Experimental Study on Microbial Attachment Degree of New Polymer Nanomaterials on the Surface of Oil Field Development Platform Equipment
DOI:
https://doi.org/10.54097/hset.v48i.8365Keywords:
Nanomaterials; fouling microorganisms; 16SrRNA; real-time quantitative PCR.Abstract
Nanomaterials have surface effects and quantum size effects, which can affect the structure and function of some biological macromolecules such as proteins and nucleic acid molecules. Nanomaterials were introduced into the development of Marine antifouling paint to solve the attachment problem of Marine fouling organisms. In this paper, the method of gene cloning was used to identify the early microbial species of oil field development platform equipment fouling. Finally, the antifouling effect of 13 kinds of nanomaterials and their combinations was tested by conventional PCR and real-time quantitative PCR. The experimental simulation shows that titanium nano polymer alloy coatings have obvious technical advantages in adhesion, impact resistance, coating hardness, wear resistance, high temperature resistance, high pressure resistance and chemical corrosion resistance.
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