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Effect of vermibed height on excess sludge treatment in vermifilter

机译:糊状物高度对蚯蚓渣过量污泥处理的影响

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The height of vermibed is considered as an important factor in vermifilter. Parallel vermifilters with vermibed height of 30, 50, 70, 100 and 150cm (defined as H30, H50, H70, H100, H150, respectively) were operated to determine the impact on excess sludge treatment. The physiological response of earthworms was also studied. H30, H50, H70 could run steadily, while H100 and H150 appeared phenomenon of sludge accumulated in vermibeds and could not function. A little decrease of protein in earthworm with the vermibed height increase from 70 to 100 cm and followed a significant decrease with the height increase to 150cm were observed. The activity patterns observed for antioxidant enzymes of earthworm, characterized by a gradually little increase along the increase of vemibed height from 30 to 100cm and subsequent a sharp increase with the height increase to 150cm. For earthworm, the vermibed height 100cm and 150cm had bad effect on the growth of organism. Increasing the vermibed height from 30 to 70cm, SS and VSS reduction rate and quantity increased remarkably. With a higher vermibed height, H70 were marked with SS and VSS reduction rate of 55.4-61.4%, and 69.87-73.56% respectively. Moreover, TCOD (total chemical oxygen demand) removal rate of vermifilters and the proportion of SCOD (soluble chemical oxygen demand) to TCOD in effluent took on an obvious increase with the increasing vermibed height from 30 to 70cm, which was favored for hydrolysis effect and promote of microorganism activity.
机译:糊状物的高度被认为是蚯蚓剂的重要因素。操作具有糊状物高度为30,50,70,100和150cm(分别定义为H30,H50,H70,H100,H150)的平行浆料(分别定义为H30,H70,H100,H150)以确定对多余污泥处理的影响。还研究了蚯蚓的生理反应。 H30,H50,H70可以稳定地运行,而H100和H150出现在伪造中累积的污泥现象,并且不能起作用。蚯蚓中蛋白质的蛋白质与糊状物高度增加到100厘米的一点减少,并且观察到高度增加到150cm的显着降低。观察到蚯蚓的抗氧化剂酶的活性模式,其特征在于沿30至100cm的大部分高度的增加逐渐增加,随后随着高度增加到150cm的急剧增加。对于蚯蚓,蠕虫高度100cm和150cm对生物体的生长产生了不良影响。将蠕虫高度从30到70cm,SS和VSS减小率和数量增加显着增加。具有更高的粘体高度,H70标记为SS和VSS降低率分别为55.4-61.4%,分别为69.87-73.56%。此外,TCOD(总化学需氧量)去除淤泥和SCOD(可溶性化学需氧量)与流出物中的比例(可溶性化学需氧量)与流出物中的TCOD的比例随着30%至70℃的增加而显着的增加,这对水解作用有利于促进微生物活动。

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