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Studies on Characterization of Bioflocculant Exopolysaccharide of Azotobacter indicus and Its Potential for Wastewater Treatment

机译:印度固氮菌生物絮凝剂外多糖的表征及其在废水处理中的潜力研究

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Partially characterized bioflocculant exopolysaccharide (EPS) produced from an Azotobacter indicus ATCC 9540 strain reported in our previous study was further characterized, and its flocculant potential was investigated at different pH, temperature, and cations concentrations. Flocculant activity at different concentrations of EPS in the absence of cations was reanalyzed by slight modified flocculant assay. It revealed that flocculant activity increased in a concentration-dependent manner up to a certain limit, with the maximum flocculation of 72% at 500 mgL−1 EPS concentration, even in the absence of cations. At the concentration of 10 mgL−1, CaCl2 showed more significant activity (92%) than AlCl3 and MnSO4. Differential scanning calorimetry study and flocculant assay revealed high temperature stability of EPS up to 97 °C. Molecular weight of the EPS determined by size exclusion chromatography was found to be approximately 2 × 106 kDa. Investigation on flocculation efficacy of the characterized EPS for wastewater treatment of dairy, woolen, starch, and sugar industry suggested it to be effective and stable at wide pH range of 5–10. Wastewater treatment with biopolymer at 500 mgL−1 showed reduction in biochemical oxygen demand (38–80%), chemical oxygen demand (37–79%), and suspended solids (41–68%). This study suggests that Azotobacter polymer has high potential in wastewater treatment as bioflocculant and can be used as a potential alternative to chemical flocculants.
机译:我们先前研究中报道的由印度蓝偶氮菌ATCC 9540菌株产生的部分表征的生物絮凝剂胞外多糖(EPS)得到了进一步表征,并在不同的pH,温度和阳离子浓度下研究了其絮凝潜力。通过稍加修改的絮凝剂分析重新分析了在不存在阳离子的情况下,在不同EPS浓度下的絮凝剂活性。结果表明,即使没有阳离子,絮凝剂的活性也随浓度的增加而增加,达到一定的极限,在500 mgL -1 EPS浓度下,絮凝剂的最大絮凝率为72%。在浓度为10 mgL -1 时,CaCl 2 的活性(92%)比AlCl 3 和MnSO 4 < / sub>。差示扫描量热法研究和絮凝剂分析表明,EPS的高温稳定性高达97°C。通过尺寸排阻色谱法测定的EPS的分子量约为2×10 6 sup kDa。对表征的EPS在乳制品,羊毛,淀粉和制糖工业废水处理中的絮凝效果的研究表明,它在5-10的宽pH范围内均有效且稳定。用500 mgL -1 的生物聚合物处理废水显示出生化需氧量(38–80%),化学需氧量(37–79%)和悬浮固体(41–68%)减少。这项研究表明,固氮菌聚合物作为生物絮凝剂在废水处理中具有很高的潜力,可以用作化学絮凝剂的潜在替代品。

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