AI Article Synopsis

  • The study investigated the hydrolysis of waste cooking oil (WCO) using lipase from the fungus Aspergillus niger, produced through solid state fermentation with canola meal as a substrate.
  • It evaluated the effect of ultrasound on lipase activity, finding a 320% increase in hydrolytic activity when optimized conditions were applied (50% power, 25 min exposure, 45°C).
  • The optimal conditions for the hydrolysis reaction were identified as an oil:water ratio of 1:3 and a lipase concentration of 15%, resulting in 62.67μmol/mL of free fatty acids after 12 hours, highlighting the potential of this method for WCO pretreatment.

Article Abstract

This study aimed to evaluate the waste cooking oil (WCO) hydrolysis in ultrasonic system using lipase as catalyst. Lipase was produced by the fungus Aspergillus niger via solid state fermentation (SSF) using canola meal as substrate. Prior to the hydrolysis reaction, the lipase behavior when subjected to ultrasound was evaluated by varying the temperature of the ultrasonic bath, the exposure time and the equipment power. Having optimized the treatment on ultrasound, the WCO hydrolysis reaction was carried out by evaluating the oil:water ratio and the lipase concentration. For a greater homogenization of the reaction medium, a mechanical stirrer at 170rpm was used. All steps were analyzed by experimental design technique. The lipase treatment in ultrasound generated an increase of about 320% in its hydrolytic activity using 50% of ultrasonic power for 25min. at 45°C. The results of the experimental design conducted for ultrasound-assisted hydrolysis showed that the best condition was using an oil:water ratio of 1:3 (v:v) and enzyme concentration of 15% (v/v), generating 62.67μmol/mL of free fatty acids (FFA) in 12h of reaction. Thus, the use of Aspergillus niger lipase as a catalyst for hydrolysis reaction of WCO can be considered as a possible pretreatment technique of the oil in order to accelerate its degradation.

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Source
http://dx.doi.org/10.1016/j.ultsonch.2016.10.007DOI Listing

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