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Pilot study of a fluidized-pellet-bed technique for simultaneous solid/liquid separation and sludge thickening in a sewage treatment plant

机译:污水处理厂同时固体/液体分离和污泥增厚的流化颗粒床技术试验研究

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A fluidized-pellet-bed separator with movable sludge hoppers was applied in pilot scale for the separation and thickening of activated sludge mixture liquid. Under the condition of suspension SS around 4,000 mg/L, polymer (CJX103, cationic, MW 5 x 10~6) dose at a dry solid ratio of 0.003 and upward flow rate at 5.4 m/hr, the fluidized pellet bed performed solid/liquid separation and sludge thickening well. The SS concentration of the treated water was about 5 mg/L on average and the moisture content of the sludge after screening for 5 min was less than 94%, which is much lower than that after conventional settling and thickening and easy to be finally disposed. At a higher upward flow rate of 7.2 m/hr, similar results could also be obtained but higher polymer dose (solid ratio of 0.004) was required. The morphological characteristics and density-size relationship of the granular particles formed in the fluidized pellet bed were also investigated by image analysis and settling velocity measurement of individual particles. The two-dimensional fractal dimension was evaluated to be 1.6-1.8, showing a good quasi-spherical morphology of the granular particles with their density much higher than the conventional floes. The results of the pilot study indicate a possible way to innovate the conventional secondary settling and gravitational thickening processes for solid/liquid separation and sludge handling, especially for small scale wastewater treatment plants to reach the goal of space saving and higher treatment efficiency.
机译:具有可动污泥料斗的流化颗粒床隔板以先导尺度施加用于活性污泥混合物液的分离和增厚。在悬浮液的条件下约4,000mg / L,聚合物(CJX103,阳离子,MW 5×10〜6)的干燥实心比为0.003和5.4m / hr的向上流速,流化颗粒床进行固体/液体分离和污泥加厚孔。处理过的水的SS浓度平均约5mg / L,筛选5分钟后的污泥的水分含量小于94%,远低于常规沉降和增厚,易于最终处置。在7.2M / hr的更高向上流速下,还可以获得类似的结果,但需要更高的聚合物剂量(固体比为0.004)。通过各个颗粒的图像分析和沉降速度测量,还研究了流化颗粒床中形成的颗粒状颗粒的形态学特性和密度尺寸关系。将二维分形尺寸评价为1.6-1.8,显示粒状颗粒的良好准球形形态,其密度远高于传统浮葡萄。试点研究的结果表明了创新用于固体/液体分离和污泥处理的传统二次沉降和重力增稠工艺的可能方法,特别是对于小型废水处理厂,以达到节省空间和更高的治疗效率的目标。

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