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Exploration of Performance Kinetics and Mechanism of Action of a Potential Novel Bioflocculant BF-VB2 on Clay and Dye Wastewater Flocculation

机译:潜在的新型生物絮凝剂BF-VB2对黏土和染料废水絮凝的作用动力学和作用机理的探讨

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摘要

This study explores production of an efficient bioflocculant; BF-VB2, by strain Bacillus sp. TERI VB2 and proposes its potential application in wastewater treatment. One milligram of BF-VB2 can effectively flocculate 1980.0 mg ± 5.0 mg of kaolin particles leading to 99.0% ± 0.5% enhancement in flocculation activity and 99.6% ± 1.0% reduction in turbidity; in less time. BF-VB2 when applied for treatment of textile dyeing industrial wastewater revealed reduction in dye color (82.78% ± 3.03%), COD (92.54% ± 0.24%), TSS (73.59% ± 0.71%), and chloride ions (81.90% ± 0.716%). The best-fit kinetic model (for both COD removal, and dye decolorization) was pseudo-first order with regression coefficient of 0.98 and 0.95, and rate constant of 4.33 × 10-2 and 1.83 × 102, respectively. Bridging due to presence of surface charges have been proposed as flocculation mechanism. From results obtained during test-tube studies, flocculation in larger volumes (0.01–5.0 L) was also performed to intend taking up BF-VB2 for in situ industrial wastewater treatment. This eco-friendly polysaccharide bioflocculant had longer shelf-life, stability to pH and temperature, cation-independence, and emerged to be more efficient than other flocculants assessed. This study proposed BF-VB2 as a potential natural flocculant candidate for industrial application.
机译:这项研究探索了一种高效生物絮凝剂的生产。 BF-VB2,由芽孢杆菌属菌株产生。 TERI VB2并提出了其在废水处理中的潜在应用。一毫克BF-VB2可有效絮凝1980.0 mg±5.0 mg高岭土颗粒,从而使絮凝活性提高99.0%±0.5%,浊度降低99.6%±1.0%;用更少的时间。 BF-VB2在处理纺织印染工业废水时显示出染料颜色(82.78%±3.03%),COD(92.54%±0.24%),TSS(73.59%±0.71%)和氯离子(81.90%± 0.716%)。最佳拟合动力学模型(用于COD去除和染料脱色)为伪一阶,回归系数为0.98和0.95,速率常数为4.33×10 -2 和1.83×10 < sup> 2 。已经提出了由于存在表面电荷而引起的桥接作为絮凝机理。根据在试管研究中获得的结果,还进行了较大体积的絮凝处理(0.01–5.0 L),以吸收BF-VB2用于原位工业废水处理。这种环保型多糖生物絮凝剂具有更长的保质期,对pH和温度的稳定性,不依赖阳离子,并且比其他絮凝剂更有效。这项研究提出BF-VB2作为潜在的天然絮凝剂工业应用的候选人。

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