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首页> 外文期刊>Water Environment Research >Biopolymer Production Kinetics of Mixed Culture Using Wastewater Sludge as a Raw Material and the Effect of Different Cations on Biopolymer Applications in Water and Wastewater Treatment
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Biopolymer Production Kinetics of Mixed Culture Using Wastewater Sludge as a Raw Material and the Effect of Different Cations on Biopolymer Applications in Water and Wastewater Treatment

机译:废水污泥为原料的混合培养生物聚合物的生产动力学以及不同阳离子对水和废水处理中生物聚合物应用的影响

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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.
机译:在灭菌污泥(悬浮固体浓度为25 g / L)中培养(混合培养)十三种产生细胞外聚合物的细菌菌株(混合培养),并进行分批发酵。混合培养显示出0.35 / hr的高比生长速率。直到24小时,EPS的生产速率更高,随着进一步的培养逐渐下降。动力学估计表明与增长相关的EPS产量。当与不同阳离子(Ca〜(2 +),Mg〜(2 +),Fe〜(3+)和Al〜(3+))结合使用时,肉汤EPS具有较高的絮凝活性(≥90%),市政废水(≥90%)和啤酒废水(≥80%)。与二价阳离子(50至250 mg / L)相比,需要低剂量(5至40 mg / L)的三价阳离子才能实现更高的絮凝度。 EPS的絮凝性能与Magnafloc-155(化学聚合物)相当,因此可以用作絮凝剂。

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