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首页> 外文期刊>Journal of Hazardous Materials >Hydrodynamic characteristics of airlift nitrifying reactor using carrier-induced granular sludge
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Hydrodynamic characteristics of airlift nitrifying reactor using carrier-induced granular sludge

机译:载流颗粒污泥气提硝化反应器的水动力特性

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Since nitrification is the rate-limiting step in the biological nitrogen removal from wastewater, many studies have been conducted on the immobilization of nitrifying bacteria. A laboratory-scale investigation was carried out to scrutinize the effectiveness of activated carbon carrier addition for granulation of nitrifying sludge in a continuous-flow airlift bioreactor and to study the hydrodynamics of the reactor with carrier-induced granules. The results showed that the granular sludge began to appear and matured 60 and 108 days, respectively, after addition of carriers, while no granule was observed in the absence of carriers in the control test. The mature granules had a diameter of 0.5-5 mm (1.6 mm in average), settling velocity 22.3-55.8 m h~(-1) and specific gravity of 1.086. The relationship between the two important hydrodynamic coefficients, i.e. gas holdup and liquid circulation velocity, and the superficial gas velocity were established by a simple model and were confirmed experimentally. The model also could predict the critical superficial gas velocity for liquid circulation and that for granules circulation, with respective values of 1.017 and 2.662 cm min~(-1), accurately.
机译:由于硝化作用是废水中生物脱氮的限速步骤,因此已经进行了许多有关硝化细菌固定化的研究。进行了实验室规模的调查,以研究活性炭载体添加对连续流气举生物反应器中硝化污泥颗粒化的有效性,并研究带有载体诱导颗粒的反应器的流体动力学。结果表明,在加入载体后,颗粒状污泥分别开始出现并成熟60天和108天,而在对照试验中,在没有载体的情况下未观察到颗粒。成熟颗粒的直径为0.5-5mm(平均1.6mm),沉降速度为22.3-55.8m h·(-1),比重为1.086。通过一个简单的模型建立了两个重要的流体动力学系数,即气体滞留率和液体循环速度与表观气体速度之间的关系,并通过实验进行了证实。该模型还可以准确地预测液体循环和颗粒循环的临界表观气体速度,分别为1.017和2.662 cm min〜(-1)。

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