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_c201108030938
_dFida
_c201107132308
_dVLOAD
_y201002251400
_zida
040 _aUMP
090 _aTP248.65.E59 2009 rs Bc.
100 0 _aNur Azhar Saari
245 1 0 _aOptimization of temperature and agitation rate on expression of recombinant xylanase in Kluyveromyces lactics using response surfacemethodology/
_cNur Azhar Saari
246 3 _aOptimization of temperature and agitation rate on expression of recombinant xylanase in Kluyveromyces lactics using response surfacemethodology
_h[computer file]
260 _aKuantan, Pahang :
_bUMP,
_c2009
300 _axiii, 47 p. :
_bill. ;
_c30 cm. +
_e1 computer disc
502 _aProject paper (Bachelor of Chemical Engineering (Biotechnology)) -- Universiti Malaysia Pahang - 2009
504 _aBibliography : p. 35-39
520 3 _aXylanase has been used widely in industries today due to its ability in catalyzing various types of biochemical reactions. However, production cost of xylanase enzyme is very expensive. A research to reduce the cost by optimization of temperature and agitation rate on expression of recombinant xylanase in K. lactis using Response Surface Methodology (RSM) was successfully done. At the early stage of experiment, one factor at a time was employed to screen the best range for temperature and agitation rate. All the parameter ranges obtained were used in Response Surface Methodology (RSM). Response Surface Methodology in Design Expert version 7.1.6 software was used with Central Composite Design (CCD) mode. Thirteen sets of experiments with different parameter values were suggested by the software. The predicted optimum values for temperature, agitation rate and xylanase activities were 34.68oC, 253 rpm and 9.198 U/ml respectively. One set of experiment was run using the optimized parameter and as a result, 9.221 U/ml xylanase activity was recorded. Before optimization, xylanase activity was only 5.221 U/ml and the activity was increased by 43.75% or 1.78-fold after optimization. The optimization also reduces the energy consumption as the temperature was reduced from 38oC to 34.6oC and agitation rate reduced from 280 to 253 rpm. As conclusion, this research is successful to increase recombinant xylanase production, reduce the energy consumption and also able to reduce the production cost.-Author-
650 0 _aXylanases
650 0 _aEnzymes
_xBiotechnology
999 _aVIRTUA40
_c1717
_d1723
999 _aVTLSSORT0080*0200*0400*0900*1000*2450*2460*2600*3000*5020*5040*5200*6500*6501*9992