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Properties of Iron Bacteria Biofouling on Ni-P-rGO Coating under Flowing Conditions

机译:流动条件下Ni-P-rGO涂层上铁细菌的生物结垢特性

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摘要

Biofouling on heat exchange devices can decrease heat transfer efficiency, corrode materials, and even lead safety accidents. Most heat exchange devices are made of carbon steel, which produces biofouling easily. In this paper, nickel-phosphorus-reduced graphene oxide (Ni-P-rGO) coating was prepared on carbon steel by electroless plating as a kind of advanced material to study the properties of iron bacteria biofouling under flowing conditions. The coating was analyzed via scanning electron microscopy and Raman spectroscopy. The properties of iron bacteria biofouling on carbon steel and Ni-P-rGO coating were then compared under flowing conditions. Compared with carbon steel, the asymptotic value of fouling resistance on the Ni-P-rGO coating significantly decreased. Additionally, the induction period and the time of reaching the asymptotic value greatly increased. The inhibition properties of biofouling of advanced materials Ni-P-rGO coating under different temperatures, flow velocities, and initial concentrations was also studied.
机译:换热设备上的生物污垢会降低传热效率,腐蚀材料,甚至导致安全事故。大多数热交换设备是由碳钢制成的,容易产生生物污垢。本文通过化学镀在碳钢上制备了镍-磷还原氧化石墨烯(Ni-P-rGO)涂层作为一种先进的材料,以研究在流动条件下铁细菌的生物污染特性。通过扫描电子显微镜和拉曼光谱分析涂层。然后在流动条件下比较了碳钢和Ni-P-rGO涂层上的铁细菌生物污垢的特性。与碳钢相比,Ni-P-rGO涂层的耐污垢性的渐近值明显降低。另外,感应周期和达到渐近值的时间大大增加。还研究了先进材料Ni-P-rGO涂层在不同温度,流速和初始浓度下的生物结垢抑制性能。

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