000 02466nam a2200241 a 4500
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008 131008t2012 my a f m 000 0 eng d
020 _aTHE0004204(Local)
039 9 _a201905152025
_bfarhana
_c201311181658
_dnabilah
_c201310231033
_dnabilah
_y201310081449
_znabilah
040 _aUMP
090 _aTP157 .N58 2012 rs Bc.
100 1 _aNgu, Ming Tiong
245 1 0 _aDevelopment of an extractive reactor block in the aspen plus simulator /
_cNgu Ming Tiong
260 _aKuantan, Pahang :
_bUMP,
_c2012
300 _axiv, 30 p. :
_bill. ;
_c30 cm. +
_e1 CD-ROM
502 _aProject paper (Bachelor of Chemical Engineering) -- Universiti Malaysia Pahang – 2012
504 _aBibliography : p. 25-26
520 3 _aThe design and operation issues for extractive reactor system are considerably more complex than those involved for either conventional extraction column or convention reactors. The introduction of an in situ separation function within the reaction zone leads to complex interactions between liquid-liquid equilibrium, liquid-liquid mass transfer, intra-catalyst diffusion (for homogeneously catalysed processes) and chemical kinetics. The advantages of such alternatives is the use of simultaneous extraction and reaction to improve the yields and/or selectivity to the products, and also that they require smaller recycle flows. This research is to purpose a suitable configuration for extractive reaction by identify the important parameter that affect the process and develop the kinetic subroutine in Aspen Plus simulation. The reactor block is design by using the Aspen plus simulation to set up and specifies the application type. It is combining with an Excel spreadsheet to performance the calculations by using Dynamic Data Exchange (DDE). From the simulation, it show out that the production of for the first stream with 249.430 kmol/hr methanol, 687.099 kmol/hr fatty acid methyl ester, and 336.185 kmol/hr glycerol. However, for the second stream which produce 133.780 kmol/hr triglyceride, 137.452 kmol/hr methanol and 118.889 kmol/hr fatty acid methyl ester. For the reactor block design it is an integrate current, future technology in exciting plant and also perform plant optimization and control to improve the plant competitiveness.
650 0 _aChemical reactors
999 _aVIRTUA40
_c4233
_d4239
999 _aVTLSSORT0080*0200*0400*0900*1000*2450*2600*3000*5020*5040*5200*6500*9992