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Experimental study of the growth characteristics of microbial fouling on sewage heat exchanger surface

机译:微生物污垢污水换热器表面生长特性的实验研究

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Urban sewage is widely used as a heat source in the heat pump system. However, the sewage contains large quantity of micro-organisms, which can encourage fouling on heat exchanger surfaces during operation. Microbial fouling can seriously affect the heat transfer efficiency. Iron bacteria (IB) and sulfate-reducing bacteria (SRB) are the main bacteria responsible for forming microbial fouling. This study investigated the fouling growth characteristics in heat exchanger. For this purpose, the IB and SRB from water in urban sewage treatment plants were separated and purified, and the runner state of sewage heat exchanger pipeline was simulated by designing the flow channel model. The wet and dry weights of the fouling formed by IB at different temperatures, fluid flow velocities and bacteria concentrations were analyzed via weighing method. The influence of these factors on the fouling formation by IB was further analyzed. In addition, a comparative study was conducted on the composite fouling after the addition of SRB. The results show that the fouling formed by IB is composed of iron precipitates and organics. At 20-40 degrees C, the fouling rate of IB is faster, and the fouling generated is higher, when the temperature is higher. With the increase in flow velocity, the rate of fouling reduces, and the fouling gross decreases. The concentration of IB affects the rate of fouling so that the lower the initial concentration is, the faster the fouling rate of IB is. The structure of the composite fouling after adding SRB becomes more compact. (C) 2017 Elsevier Ltd. All rights reserved.
机译:城市污水广泛用作热泵系统中的热源。然而,污水含有大量的微生物,可以在操作期间鼓励在热交换器表面上进行污垢。微生物污垢可以严重影响传热效率。铁菌(IB)和硫酸盐还原细菌(SRB)是负责形成微生物污垢的主要细菌。本研究调查了热交换器中的污垢生长特性。为此目的,分离和纯化来自城市污水处理厂水中的IB和SRB,通过设计流动通道模型来模拟污水换热器管道的流道状态。通过称重方法分析通过IB,流体流速和细菌浓度的IB形成的湿法和干重。进一步分析了对IB对污垢形成的这些因素的影响得到了进一步分析。此外,在加入SRB后,对复合污垢进行了比较研究。结果表明,IB形成的污垢由铁沉淀物和有机物组成。在20-40℃下,IB的污垢速率更快,当温度较高时,产生的污垢较高。随着流速的增加,污垢率降低,污垢毛的速度降低。 IB的浓度影响结垢速率,使初始浓度越低,IB的污垢率越快。添加SRB后复合污染的结构变得更加紧凑。 (c)2017 Elsevier Ltd.保留所有权利。

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