Petta Luigi, De Gisi Sabino, Casella Patrizia, Farina Roberto, Notarnicola Michele
ENEA, Department for Sustainability of Production and Territorial Systems, "Water, Waste and Raw Materials Integrated Management Technologies" Lab., Via Martiri di Monte Sole n. 4, 40129, Bologna, BO, Italy.
Department of Civil, Environmental, Land, Building Engineering and Chemistry (DICATECh), Polytechnic University of Bari, Via E. Orabona n. 4, 70125, Bari, BA, Italy.
J Environ Manage. 2017 Oct 1;201:177-189. doi: 10.1016/j.jenvman.2017.06.042. Epub 2017 Jun 26.
A multi-stage pilot-scale treatment cycle consisting of an Upflow Anaerobic Sludge Blanket reactor (UASB) followed by an anoxic-aerobic Ultra Filtration Membrane Bio Reactor (UF-MBR) and a post treatment based on chemical precipitation with lime or adsorption on Granular Activated Carbons (GAC), was applied in order to evaluate the treatment feasibility of a real winery distillery wastewater at laboratory and bench scale. The wastewater was classified as high strength with acidic pH (3.8), and concentrations of 44,600, 254, 604 and 660 mg/l for COD, total nitrogen, total phosphorous and phenols, respectively. The UASB reactor was operated at Organic Loading Rates (OLR) in the range 3.0-11.5 kgCOD/m/d achieving treatment efficiency up to 97%, with an observed methane production of 340 L of CH/kgCOD. The MBR system was operated with an organic load in the range 0.070-0.185 kgCOD/kgVSS/d, achieving a removal up to 48%, 67% and 65% of the influent COD, total nitrogen and phenols, respectively. The combination of UASB and UF-MBR treatment units was not effective in phosphate and colour removal assigning to further chemical precipitation and adsorption processes, respectively, their complete removal in order to comply with legal standards for wastewater discharge. Subsequently, the optimization of the investigated treatment chain was assessed by applying a chemical precipitation step upstream and downstream the UASB reactor, and a related treatment unit cost assessment is presented in view of a further technological scale-up.
为了在实验室和中试规模下评估实际酿酒厂蒸馏废水的处理可行性,采用了一个多阶段中试规模的处理周期,该周期包括一个上流式厌氧污泥床反应器(UASB),随后是一个缺氧-好氧超滤膜生物反应器(UF-MBR),以及基于石灰化学沉淀或颗粒活性炭(GAC)吸附的后处理。该废水被归类为高强度酸性pH值(3.8)废水,化学需氧量(COD)、总氮、总磷和酚的浓度分别为44600、254、604和660mg/L。UASB反应器在3.0-11.5kgCOD/m³/d的有机负荷率下运行,处理效率高达97%,观察到的甲烷产量为340L CH₄/kgCOD。MBR系统在0.070-0.185kgCOD/kgVSS/d的有机负荷下运行,分别实现了对进水COD、总氮和酚的去除率高达48%、67%和65%。UASB和UF-MBR处理单元的组合在去除磷酸盐和颜色方面效果不佳,分别通过进一步的化学沉淀和吸附过程实现其完全去除,以符合废水排放的法律标准。随后,通过在UASB反应器的上游和下游应用化学沉淀步骤来评估所研究处理链的优化,并鉴于进一步的技术放大提出了相关的处理单元成本评估。