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Influence of microbial processes on the operational reliability in a geothermal heat store : results of long-term monitoring at a full scale plant and first studies in a bypass system

机译:微生物过程对地热储存库运行可靠性的影响:大型工厂的长期监控结果和旁路系统的首次研究

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摘要

This paper describes microbial metabolic processes that are considered to be relevant for the technical reliability of a geothermal heat store. The study reports on changes of the microbial community composition in geothermal well fluids of different temperatures and after plant downtimes monitored by genetic fingerprinting. Stagnant conditions favored the enrichment of bacteria, sulfate reducers (SRB), and sulfur oxidizers (SOB) in the well. Furthermore higher concentrations of DOC, SO_4_2-, H_2S, and H_2 were detected in the first fluids produced after plant downtime. The increased abundance of SOB indicated oxygen ingress during plant downtime. The interaction of SRB and SOB might have further enhanced corrosion and scaling processes. A mobile bypass system installed at the site will help to understand the processes occurring in the well and to study biofilm formation and corrosion rates at different temperatures.
机译:本文介绍了微生物代谢过程,这些过程被认为与地热库的技术可靠性有关。该研究报告了不同温度的地热井流体中的微生物群落组成的变化,以及通过基因指纹监测的植物停工后微生物群落组成的变化。停滞的条件有利于井中细菌,硫酸盐还原剂(SRB)和硫氧化剂(SOB)的富集。此外,在工厂停工后产生的第一批流体中还检测到较高浓度的DOC,SO_4_2-,H_2S和H_2。 SOB丰度增加表明工厂停机期间氧气进入。 SRB和SOB的相互作用可能会进一步增强腐蚀和结垢过程。安装在现场的移动旁路系统将有助于了解井中发生的过程,并研究不同温度下生物膜的形成和腐蚀速率。

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