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Effects of LED irradiation and sea water culture on the lipid characteristics of Nannochloropsis oculata

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Microalgae have higher lipid production conversion efficiency via photosynthesis among all bio-organisms and are therefore considered the most promising feedstock for biofuel production. This experimental study was conducted to investigate… Click to show full abstract

Microalgae have higher lipid production conversion efficiency via photosynthesis among all bio-organisms and are therefore considered the most promising feedstock for biofuel production. This experimental study was conducted to investigate the effects of light-emitting diode (LED) irradiation at various wavelengths and the type of sea water used for culture on the biomass growth rate and lipid characteristics of Nannochloropsis oculata. Microalgae were cultured separately in deep and surface sea water and irradiated with LEDs. The experimental results indicated that among the various culture conditions, culture in deep sea water under red LED irradiation yielded the largest microalgae biomass quantity. However, microalgae cultured in deep sea water under blue LED irradiation appeared to have the highest elemental carbon content, heating value, and crude microalgae lipid formation and lowest carbon residue. Hence, the use of deep sea water as a culture medium, together with blue LED irradiation, would lead...

Keywords: sea; culture; sea water; led irradiation

Journal Title: Journal of Renewable and Sustainable Energy
Year Published: 2018

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