Division of Environmental Engineering, Faculty of Engineering, Hokkaido University, Sapporo, Japan.
Environ Technol. 2024 Aug;45(20):4042-4052. doi: 10.1080/09593330.2023.2240026. Epub 2023 Aug 4.
In wastewater treatment by the activated sludge (AS) process, settleability and dewaterability of AS are key issues that are directly related to the treated water quality and sludge treatment costs. Several studies investigated the relationship between the shape of AS flocs and their settling/dewatering property. To quantify the floc morphology, it is imperative to attach a camera to a microscope or move the stage manually. Hence, labour and equipment costs may increase. In this study, by combining a digital microscope and an automatic stage, more than 100 magnified floc images were rapidly obtained from one AS sample dropped on a slide glass, and shape parameters were collectively calculated using an analysis software. During 1-year monitoring of four wastewater treatment plants in Sapporo City (Hokkaido, Japan), the morphological parameters and extracellular polymeric substances (EPS) quantity/quality of AS were analyzed on the basis of their correlation to the time to filtration (TTF) and sludge volume index (SVI), which are indicators for describing the dewatering and settling properties of AS, respectively. In one plant, larger, denser, and smoother flocs tended to contain less EPS and exhibited better sludge dewaterability. In another plant, larger, denser, and smoother flocs were considered to contribute to better settlement. Especially, an equivalent high-density floc diameter and the ratio of mixed liquor suspended solids (MLSS) concentration to the total floc area were commonly suggested to explain AS dewaterability and settleability.
在活性污泥(AS)处理废水的过程中,AS 的沉降性能和脱水性能是直接关系到处理水质量和污泥处理成本的关键问题。已有多项研究调查了 AS 絮体的形状与其沉降/脱水性能之间的关系。为了量化絮体形态,必须将相机连接到显微镜上或手动移动载物台。因此,劳动力和设备成本可能会增加。在这项研究中,通过将数字显微镜和自动载物台相结合,从一个滴在载玻片上的 AS 样本中可以快速获得 100 多个放大的絮体图像,并使用分析软件集中计算形状参数。在对日本北海道札幌市的四个污水处理厂进行了一年的监测后,根据其与过滤时间(TTF)和污泥体积指数(SVI)的相关性,对 AS 的形态参数和细胞外聚合物物质(EPS)数量/质量进行了分析,这两个指标分别用于描述 AS 的脱水和沉降性能。在一个工厂中,更大、更密集和更光滑的絮体往往含有较少的 EPS,表现出更好的污泥脱水性能。在另一个工厂中,更大、更密集和更光滑的絮体被认为有助于更好的沉降。特别是,等高密度絮体直径和混合液悬浮固体(MLSS)浓度与总絮体面积的比值被普遍认为可以解释 AS 的脱水和沉降性能。