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- W2918179613 abstract "Desalination allows to pipe viable water supply from ocean, the largest waterresource, as potable water for drink and daily usage. The technology such as thermaldistillation and membrane separation technology requires intense energy source.Almost all desalination plants using fossil fuel as their primary energy source, whichleads to many challenges. Marine-euryhaline Synechococcus sp. strain PCC 7002, onthe other hand, is one of the potential cyanobacteria that may contribute to thedevelopment and advancement in water treatment field. These cyanobacteria areable to generate a huge amount of biomass and producing fresh water (low-saltsaline water). Thus, this leads the study to investigate the influence of processparameters on biodesalination by Synechococcus sp. PCC 7002 associate to growthrate of the cyanobacteria. The results showed that temperature, light intensity andpH play important role in sodium reduction. More than 50% of salinity reduction wasobtained at optimum condition. Interactive effects between selected factorsconcluded that higher salinity removal was observed at temperature of 36oC with thepH of 10 and light intensity of 3500 lux. However, the growth is contrast tobiodesalination. Interaction effect between temperature-pH, suggested that thegrowth prefer near neutral condition regardless of the temperature. Whentemperature interacts with light intensity, inverse relation of these two factorsresulted of higher growth rates. Further study is required to understandbiodesalination by Synechococcus sp. and its growth. Nevertheless, the study hasshown that biodesalination by Synechococcus sp. has the potential in biodesallinationprocess and integration with current technology for potable water source can befurther investigated." @default.
- W2918179613 created "2019-03-11" @default.
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- W2918179613 date "2018-12-01" @default.
- W2918179613 modified "2023-09-23" @default.
- W2918179613 title "Interactive effect of temperature, pH and light intensity on biodesalination of seawater by Synechococcus sp. PCC 7002 and on the cyanobacteria growth" @default.
- W2918179613 hasPublicationYear "2018" @default.
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