Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, Taipei City, Taiwan, ROC.
Water Environ Res. 2023 May;95(5):e10868. doi: 10.1002/wer.10868.
Bioflocculants have received more and more attention as alternatives to chemical flocculants because of their innocuousness, environmental friendliness, and high effectiveness. This study aims to investigate various factors that influence the performance of the novel bioflocculant produced by Bacillus thuringiensis (BF-TWB10) and analyze its adsorption kinetics to optimize its flocculation performance for real applications. The best-fit kinetic model was pseudo-second order with R = 0.999. The effects of pretreatment temperature, pH, and the presence of cations on flocculation were assessed. Further investigations of flocculation, including zeta potential analysis and particle size analysis, were also conducted. Thermal pretreatment of BF-TWB10 or the presence of divalent cations could stimulate the decolorization efficiency of the bioflocculant. BF-TWB10 manifested outstanding dye removal performances with over 90% for all tested anionic dyes at pH 2 and 3. Its decolorization efficiency on anionic dyes decreased with the increase of pH values. Zeta potential analysis revealed that the electrostatic repulsion between anionic dyes decreased after the addition of BT-TWB10 and further diminished by adjusting the reaction mixture to pH 2 before flocculation, suggesting the occurrence of adsorption bridging and charge neutralization. These findings proposed that BF-TWB10 might be a promising bioflocculant for the removal of dyes in textile wastewater. PRACTITIONER POINTS: Bioflocculant BF-TWB10 shows outstanding performance in flocculation. Adsorption process follows pseudo-second-order kinetic model. Flocculation process is pH-responsive. High-temperature pretreatment or divalent cations enhance its flocculation performance. The analyses suggest the occurrence of charge neutralization and adsorption bridging.
生物絮凝剂由于其无害性、环境友好性和高效性,越来越受到人们的关注,可作为化学絮凝剂的替代品。本研究旨在探讨影响新型苏云金芽孢杆菌(BF-TWB10)产生的生物絮凝剂性能的各种因素,并分析其对实际应用的吸附动力学,以优化其絮凝性能。最佳拟合动力学模型为拟二级,R = 0.999。评估了预处理温度、pH 值和阳离子存在对絮凝的影响。还进一步研究了絮凝作用,包括动电电位分析和颗粒大小分析。BF-TWB10 的热预处理或二价阳离子的存在可以刺激生物絮凝剂的脱色效率。BF-TWB10 在 pH 2 和 3 下对所有测试的阴离子染料都表现出出色的去除性能,去除率超过 90%。其对阴离子染料的脱色效率随 pH 值的增加而降低。动电电位分析表明,在添加 BF-TWB10 后,阴离子染料之间的静电排斥力降低,在絮凝前将反应混合物调节至 pH 2 时进一步减小,表明发生了吸附桥接和电荷中和。这些发现表明 BF-TWB10 可能是一种很有前途的用于去除纺织废水中染料的生物絮凝剂。
生物絮凝剂 BF-TWB10 在絮凝方面表现出优异的性能。
吸附过程遵循拟二级动力学模型。
絮凝过程对 pH 值有响应。
高温预处理或二价阳离子增强其絮凝性能。
分析表明发生了电荷中和和吸附桥接。