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Effect of Static Magnetic Fields on the Composition of Marine Biofouling in Seawater Transportation Pipelines

Autores

Ostojic, Carol , Serrano, Genesis , FERRADA MARTINEZ, PABLO DANIEL, Escalona, Mauricio , Jimenez, Victor , Teresa Gonzalez, Maria , Maureira, Alejandro , Panico, Antonio , Zapata, Manuel , Rivas, Mariella

Publicación externa

No

Medio

Water

Alcance

Article

Naturaleza

Científica

Cuartil JCR

Cuartil SJR

Impacto JCR

3.4

Impacto SJR

0.723

Fecha de publicacion

01/11/2022

ISI

000881562100001

Abstract

The use of seawater for mining purposes in Chile has progressively increased in recent years as fast as the interest on the negative effects of biofouling on the inner part of pipelines used to transport seawater. To prevent biofouling, chemical antifouling compounds are traditionally used, thus, causing negative environmental impacts. The aim of this research has, therefore, been to evaluate the efficiency of static magnetic fields (SMF) generators to mitigate the biofouling. Hence, experimental activities have been conducted on high density polyethylene (HDPE) pipes equipped with neodymium magnets during two experimental periods in the year of 2019, i.e., autumn-winter (A-W) and spring-summer (S-S), and under two types of SMF, i.e., continuous-type (PCS) and pulse-type (PPS). Physicochemical parameters and cell viability of microorganisms composing the biofilm were investigated. Metagenomic analyses on biofilm were conducted as well. The results showed that the cell viability was the highest, i.e., 757,780 cells/cm(2), during S-S and the lowest, i.e., 349,151 cells/cm(2), in A-W, both under PCS. In S-S, as well as A-W, biofilm was characterized for the most abundant eukaryotic operational taxonomic units (OTUs) under PPS conditions. The presence of OTUs, such as Articiflavibacter spp., Chaetonotida spp. and Desmodorida spp., was observed only from SMF tests.

Palabras clave

biofilm; biofouling; disturbance; static magnetic fields; metagenomic; multivariate analysis

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