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Strategies to improve the heat transfer rate and efficiency of a power plant must carefully balance a trinity of factors: the overall capital expense associated with the technology, the ongoing savings during normal plant operations, and the downtime and labor required for installation and implementation. These economic concerns have slowed the adoption of protective and/or functional surface treatments in power plant operations; traditional epoxies used to prevent biofouling and scale deposition can only be applied to brand new equipment, and the coating will limit heat transfer due to its insulating nature and applied thickness.
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The understanding and use of nanostructuring enable the utilization of nanomaterials and their ordering to achieve a desired property. This talk will summarize our results and describe the principles of nanostructuring and the right materials to achieve superior properties.
The corrosion is a spontaneous chemical reaction connected to heat exchangers and pipelines that degrades the strength and quality of utilized steel. The aggressive environment, which is ongoing, intense, and frequently difficult to totally prevent, is the key factor contributing to the metal's deterioration. Additionally, it demonstrates a serious economic problem that causes industrial operational assets to require expensive repairs, ruining the public space.