Huang Weiwei, Lv Weiguang, Chu Huaqiang, Lv Weiwei, Zhou Wenzong, Dong Bingzhi
Eco-Environment Protection Research Institute, Shanghai Academy of Agricultural Sciences, Shanghai 201403, China.
School of Environmental Science and Engineering, Tongji University, Shanghai 200092, China.
Membranes (Basel). 2021 Nov 29;11(12):945. doi: 10.3390/membranes11120945.
Combined microalgal and membrane filtration could effectively treat aquaculture wastewater; however, the membrane fouling induced by extracellular organic matter (EOM) during the dewatering process is an issue. This study investigated diatomite dynamic membrane (DDM) fouling behaviour during the dewatering of under the influence of copper ions. The results indicate that copper ion heavy metals in aquaculture wastewater significantly affected purification and algae dewatering by DDM. Aquaculture wastewater with a high copper concentration (1 and 0.5 mg/L) could induce serious DDM fluxes and cake layer filtration resistance (R), whereas fewer filtration fluxes were induced when aquaculture wastewater had a low copper concentration, particularly that of 0.1 mg/L, at which the R was lowest and the concentration effect was highest. Macromolecular organics of EOM, such as biopolymers, polysaccharides, and proteins, were responsible for DDM fouling and accumulated mostly in the slime layer, whereas only a small amount of them accumulated in the diatomite layer. The DDM rejected more protein-like organics of EOM in the slime layer when dewatering algae at low copper concentrations (<0.1 mg/L); however, when using the DDM to dewater algae at high copper concentrations, more polysaccharides of EOM were rejected (0.5 < Cu < 5 mg/L). This result has significant ramifications for aquaculture wastewater treatment as well as algae separation and concentration by the DDM.
微藻与膜过滤相结合能够有效处理水产养殖废水;然而,在脱水过程中细胞外有机物(EOM)引起的膜污染是一个问题。本研究调查了在铜离子影响下硅藻土动态膜(DDM)在脱水过程中的污染行为。结果表明,水产养殖废水中的铜离子重金属显著影响了DDM的净化和藻类脱水。高铜浓度(1和0.5mg/L)的水产养殖废水会导致严重的DDM通量和滤饼层过滤阻力(R),而低铜浓度,特别是0.1mg/L的水产养殖废水引起的过滤通量较少,此时R最低且浓度效应最高。EOM的大分子有机物,如生物聚合物、多糖和蛋白质,是导致DDM污染的原因,且大多积聚在黏液层,而只有少量积聚在硅藻土层。在低铜浓度(<0.1mg/L)下对藻类进行脱水时,DDM在黏液层中截留了更多EOM中的类蛋白质有机物;然而,当使用DDM在高铜浓度下对藻类进行脱水时,更多的EOM多糖被截留(0.5 < Cu < 5mg/L)。这一结果对水产养殖废水处理以及通过DDM进行藻类分离和浓缩具有重要意义。