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The vermicomposting for agricultural valorization of sludge from Algerian wastewater treatment plant: impact on growth of snap bean Phaseolus vulgaris L.

机译:阿尔及利亚废水处理厂的污泥农业储存的蠕动:对戊豆类的影响肆虐L.

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摘要

In the present study, vermicomposting of sewage sludges and their application in agriculture have been investigated. The impact of earthworms on the stabilization of these sludges during 7, 14 and 21 days was assessed. The final product was applied as soil amendment (set-1) to evaluate the effects on vegetative parameters (Chlorophyll, carotenoid, number of nodules, leaf weight, and plant height) of bean. In the second test (set-2), the amendment was made with raw sludge. In the third test (set-3), the worms were added to the raw sludge at the time of spreading and left during the whole period of beans growth. In order to identify and better understand the behavior and role of worms with regard to sludge, their growth (weight and length), some pathogens and physico-chemical parameters were assessed during the vermicomposting. Results showed significant increase of earthworm weight of 10.62, 23.89 and 35.72 % after 7, 14 and 21 days of sludge vermicomposting, respectively, which explain their acclimatization The vermicomposting caused a decrease of feacal coliforms number and organic matter (OM), an increase in electrical conductivity (EC) and stabilization in pH. Furthermore, significant differences were obtained for all plants vegetative parameters in soil amended with vermicomposts, compared to the control (unamended soil). Indeed, a significant increase of the chlorophyll level (a, b) was noted in the beans having undergone sludge spreading. However, worm-stabilized sludge for 7 days (set-1) showed the highest chlorophyll and levels about 16.1 and 24.64 μg/g, respectively, against 10.13 and 4.38 μg/g in the control. For the carotenoid, a significant decrease was observed compared to the control. Our experiments have also showed that the application of vermicomposted sludge significantly increases the number of nodules, leaf weight and plant height of . snap beans
机译:在本研究中,研究了污水污泥的蠕动及其在农业中的应用。评估蚯蚓对7,14和21天稳定这些污泥的影响。最终产品被应用为土壤修正案(Set-1),以评估豆类植物参数(叶绿素,类胡萝卜素,结节,叶重量,植物高度)的影响。在第二种测试(Set-2)中,用原料污泥进行修正。在第三种测试(Set-3)中,在撒布的整个豆类生长期间,在蔓延和留下的原料污泥中加入蠕虫。为了识别和更好地了解蠕虫对污泥的行为和作用,它们的生长(体重和长度),在蠕虫中评估了一些病原体和物理化学参数。结果显着增加了10.62,23.89和35.72%的污泥蠕动后的蚯蚓重量增加,这解释了它们的适应性蠕动导致有机物数量和有机物质(OM)降低,增加电导率(EC)和pH中的稳定化。此外,与对照(未解释的土壤)相比,在用蛭体修正的土壤中的所有植物营养参数获得显着差异。实际上,在经过污泥扩散的豆内注意到叶绿素水平(a,b)的显着增加。然而,7天(SET-1)的蠕虫稳定污泥显示了对照中的10.13和4.38μg/ g的最高叶绿素和水平约为16.1和24.64μg/ g。对于类胡萝卜素,与对照相比观察到显着的降低。我们的实验还表明,蛭数污泥的应用显着增加了结节,叶重量和植物高度的数量。 snap

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