Laboratoire de Chimie Moléculaire et Environnement, Université de Savoie, Savoie Technolac 73376 Le Bourget du Lac, France.
Ultrason Sonochem. 2013 Jan;20(1):109-17. doi: 10.1016/j.ultsonch.2012.08.001. Epub 2012 Aug 16.
The aim of this research was to evaluate the efficiency of an ultrasonication process in combination with METIX-AC technology, a chemical process, for metal removal and dewatering ability, with preservation of fertilizing properties of sewage sludge. Waste activated sludge samples having a total solids concentration of 4 and 20 g L(-1), were enriched with Cu and Zn in order to exceed the limiting values recommended by Québec regulation for sludge valorization. Ultrasonication was applied at low frequency (22 kHz) at specific energies ranging from 180 to 66,000 kJ kg(-1) of dry sludge. Ultrasound-assisted leaching rates and yields were similar to chemical leaching alone for Zn, whereas solubilisation was reduced for Cu, regardless the specific energy. Fertilizing properties preservation and dewatering ability were similar in ultrasound-assisted leaching, compared to chemical leaching alone. These trends were mainly attributed to the changes of metal speciation, particle size and morphology during ultrasonication, in addition to untreated sludge properties.
本研究旨在评估超声处理与 METIX-AC 技术(一种化学工艺)相结合在去除金属和脱水能力方面的效率,同时保持污水污泥的施肥性能。将总固体浓度为 4 和 20 g L(-1) 的废活性污泥样品进行富 Cu 和 Zn,以超过魁北克法规规定的污泥增值的限制值。超声处理在低频(22 kHz)下进行,特定能量范围为 180 至 66,000 kJ kg(-1)的干污泥。超声辅助浸出率和产率与单独的化学浸出对于 Zn 相似,而 Cu 的溶解率则降低,而与特定能量无关。与单独的化学浸出相比,超声辅助浸出时的施肥性能保持和脱水能力相似。这些趋势主要归因于超声处理过程中金属形态、颗粒大小和形态的变化,以及未处理污泥的性质。