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Interaction of seawater microorganisms with scalants and antiscalants in reverse osmosis systems.

Authors :
Ashfaq, Mohammad Yousaf
Al-Ghouti, Mohammad A.
Al Disi, Zulfa A.
Zouari, Nabil
Source :
Desalination. Aug2020, Vol. 487, pN.PAG-N.PAG. 1p.
Publication Year :
2020

Abstract

In this research, the interactions of seawater microorganisms with scalants (minerals like calcium sulfate) and antiscalants in the reverse osmosis (RO) systems were investigated. The interaction of seawater microorganisms with antiscalants was investigated by measuring the growth of bacteria in an antiscalant containing growth medium, which was added as a sole source of carbon and energy. Moreover, the interaction of microorganism with calcium sulfate (selected as a model scalant) was also investigated using scanning electron microscopy – energy dispersive x-ray spectroscopic technique. It was found that several Pseudomonas strains isolated from the marine water of Qatar are capable of using antiscalants as an energy or carbon source. It was noted that the growth curves of the strains vary with the type of the antiscalant studied. Furthermore, the results of microorganism-scalant interaction showed that the presence of bacteria induced/mediated precipitation of calcium sulfate on the RO membranes, whereas, no precipitation was noted on the control RO membranes (i.e. without bacteria) under the studied conditions. Therefore, the results of this research showed that the presence of microorganisms in seawater reverse osmosis not only causes biofouling but also enhances mineral scaling through biodegradation of antiscalants and precipitation of minerals (calcium sulfate). Unlabelled Image • Investigated the interaction of seawater microorganisms with scalants in RO • Investigated the interaction of seawater microorganisms with antiscalants in RO • Pseudomonas fragi and Pseudomonas stutzeri were isolated from Qatar's marine water. • Pseudomonas biodegraded antiscalants and utilize them as a source of energy/carbon. • The presence of bacteria induced precipitation of calcium sulfate on RO membrane. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00119164
Volume :
487
Database :
Academic Search Index
Journal :
Desalination
Publication Type :
Academic Journal
Accession number :
143363817
Full Text :
https://doi.org/10.1016/j.desal.2020.114480