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Ecological stabilization of thickened wastewater sludge from CAST process

机译:CAST工艺增稠废水污泥的生态稳定

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摘要

Wastewater sludge ecological stabilization (WWSES) pilot scale experiments were conducted for thickening treatment and disposal of sludge which came from Cyclic Activated Sludge Technology (CAST) process. The study was performed over the periods from June to November 2005 and from May to November 2006, on a bed of 80 m(2). The sludge loadings were stopped for the winter from December 2005 and resumed in May 2006. The results shows that dried sludge layer has higher permeation coefficients of 0.15-1.3 m/h. It is suggested that the percolate did not filtrate downwards evenly, part of percolate filtrates downwards along stems, roots and cracks existing in dried sludge which have lower flow resistance. The relationship of dried sludge thickness and operation time is in accord with quadratic equation under fluctuating sludge loadings. Linear regression equation can indicate dried sludge thickness variation under fixed sludge loading. In comparison with natural ones, coarse protein content of Phragmites australis roots in the system is twice as high, coarse fiber content of roots, coarse fat content of stems and leaf are obviously higher; and coarse protein content of Typha augustifolia in the system are obviously higher, while coarse fat and coarse fiber contents have no significant difference.
机译:进行了废水污泥生态稳定(WWSES)中试实验,以对来自循环活性污泥技术(CAST)工艺的污泥进行增稠处理和处置。该研究在2005年6月至2005年11月以及2006年5月至2006年11月的80 m(2)的床层上进行。从2005年12月起,冬天停止了污泥的装载,并于2006年5月恢复。结果表明,干污泥层的渗透系数更高,为0.15-1.3 m / h。建议渗滤液不能均匀地向下过滤,一部分渗滤液沿着干污泥中存在的茎,根和裂缝向下过滤,其流动阻力较低。在污泥负荷变化的情况下,干污泥厚度与运行时间的关系符合二次方程。线性回归方程可以表明在固定污泥负荷下干污泥厚度的变化。与自然相比,系统中芦苇根的粗蛋白含量高两倍,根粗纤维含量,茎和叶粗脂肪含量明显更高。系统中香蒲的粗蛋白含量和粗蛋白含量明显较高,而粗脂肪和粗纤维含量没有显着差异。

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