University of Carthage, Water Research and Technologies Centre (CERTE), Wastewater Treatment Laboratory, Tunisia; INRA, UR50, Laboratoire de Biotechnologie de l'Environnement, Avenue des Etangs, Narbonne F-11100, France.
INRA, UR50, Laboratoire de Biotechnologie de l'Environnement, Avenue des Etangs, Narbonne F-11100, France.
Bioresour Technol. 2014 Nov;172:150-155. doi: 10.1016/j.biortech.2014.08.127. Epub 2014 Sep 8.
Agro-industries are facing many economic and environmental problems associated with seasonal generation of liquid and solid waste. In order to reduce treatment costs and to cope with seasonal variation, we have developed a hybrid anaerobic reactor operated sequentially by using lignocellulosic biomass (LB) as biofilm carrier support. Six LBs were tested to evaluate the treatment performance during a succession of two start-up periods, separated by a non-feeding period. After a short acclimation phase of several days, all the reactors succeeded in starting-up in less than 1month to reach an organic loading rate of 25gCODL(-1)d(-1). In addition, they restarted-up successfully in only 15days after a 3month non-feeding period, indicating that biofilms conserved their biological activities during this last phase. As a consequence, the use of LB as a biofilm support gives the potential to sustain seasonal variations of wastewater loads for industrial application.
农业产业面临着许多与液体和固体废物季节性产生相关的经济和环境问题。为了降低处理成本并应对季节性变化,我们开发了一种混合厌氧反应器,该反应器通过使用木质纤维素生物质(LB)作为生物膜载体支撑物顺序运行。测试了六种 LB,以在两个启动期之间的非喂养期评估处理性能。在几天的短期驯化阶段之后,所有反应器都在不到 1 个月的时间内成功启动,达到了 25gCODL(-1)d(-1)的有机负荷率。此外,在经过 3 个月的非喂养期后,它们仅在 15 天内成功重新启动,这表明生物膜在最后阶段保留了其生物活性。因此,LB 用作生物膜支撑物具有为工业应用持续承受废水负荷季节性变化的潜力。