2017
DOI: 10.1016/j.fuel.2017.04.040
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Obtaining biodiesel from microalgae oil using ultrasound-assisted in-situ alkaline transesterification

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Cited by 49 publications
(19 citation statements)
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“…Alkali (NaOH) treatment increased the yield to 911 mg/L. 2017 [281] Ultrasound used for biodiesel production using microalgae oil Without ultrasound, in 2 h, the yield was 63.9%; whereas using ultrasound, the yield increased to 97.6%. 2018 [282] Ultrasound-assisted synthesis of triacetin via acetylation of glycerol A selectivity of 100% was achieved.…”
Section: Hydrogen Usage Incorporating Ultrasound Technologymentioning
confidence: 99%
“…Alkali (NaOH) treatment increased the yield to 911 mg/L. 2017 [281] Ultrasound used for biodiesel production using microalgae oil Without ultrasound, in 2 h, the yield was 63.9%; whereas using ultrasound, the yield increased to 97.6%. 2018 [282] Ultrasound-assisted synthesis of triacetin via acetylation of glycerol A selectivity of 100% was achieved.…”
Section: Hydrogen Usage Incorporating Ultrasound Technologymentioning
confidence: 99%
“…101 Martinez et al reported the use of ultrasonication to improve in situ alkaline transesterification, demonstrating that ester content in the extract could be improved from 63.6% to 97.6%. 104 Subjecting a 5% microalgal suspension in aqueous media to 1000 W of power for 30 min yielded a maximum oil recovery of 0.21% (4.2% of the microalgal biomass on a dry-mass basis). Wang and Yuan investigated the use of nozzle spraying with ultrasonication, and noted that low concentration microalgal suspensions (0.05-0.4%) were well disrupted using this technique.…”
Section: Simultaneous Extraction and Transesterificationmentioning
confidence: 99%
“…Martinez et al . reported the use of ultrasonication to improve in situ alkaline transesterification, demonstrating that ester content in the extract could be improved from 63.6% to 97.6% . Subjecting a 5% microalgal suspension in aqueous media to 1000 W of power for 30 min yielded a maximum oil recovery of 0.21% (4.2% of the microalgal biomass on a dry‐mass basis).…”
Section: Simultaneous Cell Disruption and Extractionmentioning
confidence: 99%
“…Mechanical pretreatments are commonly employed to disrupt different kind of organic substrates in industrial processes [ 44 , 45 ]. Ultrasound treatment has been applied to disrupt microalgae cell wall in different bioprocess devoted to biofuel production, such as ethanol production from Chlorella biomass [ 46 ] and biodiesel generation from Spirulina biomass [ 47 ]. In the case of anaerobic digestion, ultrasound pretreatment has also shown positive results in terms of methane yield enhancement.…”
Section: Pretreatment Of Microalgae Biomass To Improve Biogas Prodmentioning
confidence: 99%