4.7 Article

Characterization, optimization and stability studies on Candida rugosa lipase supported on nanocellulose reinforced chitosan prepared from oil palm biomass

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出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.ijbiomac.2018.03.095

关键词

Candida rugosa Lipase; Nanocellulose; Chitosan; Oil palm fronds; Immobilization protocol; Butyl butyrate

资金

  1. Research University Grant Scheme from the Universiti Teknologi Malaysia, Johor [Q.J1300002626.13H09]

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The contribution of chitosan/nanocellulose (CS-NC) to the enzymatic activity of Candida rugosa lipase covalently bound on the surface of CS-NC (CRL/CS-NC) was investigated. Cellulosic material from oil palm frond leaves (OPFL) were bleached, alkaline treated and acid hydrolyzed to obtain the purified NC and used as nano-fillers in CS. XRD, Raman spectroscopy and optical fluorescence microscopic analyses revealed existence of strong hydrogen bonds between CS and the NC nanofillers. The CRLs were successfully conjugated to the surface of the CS-NC supports via imine bonds that occurred through a Schiffs based mechanism. Process parameters for the immobilization of CRL were assessed for factors temperature, concentration of glutaraldehyde and pH, to afford the highest enzyme activity to achieve maximum conversion of butyl butyrate within 3 h of incubation. Conversion as high as 88% was reached under an optimized condition of 25 degrees C, 0.3% glutaraldehyde concentration and buffer at pH 7. Thermal stability of CRL/CS-NCs was 1.5-fold greater than that of free CRL, with biocatalysts reusability for up to 8 successive esterification cycles. This research provides a promising approach for expanding the use of NC from OPFL for enhancing enzyme activity in favour of an alternative eco-friendly means to synthesize butyl butyrate. (C) 2018 Elsevier B.V. All rights reserved.

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