International Joint Research Center of Green Chemical Engineering, Institute of Chemical Engineering, East China University of Science and Technology, Shanghai, 200237, China.
Technical Quality Department, Shanghai Gaoqiao Petrochemical Company, SINOPEC, Shanghai, 200129, China.
Environ Sci Pollut Res Int. 2023 Sep;30(42):95875-95891. doi: 10.1007/s11356-023-29086-4. Epub 2023 Aug 10.
The wastewater discharged from crude oil storage tanks (WCOST) contains high concentrations of salt and metal iron ions, and high chemical oxygen demand (COD). It belongs to "3-high" wastewater, which is difficult for purification. In this study, WCOST treatments were comparatively investigated via an advanced pretreatment and the traditional coagulation-microfiltration (CMF) processes. After WCOST was purified through the conventional CMF process, fouling occurred in the microfiltration (MF) membrane, which is rather harmful to the following reverse osmosis (RO) membrane unit, and the effluent featured high COD and UV254 values. The analysis confirmed that the MF fouling was due to the oxidation of ferrous ions, and the high COD and UV254 values were mainly attributable to the organic compounds with small molecular sizes, including aromatic-like and fulvic-like compounds. After the pretreatment of the advanced process consisting of aeration, manganese sand filtration, and activated carbon adsorption in combination with CMF process, the removal efficiencies of organic matter and total iron ions reached 97.3% and 99.8%, respectively. All the water indexes of the effluent, after treatment by the advanced multi-unit process, meet well the corresponding standard. The advanced pretreatment process reported herein displayed a great potential for alleviating the MF membrane fouling and enhanced the lifetime of the RO membrane system in the 3-high WCOST treatment.
含高浓度盐和金属铁离子以及高化学需氧量(COD)的原油储罐废水(WCOST)属于“三高”废水,难以净化。本研究通过先进的预处理和传统的混凝-微滤(CMF)工艺对 WCOST 处理进行了比较研究。在常规的 CMF 工艺对 WCOST 进行净化后,微滤(MF)膜发生了污染,这对后续的反渗透(RO)膜装置危害很大,出水的 COD 和 UV254 值也很高。分析证实 MF 污染是由于二价铁离子的氧化引起的,而高 COD 和 UV254 值主要归因于具有小分子量的有机化合物,包括类芳香族和富里酸类化合物。在曝气、锰砂过滤和活性炭吸附与 CMF 工艺相结合的先进多单元工艺预处理后,有机物和总铁离子的去除率分别达到 97.3%和 99.8%。经先进多单元工艺处理后的出水的所有水质指标均符合相应标准。本文报道的先进预处理工艺在缓解 MF 膜污染和提高 RO 膜系统在“三高”WCOST 处理中的使用寿命方面具有很大的潜力。