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Using Thermal Shock to Inhibit Biofilm Formation in the Treated Sewage Source Heat Pump Systems

机译:在处理后的污水源热泵系统中使用热冲击抑制生物膜的形成

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Treated sewage source heat pump systems can reuse the waste energy in the treated sewage. However, biofilms in the heat exchangers decrease the system efficiency. This work investigates the feasibility of thermal shock at accessible temperatures in heat exchangers for biofilm inhibition. Bacillus subtilis biofilms were formed on coupons and in a miniaturized plate heat exchanger. Thermal shocks at different temperatures (50–80 °C) for different exposure times (1–60 min) were used to treat the biofilms. The results showed that thermal shock had a significant bactericidal and biofilm inhibition effect, and the effect was enhanced as the temperature and the exposure time increased. Data fitting of the biomass showed that temperature had a more significant influence on the biofilm inhibition effect than exposure time. The results of the heat exchanging experiments showed that high temperature thermal shock could significantly mitigate the heat transfer deterioration caused by the biofilms, indicating that thermal shock could be used as a viable biofilm inhibition approach for heat exchangers.
机译:处理后的污水源热泵系统可以再利用处理后的污水中的废能。但是,热交换器中的生物膜会降低系统效率。这项工作研究了在热交换器中可达到的温度进行热冲击以抑制生物膜的可行性。枯草芽孢杆菌生物膜形成在试样片上和小型化的板式换热器中。在不同的暴露时间(1-60分钟)下,在不同温度(50-80°C)下进行热冲击处理生物膜。结果表明,热休克具有显着的杀菌和生物膜抑制作用,并且随着温度和暴露时间的增加,该作用增强。生物量的数据拟合表明,温度对生物膜抑制作用的影响比暴露时间更大。换热实验的结果表明,高温热冲击可以显着减轻生物膜引起的传热恶化,表明热冲击可以作为一种可行的热交换器生物膜抑制方法。

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