Department of Chemistry, University of Science & Technology of People's Republic of China.
Environ Sci Technol. 2012 Jan 17;46(2):737-44. doi: 10.1021/es203540w. Epub 2012 Jan 4.
The flocculation of microorganisms plays a crucial role in bioreactors, and is substantially affected by pH. However, the mechanism for such an effect remains unclear. In this work, with an integrated approach, the pH dependence of structure and surface property of microbial extracellular polymeric substances (EPS), excreted from Bacillus megaterium TF10, and accordingly its flocculation is elucidated. From the Fourier transform infrared spectra and acid-base titration test results, the main functional groups and buffering zones in the EPS responsible for the microbial flocculation are indentified. The laser light scattering analysis reveals that the deprotonated or protonated states of these functional groups in EPS result in more dense and compact structure at a lower pH because of hydrophobicity and intermolecular hydrogen bonds. The zeta potential measurements identify the isoelectric point and indicate that the electrostatic repulsion action of EPS is controlled by pH. The highest flocculation efficiency is achieved near the isoelectric point (pH 4.8). These results clearly demonstrate that the EPS structure, surface properties, and accordingly the microbial flocculation are dependent heavily on pH in solution.
微生物的絮凝作用在生物反应器中起着至关重要的作用,并且受到 pH 值的显著影响。然而,这种影响的机制仍不清楚。在这项工作中,我们采用综合方法,阐明了微生物胞外聚合物(EPS)的结构和表面特性随 pH 值的变化规律及其絮凝作用。通过傅里叶变换红外光谱和酸碱滴定试验结果,确定了 EPS 中负责微生物絮凝的主要功能团和缓冲区域。激光光散射分析表明,由于疏水性和分子间氢键的作用,EPS 中这些功能团的去质子化或质子化状态会导致在较低 pH 值下形成更致密和紧凑的结构。zeta 电位测量确定了等电点,并表明 EPS 的静电排斥作用受 pH 值控制。在等电点(pH 4.8)附近,获得了最高的絮凝效率。这些结果清楚地表明,EPS 的结构、表面特性以及微生物絮凝作用严重依赖于溶液中的 pH 值。