Fabrication of Superhydrophilic Teos-Lactic Acid Composite Films and Investigation of Biofouling Behaviour

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Date

2022

Authors

Küçüker, Mehmet Ali

Journal Title

Journal ISSN

Volume Title

Publisher

Yıldız Teknik Üniversitesi

Open Access Color

GOLD

Green Open Access

No

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Average
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Abstract

Phytoplankton and diatom microalgae species cause biofouling by adhering to the surfaces, especially in closed cultivation systems such as tubular photobioreactors. This biofilm formation blocks the sunlight; after harvesting, it is necessary to clean the reactor. This cleaning process causes loss not only for time and finance but also in terms of environmental pollution due to using toxic chemicals and excess water usage. This study aimed to investigate the reduction of the microorganism cell adhesion on the hybrid surface. To succeed in this, the composite surface of tetraethoxysilane (TEOS) and lactic acid (LA) was prepared by the sol-gel process. Then the hybrid surfaces were coated on glass slides by the dip coating method. The wettability performance of the TEOS-LA hybrid surface was investigated using contact angle measurement and light transmittance. The wettability result showed that the superhydrophilic surface having 54 mJ/m2 of surface free energy values was obtained. An increase in the lactic acid content of the composite films increased the surface free energy (SFE) values decreasing the water contact angle. A pencil hardness test characterized the mechanical strength of the surfaces, and it was determined that the hardness of the composite films was decreased by increasing the LA content of the composite films. Resultantly, it is found that the TEOS-LA superhydrophilic composite film reduces the adhesion of microalgae.

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Keywords

Sol-gel; Composite; Microalgae; Bioadhesion; Lactic acid; Eco friendly, Building construction, microalgae, lactic acid, eco friendly, Sol-gel;Composite;Microalgae;Lactic acid;Eco Friendly, TA401-492, sol-gel, Material Production Technologies, Malzeme Üretim Teknolojileri, composite, sol-gel; composite; microalgae; bioadhesion; lactic acid; eco friendly, Materials of engineering and construction. Mechanics of materials, TH1-9745

Fields of Science

02 engineering and technology, 01 natural sciences, 0104 chemical sciences, 0210 nano-technology

Citation

WoS Q

Scopus Q

Q4
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N/A

Source

Journal of Sustainable Construction Materials and Technologies

Volume

7

Issue

4

Start Page

316

End Page

321
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Scopus : 0

Page Views

580

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Downloads

351

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