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Carbon fibers with a nano-hydroxyapatite coating as an excellent biofilm support for bioreactors

机译:具有纳米羟基磷灰石涂层的碳纤维可作为生物反应器的出色生物膜载体

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摘要

A biofilm support with high biocompatibility is needed for bioreactors. A nano-hydroxyapatite (HA) coating on carbon fibers (CFs) was prepared by electrochemical deposition (ECD). The sludge immobilization assays, bacterial cells adhesion assays and Derjaguin-Landau-Verwey-Overbeek (DLVO) theory were used to evaluate the capacity of CF supports to immobilize activated sludge and bacterial cells. The sludge immobilization and bacterial cells adhesion assays illustrated that HA coating could enhance the capacity of CFs to immobilize microorganisms. SEM images showed that HA and bacterial cells formed a dense film on CFs surface. In addition, HA, acting as a glue, could combine CFs with bacterial cells or between cells, which helped CFs capture more bacterial cells. DLVO theory illustrated that CFs with HA coating had a lower total interaction energy than CFs without handling, explaining the higher capacity of CFs with HA coating to immobilize bacterial cells. This result was owning to the less negative zeta potential and higher hydrophilicity of CFs with HA coating, and the hydrophilicity made a greater contribution to the lower total interaction energy. Experiments and theory reveal that HA coating could enhance the biocompatibility of CFs, and CFs with HA coating could be used as an excellent biofilm support for bioreactors. (C) 2018 Elsevier B.V. All rights reserved.
机译:生物反应器需要具有高生物相容性的生物膜支持物。通过电化学沉积(ECD)在碳纤维(CFs)上制备了纳米羟基磷灰石(HA)涂层。污泥固定化测定,细菌细胞粘附测定和Derjaguin-Landau-Verwey-Overbeek(DLVO)理论用于评估CF载体固定化活性污泥和细菌细胞的能力。污泥固定化和细菌细胞粘附测定表明HA涂层可以增强CFs固定化微生物的能力。 SEM图像表明,HA和细菌细胞在CF表面形成了致密的膜。此外,HA作为胶水可以将CF与细菌细胞或细胞之间结合,从而帮助CF捕获更多细菌细胞。 DLVO理论表明,带有HA涂层的CF与没有处理的CF具有更低的总相互作用能,这说明带有HA涂层的CF具有更高的固定细菌细胞的能力。该结果归因于具有HA涂层的CF的负ζ电势较小和较高的亲水性,并且亲水性对较低的总相互作用能做出了较大贡献。实验和理论表明,HA涂层可以增强CF的生物相容性,带有HA涂层的CF可以用作生物反应器的出色生物膜载体。 (C)2018 Elsevier B.V.保留所有权利。

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