Irstea, UR MALY, Wastewater Treatment Team, 3 bis quai Chauveau, CP 220, 69336 Lyon Cedex 09, France.
Bioresour Technol. 2012 Jul;116:161-9. doi: 10.1016/j.biortech.2012.04.023. Epub 2012 Apr 17.
This work was designed to study the hydraulic properties of sludge deposit, focusing on the impact of operating conditions (i.e. loads and feeding frequencies) on air entrance (aerobic mineralization optimization) into the sludge deposit. The studied sludge deposits came from six 2m(2) pilot-scale SDRBs that had been in operation for 50 months with three different loads of 30, 50, and 70 kg of SSm(-2) y(-1). Two influents were assessed (i.e. activated sludge and septage) presenting different characteristics (i.e. pollutant contents, physical properties...). Two experimental approaches were employed based on establishing the water retention curve (capillary pressure versus volumetric water content) and the hydrotextural diagram to determine the hydraulic properties of sludge deposit. The study obtained valuable information for optimizing operating conditions, specifically for efficient management of loading frequency to optimize aerobic conditions within the sludge deposit.
本研究旨在探讨污泥层的水力特性,重点研究操作条件(即负荷和进料频率)对空气进入(好氧矿化优化)污泥层的影响。研究的污泥层来自六个运行了 50 个月的 2m(2) 中试 SDRB,其负荷分别为 30、50 和 70 kg SSm(-2) y(-1)。评估了两种进水(即活性污泥和化粪池污水),它们具有不同的特性(即污染物含量、物理性质等)。本研究采用了两种实验方法,通过建立水保留曲线(毛细压力与体积含水量的关系)和水结构图来确定污泥层的水力特性。该研究为优化操作条件提供了有价值的信息,特别是为有效管理负荷频率以优化污泥层内的好氧条件提供了信息。