Palli Laura, Tuci Francesca, Franca Letizia Macellaro La, Fibbi Donatella, Gori Riccardo
Gestione Impianti Depurazione Acque Spa, Via di Baciacavallo 36, 59100 Prato, Italy.
Department of Civil and Environmental Engineering, University of Florence, Via S. Marta 3, 50139 Florence, Italy.
Membranes (Basel). 2024 May 14;14(5):115. doi: 10.3390/membranes14050115.
This paper describes a case study involving a revamping of a full-scale membrane bioreactor that treats landfill leachate and other liquid wastes. The main change was the introduction of nitritation/denitritation in alternating cycles instead of the classic denitrification/nitrification process, together with the installation of fine bubble diffusers, a reduction in the volume of the biological compartment, and an increase in the equalization volume. The most significant results were obtained for the biological compartment, with a decrease in the specific energy consumption of 46.6%. At the same time, the removal efficiency of COD, BOD, and TN substantially remained the same before and after plant revamping, while the removal efficiency of TP increased over the years, reaching an average value of almost 71%. Regarding the ultrafiltration unit, the specific flux (or permeability) was characterized by an increasing trend. At the same time, the specific energy consumption of this section decreased by 9.4%. These results led to the conclusion that the changes introduced with the revamp led to a more stable process, a reduction in membrane fouling, and important energy savings.
本文描述了一个涉及对处理垃圾渗滤液和其他液体废物的全尺寸膜生物反应器进行改造的案例研究。主要变化是引入了交替循环的亚硝化/反硝化过程,而非传统的反硝化/硝化过程,同时安装了微孔曝气器,减小了生物区的体积,并增加了均衡池的体积。生物区取得了最显著的成果,比能耗降低了46.6%。与此同时,在工厂改造前后,COD、BOD和TN的去除效率基本保持不变,而TP的去除效率多年来有所提高,达到了近71%的平均值。关于超滤单元,比通量(或渗透率)呈上升趋势。同时,该部分的比能耗降低了9.4%。这些结果得出的结论是,改造所带来的变化使过程更加稳定,膜污染减少,并实现了重要的节能效果。