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Thursday, September 13, 2018

Mastervoorlichting ChE 2016 track Chemical & Process Engineering ...
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The Hatta number (Ha) was developed by ShirĂ´ji Hatta, who taught at Tohoku University. It is a dimensionless parameter that compares the rate of reaction in a liquid film to the rate of diffusion through the film. For a second order reaction (rA = k2CBCA), the maximum rate of reaction assumes that the liquid film is saturated with gas at the interfacial concentration (CA,i); thus, the maximum rate of reaction is k2CB,bulkCA,i?L.


H a 2 = k 2 C A , i C B , b u l k ? L D A ? L   C A , i = k 2 C B , b u l k D A ( D A ? L ) 2 = k 2 C B , b u l k D A k L 2 {\displaystyle Ha^{2}={{k_{2}C_{A,i}C_{B,bulk}\delta _{L}} \over {{\frac {D_{A}}{\delta _{L}}}\ C_{A,i}}}={{k_{2}C_{B,bulk}D_{A}} \over ({\frac {D_{A}}{\delta _{L}}})^{2}}={{k_{2}C_{B,bulk}D_{A}} \over {{k_{L}}^{2}}}}


For a reaction mth order in A and nth order in B:


H a = 2 m + 1 k m , n C A , i m - 1 C B , b u l k n D A k L {\displaystyle Ha={{\sqrt {{\frac {2}{{m}+1}}k_{m,n}{C_{A,i}}^{m-1}C_{B,bulk}^{n}{D}_{A}}} \over {{k}_{L}}}}


It is an important parameter used in Chemical Reaction Engineering.


Video Hatta number



References


Maps Hatta number



See also

  • Dimensionless quantity
  • Dimensional analysis

Source of article : Wikipedia