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首页> 外文期刊>Water Science and Technology >Effects of oxidation reduction potential in the bypass micro-aerobic sludge zone on sludge reduction for a modified oxic-settling-anaerobic process
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Effects of oxidation reduction potential in the bypass micro-aerobic sludge zone on sludge reduction for a modified oxic-settling-anaerobic process

机译:改进的氧沉降-厌氧工艺中旁路微好氧污泥区氧化还原电位对污泥还原的影响

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摘要

Batch experiments were conducted to determine the effect of oxidation reduction potential (ORP) on sludge reduction in a bypass micro-aerobic sludge reduction system. The system was composed of a modified oxic-settling-anaerobic process with a sludge holding tank in the sludge recycle loop. The ORPs in the micro-aerobic tanks were set at approximately t350, -90, -150, -200 and -250 mV, by varying the length of aeration time for the tanks. The results show that lower ORP result in greater sludge volume reduction, and the sludge production was reduced by 60% at the lowest ORP. In addition, low ORP caused extracellular polymer substances dissociation and slightly reduced sludge activity. Comparing the sludge backflow characteristics of the micro-aerobic tank's ORP controlled at -250 mV with that of t350 mV, the average soluble chemical oxygen (SCOD), TN and TP increased by 7, 0.4 and 2 times, median particle diameter decreased by 8.5 μm and the specific oxygen uptake rate (SOUR) decreased by 0.0043 milligram O_2 per gram suspended solids per minute. For the effluent, SCOD and TN and TP fluctuated around 30, 8.7 and 0.66 mg/L, respectively. Therefore, the effective assignment of ORP in the micro-aerobic tank can remarkably reduce sludge volume and does not affect final effluent quality.
机译:进行了分批实验,以确定旁路微好氧污泥还原系统中氧化还原电位(ORP)对污泥还原的影响。该系统由改进的含氧-沉降-厌氧工艺组成,污泥循环回路中带有污泥储罐。通过改变曝气池的曝气时间,将微需氧池中的ORP设置为大约t350,-90,-150,-200和-250 mV。结果表明,较低的ORP导致更大的污泥减少量,并且在最低的ORP下污泥产量减少了60%。此外,低ORP导致细胞外聚合物物质解离,污泥活性略有降低。将微需氧池的ORP控制在-250 mV和t350 mV的污泥回流特性进行比较,平均可溶性化学氧(SCOD),TN和TP分别增加了7倍,0.4倍和2倍,中值粒径降低了8.5倍每微米悬浮固体每分钟μm和特定的氧气吸收率(SOUR)降低0.0043毫克O_2。对于废水,SCOD,TN和TP分别波动约30、8.7和0.66 mg / L。因此,在微好氧池中有效分配ORP可以显着减少污泥量,并且不影响最终废水质量。

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