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Functional Graphenic Materials That Seal Condenser Tube Leaks in Situ

机译:用封装冷凝器管原位泄漏的功能性换光材料

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Undesirable condenser tube leaks frequently occur in power plants, resulting in reduced power output, increased burden on downstream systems, and substantial revenue losses. Current techniques such as wood flour provide temporary in situ remediation but lack adhesive properties to form stable seals. Here, we report the development of in situ sealants for long-term defect repair. The carboxylic acids on graphene oxides and Claisen graphene were used as chemical handles to covalently install a bio-inspired, adhesive catechol, generating a class of functional graphenic material (FGM) sealants. FGM sealants outperformed unfunctionalized scaffolds with enhanced antimicrobial activity to prevent fouling (up to 55% reduction) and superior cohesive properties to promote stable seals. Further, FGM sealants were adhesive, effectively sealing defects in a model experiment, whereas unfunctionalized scaffolds did not display any sealant capacity.
机译:发电厂中经常出现不希望的冷凝器管泄漏,导致功率输出降低,下游系统的负担增加,以及大量的收入损失。 当前技术,如木面粉提供暂时的原位修复,但缺乏粘合性能以形成稳定的密封件。 在这里,我们报告了原位密封剂的发展,以进行长期缺陷修复。 石墨烯氧化物和克莱森石墨烯上的羧酸用作化学手柄,以共价安装生物启发的粘合剂儿茶酚,产生一类功能性的石墨烯材料(FGM)密封剂。 FGM密封剂具有增强的抗微生物活性的未官能化支架,以防止污垢(减少55%)和优异的内聚性能以促进稳定的密封件。 此外,FGM密封剂是粘合剂,有效地密封模型实验中的缺陷,而无官能化支架没有显示任何密封容量。

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