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Assessment of the Impact of Temperature on Biofilm Composition with a Laboratory Heat Exchanger Module

机译:用实验室热交换器模块评估温度对生物膜组合物的影响

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摘要

Temperature change over the length of heat exchangers might be an important factor affecting biofouling. This research aimed at assessing the impact of temperature on biofilm accumulation and composition with respect to bacterial community and extracellular polymeric substances. Two identical laboratory-scale plate heat exchanger modules were developed and tested. Tap water supplemented with nutrients was fed to the two modules to enhance biofilm formation. One “reference” module was kept at 20.0 ± 1.4 °C and one “heated” module was operated with a counter-flow hot water stream resulting in a bulk water gradient from 20 to 27 °C. Biofilms were grown during 40 days, sampled, and characterized using 16S rRNA gene amplicon sequencing, EPS extraction, FTIR, protein and polysaccharide quantifications. The experiments were performed in consecutive triplicate. Monitoring of heat transfer resistance in the heated module displayed a replicable biofilm growth profile. The module was shown suitable to study the impact of temperature on biofouling formation. Biofilm analyses revealed: (i) comparable amounts of biofilms and EPS yield in the reference and heated modules, (ii) a significantly different protein to polysaccharide ratio in the EPS of the reference (5.4 ± 1.0%) and heated modules (7.8 ± 2.1%), caused by a relatively lower extracellular sugar production at elevated temperatures, and (iii) a strong shift in bacterial community composition with increasing temperature. The outcomes of the study, therefore, suggest that heat induces a change in biofilm bacterial community members and EPS composition, which should be taken into consideration when investigating heat exchanger biofouling and cleaning strategies. Research potential and optimization of the heat exchanger modules are discussed.
机译:热交换器长度上的温度变化可能是影响生物污染的重要因素。该研究旨在评估温度对生物膜积聚和组成相对于细菌群落和细胞外聚合物物质的影响。开发并测试了两个相同的实验室鳞片换热器模块。补充有营养素的自来水被送入两种模块,以增强生物膜形成。将一个“参考”模块保持在20.0±1.4°C,并且使用逆流热水流操作一个“加热”模块,导致散装水梯度为20至27°C。生物膜在40天内生长,采样,用16S rRNA基因扩增子测序,EPS提取,FTIR,蛋白质和多糖量化。实验在连续三份中进行。监测加热模块中的传热阻力显示出可复制的生物膜生长曲线。该模块被展示适用于研究温度对生物污染形成的影响。生物膜分析显示:(i)参考和加热模块中的可比较量的生物膜和EPS产量,(ii)参考(5.4±1.0%)和加热模块的EPS中的多糖比具有显着不同的蛋白质(7.8±2.1 %),在升高的温度下由相对较低的细胞外糖产生引起的,(iii)在细菌群落组合物中具有较大温度的强烈变化。因此,研究的结果表明,热量诱导生物膜细菌群落成员和EPS组合物的变化,当研究热交换器生物污染和清洁策略时,应该考虑到这一点。讨论了热交换器模块的研究潜力和优化。

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