Li Qingao, Xie Lixin, Xu Shichang, Zhang Wen
Tianjin Key Laboratory of Membrane Science and Desalination Technology, State Key Laboratory of Chemical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300350, China.
Membranes (Basel). 2024 May 29;14(6):125. doi: 10.3390/membranes14060125.
The removal of dissolved organic matter (DOM) from seawater before the reverse osmosis (RO) processes is crucial for alleviating organic fouling of RO membranes. However, research is still insufficiently developed in the comparison of the effectiveness of integrating coagulation with ultrafiltration (UF) or sand filtration (SF) in the pretreatment stage of seawater reverse osmosis (SWRO) for the removal of DOM. In this study, we investigated the effect of pretreatment technologies on RO fouling caused by DOM in seawater, including the integration of coagulation and sand filtration (C-S pretreatment) and the integration of coagulation and ultrafiltration (C-U pretreatment). Both integrated pretreatments achieved comparable DOM removal rates (70.2% for C-U and 69.6% for C-S), and C-S exhibited enhanced removal of UV-absorbing compounds. Although C-U was more proficient in reducing the silt density index (below 2) compared to C-S (above 3) and improved the elimination of humic acid-like organics, it left a higher proportion of tyrosine-protein-like organics, soluble microbial by-product-like organics, and finer organics in the effluent, leading to the formation of a dense cake layer on RO membrane and a higher flux decline. Therefore, suitable technologies should be selected according to specific water conditions to efficiently mitigate RO membrane fouling.
在反渗透(RO)工艺之前从海水中去除溶解有机物(DOM)对于减轻RO膜的有机污染至关重要。然而,在海水反渗透(SWRO)预处理阶段,将混凝与超滤(UF)或砂滤(SF)相结合以去除DOM的有效性比较方面,研究仍不够充分。在本研究中,我们调查了预处理技术对海水中DOM引起的RO污染的影响,包括混凝与砂滤相结合(C-S预处理)以及混凝与超滤相结合(C-U预处理)。两种集成预处理均实现了相当的DOM去除率(C-U为70.2%,C-S为69.6%),且C-S对吸光化合物的去除效果有所增强。尽管与C-S(高于3)相比,C-U在降低淤泥密度指数(低于2)方面更有效,并且改善了对腐殖酸类有机物的去除,但它在流出物中留下了更高比例的酪氨酸-蛋白质类有机物、可溶性微生物副产物类有机物和更细小的有机物,导致RO膜上形成致密的滤饼层以及更高的通量下降。因此,应根据具体水质条件选择合适的技术,以有效减轻RO膜污染。