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短程反硝化和温度对生物转化及相关浮渣形成潜力的影响。

Effect of SRT and temperature on biological conversions and the related scum-forming potential.

作者信息

Halalsheh M, Koppes J, den Elzen J, Zeeman G, Fayyad M, Lettinga G

机构信息

Water and Environmental Study and Research Centre, University of Jordan, Amman-Jordan.

出版信息

Water Res. 2005 Jul;39(12):2475-82. doi: 10.1016/j.watres.2004.12.012.

Abstract

Sludge flotation was reported to cause several operational problems in anaerobic systems including UASB reactors treating both strong domestic sewage and some industrial wastewater. This research is to investigate the effect of anaerobic digestion on scum-forming potential (SFP) of sludge and other physical-chemical properties. A simple test was developed to measure and compare the tendency of different sludge to form a scum layer. Results showed that anaerobic digestion affects chemical composition of sludge flocs and consequently, SFP, which was found to be inversely proportional to the degree of digestion (both SRT and temperature). It was suggested that higher protein concentration at elevated SRT and 25 degrees C increased the negative surface charge of sludge flocs and ,consequently, reduced the ability of sludge to attach to gas bubbles and float. Floc average size increased with increasing SRT and temperature, especially for sludge with 75d SRT at 25 degrees C. On the other hand, settling properties of sludge were negatively affected by increasing SRT to 75d at 25 degrees C. Filterability had a strong positive correlation with average floc size, but also polymeric constituents correlated positively with filterability at 25 degrees C.

摘要

据报道,污泥上浮会在厌氧系统中引发若干运行问题,包括在处理高浓度生活污水和某些工业废水的上流式厌氧污泥床(UASB)反应器中。本研究旨在探究厌氧消化对污泥形成浮渣潜力(SFP)及其他物理化学性质的影响。开发了一种简单测试方法来测量和比较不同污泥形成浮渣层的倾向。结果表明,厌氧消化会影响污泥絮体的化学组成,进而影响SFP,发现SFP与消化程度(污泥停留时间SRT和温度)成反比。研究表明,在较高的SRT和25℃条件下,较高的蛋白质浓度增加了污泥絮体的负表面电荷,从而降低了污泥附着在气泡上并上浮的能力。絮体平均尺寸随SRT和温度的升高而增大,特别是在25℃下SRT为75天的污泥。另一方面,在25℃下将SRT增加到75天会对污泥的沉降性能产生负面影响。过滤性与絮体平均尺寸呈强正相关,但在25℃下,聚合物成分与过滤性也呈正相关。

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