytical procedures.•the original criteria for data normalization and processing.
污水污泥(生物固体)管理是一个全球性问题。由于其具有宝贵的特性,欧盟约一半的产量在农业中得到回收利用。然而,人们越来越关注有害污染物存在所带来的潜在负面影响。人们认识到,(即使是非常详细的)化学表征也无法预测混合物的生态毒性。然而,这可以通过生物测定直接测量。实际上,最合适的测试方法的选择仍在争论之中。本文提出了一种基于生物测定以及化学、物理和微生物分析的污水污泥和其他有机残留物的多级表征方案。实验程序的详细描述包括所有涉及的步骤:选择要测试和比较的有机基质的标准;在进行分析之前所需的样品预处理;化学、物理和微生物表征;生物测定,分为三类(基线毒性;特定作用模式;反应性作用模式);数据处理。本文的新颖之处在于先进工具的综合使用,并且基于三个支柱:
• 对要再利用的基质进行直接生态安全评估。
• 采用创新的生物测定和分析程序。
• 数据标准化和处理的原始标准。