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Effect of pre-hydrolysis on floc structure

机译:预水解对絮体结构的影响

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Morphological changes in floes were elucidated by small-angle light scattering, free settling tests and microscopic observation to determine the effects of pre-hydrolysis (alkaline treatment and ultrasonication) on two sludges―primary raw sludge from the Malabar Sewage Treatment Plant, Sydney (sludge M) and biological sludge collected at the nitrogen removal unit of St Marys Sewage Treatment Plant in Sydney (sludge S). Ultrasonication or alkaline treatment released a marked amount of insoluble organic matter in a soluble form. The latter treatment was more efficient than the former. Meanwhile, the pre-hydrolyzed floes had more compact structures than the original ones, as shown by their higher free-settling fractal dimension, lower areal porosity and smaller internal pores. In particular, alkaline treatment yielded floes with more compact interiors than did ultrasonication. Such detailed structural information could not be elicited by monitoring the change in floe size. The greater resistance to mass transfer of the hydrolyzed floes thus produced does not reduce the efficiency of subsequent digestion, indicating that the surface reaction rate on the solid surface might have dominated since the pre-hydrolysis steps modified the local chemical environment to promote digestion.
机译:通过小角度光散射,自由沉降测试和显微镜观察来阐明絮凝物的形态变化,以确定预水解(碱处理和超声处理)对两种污泥的影响-两种污泥是来自悉尼马拉巴污水处理厂的主要原始污泥(污泥) M)和在悉尼圣玛丽污水处理厂的脱氮装置中收集的生物污泥(污泥S)。超声或碱处理以可溶形式释放出大量的不溶有机物。后者的处理比前者更有效。同时,预水解絮凝物的结构比原始絮凝物更紧密,这表现为它们的自由沉降分形维数较高,面孔隙率较低且内部孔隙较小。特别地,碱处理产生的絮凝物比超声处理具有更紧凑的内部构造。通过监测絮凝物大小的变化无法获得这种详细的结构信息。如此产生的水解絮凝物对传质的更大阻力不会降低后续消化的效率,这表明由于预水解步骤改变了局部化学环境以促进消化,因此固体表面的表面反应速率可能已占主导地位。

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