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活性污泥的絮凝作用与胞外聚合物组成之间的关系

Relationship between flocculation of activated sludge and composition of extracellular polymeric substances.

作者信息

Wilén B M, Jin B, Lant P

机构信息

Advanced Wastewater Management Centre, The University of Queensland, St Lucia, Qld 4072, Australia.

出版信息

Water Sci Technol. 2003;47(12):95-103.

Abstract

Activated sludge flocs are a flocculated mass of microorganisms, extracellular polymeric substances (EPS) and adsorbed organic and inorganic material. The structure of the floc is very heterogeneous and flocs with very different properties and morphologies may occur, depending on the conditions in the activated sludge treatment plant and wastewater composition. Present thinking suggest that cations, such as calcium, create cationic bridges with EPS excreted by the bacteria and thereby hold the various floc constituents together. However, due to the complex and heterogeneous nature of activated sludge, the mechanisms have neither been thoroughly investigated nor successfully quantified. A better understanding and description of the biological flocculation process is necessary in order to establish more efficient operational strategies. The main aim of this study was to get a comprehensive and unique insight into the floc properties of activated sludge and to assess the relative impact of chemical and physical parameters. A variety of sludges from full scale treatment plants with different settling properties were characterised. The interrelationships between floc parameters such as composition of EPS, surface properties and floc structure, and their effect on the flocculation and separation properties were assessed. The results indicate that the EPS, both in terms of quantity and quality, are very important for the floc properties of the activated sludge. However, presence of filaments may alter the physical properties of the flocs considerably. The EPS showed positive correlations to sludge volume index (SVI) if only sludges with low or moderate numbers of filaments were included. The surface properties were more affected by the composition of the EPS than by the number of filaments. The EPS showed positive correlation to negative surface charge and a negative correlation to relative hydrophobicity and flocculation ability. The negative correlation between flocculation ability and amount of EPS was surprising. The shear sensitivity, measured as degree of erosion of flocs when subjected to shear, was more affected by floc size and number of filaments than amount of EPS.

摘要

活性污泥絮体是由微生物、胞外聚合物(EPS)以及吸附的有机和无机物质组成的絮凝体。絮体结构非常不均匀,根据活性污泥处理厂的条件和废水成分,可能会出现性质和形态差异很大的絮体。目前的观点认为,诸如钙等阳离子与细菌分泌的EPS形成阳离子桥,从而将絮体的各种成分聚集在一起。然而,由于活性污泥的复杂性和不均匀性,其作用机制尚未得到充分研究,也未成功量化。为了制定更有效的运行策略,有必要更好地理解和描述生物絮凝过程。本研究的主要目的是全面深入地了解活性污泥的絮体性质,并评估化学和物理参数的相对影响。对来自具有不同沉降性能的全尺寸处理厂的各种污泥进行了表征。评估了絮体参数(如EPS组成、表面性质和絮体结构)之间的相互关系,以及它们对絮凝和分离性能的影响。结果表明,EPS无论在数量还是质量方面,对活性污泥的絮体性质都非常重要。然而,丝状菌的存在可能会显著改变絮体的物理性质。如果只包括丝状菌数量少或中等的污泥,EPS与污泥体积指数(SVI)呈正相关。表面性质受EPS组成的影响大于受丝状菌数量的影响。EPS与负表面电荷呈正相关,与相对疏水性和絮凝能力呈负相关。絮凝能力与EPS含量之间的负相关令人惊讶。以絮体在剪切作用下的侵蚀程度衡量的剪切敏感性,受絮体大小和丝状菌数量的影响大于EPS含量。

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