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一种潜在新型生物絮凝剂BF-VB2对黏土和染料废水絮凝的性能动力学及作用机制探究

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

作者信息

Bisht Varsha, Lal Banwari

机构信息

Department of Biotechnology, TERI School of Advanced Studies, New Delhi, India.

Environmental and Industrial Biotechnology Division, The Energy and Resources Institute, India Habitat Center, New Delhi, India.

出版信息

Front Microbiol. 2019 Jun 7;10:1288. doi: 10.3389/fmicb.2019.01288. eCollection 2019.

Abstract

This study explores production of an efficient bioflocculant; BF-VB2, by strain 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 and 1.83 × 10, 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 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.

摘要

本研究探索了菌株sp. TERI VB2高效生物絮凝剂BF-VB2的产生,并提出了其在废水处理中的潜在应用。1毫克BF-VB2可有效絮凝1980.0毫克±5.0毫克的高岭土颗粒,使絮凝活性提高99.0%±0.5%,浊度降低99.6%±1.0%,且所需时间更短。BF-VB2用于处理纺织印染工业废水时,染料颜色(82.78%±3.03%)、化学需氧量(92.54%±0.24%)、总悬浮固体(73.59%±0.71%)和氯离子(81.90%±0.716%)均有所降低。最佳拟合动力学模型(用于化学需氧量去除和染料脱色)为伪一级模型,回归系数分别为0.98和0.95,速率常数分别为4.33×10和1.83×10。已提出表面电荷的桥连作用作为絮凝机制。根据试管研究获得的结果,还进行了更大体积(0.01 - 5.0升)的絮凝试验,旨在将BF-VB2用于工业废水处理。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,并且比其他评估的絮凝剂更高效。本研究提出BF-VB2作为工业应用中潜在的天然絮凝剂候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ec6/6568053/9e85572468d6/fmicb-10-01288-g001.jpg

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