利用活性污泥作为细菌源从地下水中去除硝酸盐

IF 2.4 4区 环境科学与生态学 Q2 WATER RESOURCES Water Quality Research Journal Pub Date : 2022-07-08 DOI:10.2166/wqrj.2022.005
Mohammed Amarine, Sarah Jerroumi, B. Lekhlif, Y. Zouheir, Amine Chafik, El Mostafa Mliji, J. Echaabi
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引用次数: 1

摘要

本研究采用异养反硝化(HD)法对硝酸盐污染地下水进行反硝化,生产饮用水。初步试验是在反硝化反应器中进行的,该反应器由一个充满塑料填料的不透明PVC柱组成,并加入基于甘油的合成溶液,其中添加了活性污泥细菌。通过测量pH值、浊度、硝酸盐和亚硝酸盐等理化参数来监测反应器的性能。对同一反应器内的不同试验进行了监测,以评估反硝化细菌的适应可能性。每次试验结束,底物用完后,在间断曝气(曝气时间= 1 h)的条件下,向反应器中加入新的合成溶液。结果表明,根据反硝化菌的适应情况,处理8 h后硝酸盐去除率可达99.42%。本实验还表明,产亚硝酸盐的浓度与曝气方式有关,在间断曝气(曝气周期= 1 h)处理12 h后,连续曝气方式的产亚硝酸盐浓度达到了低于检出限的值。
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Nitrate removal from groundwater using an activated sludge as a source of bacteria
In this study, the denitrification of nitrate-contaminated groundwater by the heterotrophic denitrification (HD) method was studied to produce drinking water. Preliminary tests were carried out in a denitrification reactor, consisting of an opaque PVC column filled with a plastic packing, and fed with a synthetic solution based on glycerol, in which activated sludge bacteria were added. The performance of the reactor was monitored by measuring physicochemical parameters such as pH, turbidity, nitrates, and nitrites. This monitoring was carried out for different tests within the same reactor to evaluate the adaptation possibilities of the denitrifying bacteria. At the end of each test when the substrate was exhausted, a new synthetic solution was added to the reactor under discontinuous aeration (aeration period = 1 h). The results obtained showed that the nitrate removal efficiency reached a value of 99.42% after 8 h of treatment depending on the adaptation of the denitrifying bacteria. This experiment also showed that the concentration of produced nitrite depends on the aeration mode and it reached a value below the detection limit in the sequential aeration mode after 12 h of treatment under discontinuous aeration (aeration period = 1 h).
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4.50
自引率
8.70%
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