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Composition of Groundwater Bacterial Communities before and after Air Surging in a Groundwater Heat Pump System According to a Pyrosequencing Assay

机译:焦磷酸测序法研究地下水热泵系统中空气涌动前后的细菌群落组成

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The geothermal energy of groundwater has aroused increasing interest as a solution to climate change. The groundwater heat pumps (GWHP) system using groundwater is the most environmentally friendly system to date and has been examined in several studies. However, biological clogging by microorganisms negatively affects the thermal efficiency of the GWHP system. In this study, we employed air surging, the most popular among well management methods, and pyrosequencing to analyze the genetic diversity in bacteria before and after air surging in a geothermal well. Furthermore, the diversity of dominant bacterial genera and those related to clogging were evaluated. The bacterial diversity of the groundwater well increased after air surging. Nevertheless, the proportion of bacterial genera thought to be related to microbiological clogging decreased. In cooling and heating systems based on the geothermal energy of groundwater, the wells should be maintained regularly by air surging to reduce efficiency problems caused by microbiological clogging and to prevent secondary damage to human health, e.g., pneumonia due to human pathogenic bacteria including Pseudomonas aeruginosa and Acinetobacter .
机译:作为解决气候变化的方法,地下水的地热能引起了人们越来越多的兴趣。使用地下水的地下水热泵(GWHP)系统是迄今为止最环保的系统,并且已在多项研究中进行了研究。但是,微生物的生物堵塞会对GWHP系统的热效率产生负面影响。在这项研究中,我们采用了在井管理方法中最受欢迎的吹气技术和焦磷酸测序技术来分析地热井中吹气前后细菌的遗传多样性。此外,评估了优势细菌属的多样性以及与堵塞有关的细菌。空气涌动后,地下水井中的细菌多样性增加。然而,被认为与微生物堵塞有关的细菌属比例下降了。在基于地下水地热能的冷却和加热系统中,应定期通过空气涌流对井进行维护,以减少由微生物堵塞引起的效率问题,并防止对人类健康的继发性损害,例如铜绿假单胞菌等人类致病菌引起的肺炎和不动杆菌。

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