2020
DOI: 10.1252/jcej.19we231
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Effect of Alumina Particles on Simultaneous Lipid Extraction and Biodiesel Production from Microalgae under Ultrasonic Irradiation

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Cited by 5 publications
(3 citation statements)
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“…By increasing the mass transfer between two insoluble substances (oleic acid and alcohol), ultrasonication serves as one of the economically viable intensified procedures that aid in accelerating chemical reactions 139 . Numerous investigations utilizing heterogeneous acid carbon catalysts and ultrasonication radiation for the synthesis of biodiesel have already been published 140, 141 . Hajamini et al .…”
Section: Biodiesel Synthesis Methodsmentioning
confidence: 99%
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“…By increasing the mass transfer between two insoluble substances (oleic acid and alcohol), ultrasonication serves as one of the economically viable intensified procedures that aid in accelerating chemical reactions 139 . Numerous investigations utilizing heterogeneous acid carbon catalysts and ultrasonication radiation for the synthesis of biodiesel have already been published 140, 141 . Hajamini et al .…”
Section: Biodiesel Synthesis Methodsmentioning
confidence: 99%
“…139 Numerous investigations utilizing heterogeneous acid carbon catalysts and ultrasonication radiation for the synthesis of biodiesel have already been published. 140,141 Hajamini et al examined the esterification reaction of scrap fish oil employing a sulfonated activated carbon catalyst in conjunction with ultrasound radiation. RSM (response surface methodology) technology was used to optimize the process of esterification.…”
Section: Ultrasound-assisted Biodiesel Synthesismentioning
confidence: 99%
“…57 Lipids obtained from microalgae chlorella are used as biodiesel by using alumina particles along with ultrasound (60-360 W, 15-60 min) for increasing the surface area further enhancing the generation of bubbles during the cavitation process. 58 The extraction of bioactive components from Nepeta binaludensis was carried out for its antioxidant properties by using an ultrasound-assisted extraction process to obtain total phenolic content of about 402.6 mg mL −1 . 59 Antioxidants from the common bean Phaseolus vulgaris have been extracted using ultrasound (68 min, 480 W) for its anti-tumor, anti-mutagenicity, etc.…”
Section: Rsc Pharmaceutics Reviewmentioning
confidence: 99%