More T T, Yan S, Tyagi R D, Surampalli R Y
Institut National de la Recherche Scientifique, Centre Eau, Terre et, Environnement, Université du Québec, 490 de la Couronne, Québec (QC), G1K 9A9, Canada.
Water Environ Res. 2016 May;88(5):425-37. doi: 10.2175/106143016X14504669768453.
Thirteen extracellular polymeric substances (EPS) producing bacterial strains were cultivated (as mixed culture) in the sterilized sludge (suspended solids of 25 g/L) and the batch fermentation was carried out. Mixed culture revealed a high specific growth rate of 0.35/hr. The EPS production rate was higher up to 24 hours, which gradually decreased with further incubation. The kinetic estimates demonstrated growth-associated EPS production. Broth EPS revealed higher flocculation activity when combined with different cations (Ca(2+), Mg(2+), Fe(3+), and Al(3+)) in river water (≥90%), municipal wastewater (≥90%), and brewery wastewater (≥80%), respectively. A low dose (5 to 40 mg/L) of trivalent cations was required to achieve higher flocculation compared to the divalent cations (50 to 250 mg/L). Flocculation performance of EPS was comparable to Magnafloc-155 (chemical polymer) and, hence, it could be used as a flocculant.
在灭菌污泥(悬浮固体含量为25 g/L)中培养了13株产胞外聚合物(EPS)的细菌菌株(混合培养),并进行了分批发酵。混合培养显示出0.35/hr的高比生长速率。EPS产率在24小时内较高,之后随着进一步培养逐渐下降。动力学估计表明EPS的产生与生长相关。当与河水中的不同阳离子(Ca(2+)、Mg(2+)、Fe(3+)和Al(3+))结合时,发酵液EPS分别在河水(≥90%)、城市污水(≥90%)和啤酒厂废水(≥80%)中显示出更高的絮凝活性。与二价阳离子(50至250 mg/L)相比,实现更高絮凝需要低剂量(5至40 mg/L)的三价阳离子。EPS的絮凝性能与Magnafloc-155(化学聚合物)相当,因此,它可用作絮凝剂。