Department of Chemical Engineering, Institute of Technology, School of Engineering, University of Santiago de Compostela, E-15782, Santiago de Compostela, Spain.
Water Technological Center (Cetaqua), Ctra. d'Esplugues, 75, E-08940, Cornellà de Llobregat, Barcelona, Spain.
Environ Sci Pollut Res Int. 2020 Jan;27(2):1214-1223. doi: 10.1007/s11356-018-2670-2. Epub 2018 Jul 4.
Although hospital wastewaters (HWWs) are usually discharged in urban sewage systems, their separate treatment has several benefits, such as the specific treatment of potential toxics as well as avoidance of further dilutions. In this work, an integrated industrial pilot plant (2200 L) corresponding to the technology SeMPAC is proposed and validated for such purpose. The process consists of a sequential batch reactor (SBR) connected to an external submerged microfiltration membrane, in which powdered activated carbon (PAC) is directly added into the biological reactor to enhance the removal of the organic micropollutants (OMPs). The combination of different redox conditions in the SBR, as well as the operation at long sludge retention times (SRTs) and high biomass concentrations favored OMP biotransformation in the SBR, being their final removal efficiencies enhanced clearly after PAC addition, especially for the recalcitrant compounds. A periodical renewal of the adsorbent is necessary to overcome its gradual saturation. The main operational conditions were influenced by (i) the recalcitrant OMP carbamazepine, which defines the PAC dosage; (ii) the easily degradable OMP ibuprofen, which can be used to optimize the duration of the aerobic cycle; and (iii) the denitrification efficiency, which defines the correct time length of the anoxic period.
尽管医院废水(HWW)通常排放到城市污水系统中,但对其进行单独处理有几个好处,例如可以专门处理潜在的有毒物质,并避免进一步稀释。在这项工作中,提出并验证了一个集成的工业中试工厂(2200L),该工厂采用 SeMPAC 技术,用于此目的。该工艺由序批式反应器(SBR)连接到外部浸没式微滤膜组成,其中粉末状活性炭(PAC)直接添加到生物反应器中,以增强去除有机微污染物(OMPs)的能力。SBR 中不同氧化还原条件的组合,以及较长的污泥停留时间(SRT)和高生物质浓度的操作,有利于 SBR 中 OMP 的生物转化,PAC 添加后明显提高了它们的最终去除效率,特别是对难降解化合物。为了克服其逐渐饱和,需要定期更换吸附剂。主要操作条件受(i)难降解 OMP 卡马西平的影响,其决定了 PAC 的剂量;(ii)易降解 OMP 布洛芬的影响,其可用于优化好氧周期的持续时间;和(iii)反硝化效率的影响,其决定了缺氧期的正确时间长度。