| Literature DB >> 24350269 |
Suhaila Mohd Sauid1, Jagannathan Krishnan1, Tan Huey Ling1, Murthy V P S Veluri2.
Abstract
Volumetric mass transfer coefficient (kLa) is an important parameter in bioreactors handling viscous fermentations such as xanthan gum production, as it affects the reactor performance and productivity. Published literatures showed that adding an organic phase such as hydrocarbons or vegetable oil could increase the kLa. The present study opted for palm oil as the organic phase as it is plentiful in Malaysia. Experiments were carried out to study the effect of viscosity, gas holdup, and kLa on the xanthan solution with different palm oil fractions by varying the agitation rate and aeration rate in a 5 L bench-top bioreactor fitted with twin Rushton turbines. Results showed that 10% (v/v) of palm oil raised the kLa of xanthan solution by 1.5 to 3 folds with the highest kLa value of 84.44 h(-1). It was also found that palm oil increased the gas holdup and viscosity of the xanthan solution. The kLa values obtained as a function of power input, superficial gas velocity, and palm oil fraction were validated by two different empirical equations. Similarly, the gas holdup obtained as a function of power input and superficial gas velocity was validated by another empirical equation. All correlations were found to fit well with higher determination coefficients.Entities:
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Year: 2013 PMID: 24350269 PMCID: PMC3847969 DOI: 10.1155/2013/409675
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Figure 1Experimental setup.
Rheological characteristics of xanthan solution at different palm oil fractions.
| Palm oil volume fraction (%) | Flow index, | Consistency index, |
|---|---|---|
| 0 | 0.4243 | 1108 |
| 5 | 0.4228 | 1191 |
| 10 | 0.4217 | 1280 |
| 15 | 0.4214 | 1334 |
| 20 | 0.4009 | 1399 |
| 50 | 0.344 | 2526 |
Figure 2Variation of apparent viscosity of xanthan solution with palm oil fraction at a shear rate of 12.56 s−1.
Figure 3Influence of palm oil on k a at varying agitation and aeration rate.
The enhancement factor of k a at 10% palm oil fraction.
| Agitation rate | Aeration rate | ||
|---|---|---|---|
| 0.25 vvm | 0.75 vvm | 1.25 vvm | |
| ( | ( | ( | |
| 400 rpm | 2.23 | 2.95 | 2.71 |
| 600 rpm | 2.85 | 2.65 | 2.59 |
| 800 rpm | 1.68 | 1.49 | 1.52 |
Figure 4Influence of palm oil on gas holdup at varying agitation and aeration rate.
The empirical constants for k a reported in the literature and in the current study.
| Reference | Liquid system | Type of impeller | Constant | Constant | Constant | Valid for |
| Average error, % | Correlation |
|---|---|---|---|---|---|---|---|---|---|
| [ | Perfluorocarbon (PFC) in YPD medium with inactive cells | Rushton turbine | 0.302 | 0.699 | −1.378 | NA | NA | 15.7 |
Nielsen et al. [ |
| [ | n-Hexadecane in broth medium | Rushton turbine | 0.31 | 0.70 | 1.70 | NA | NA | NA | |
| [ | Methyl ricinoleate in | Rushton turbine | 0.6 | 0.8 | −22 | NA | NA | NA | |
| [ | Tween 80 in | Rushton turbine | 0.4 | 0.7 | −449 | NA | NA | NA | |
|
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| Current study | Xanthan gum solution with 0 to 10% palm oil fraction | Rushton turbine | 0.4773 | 0.1620 | −6.6029 | 0.079 to 1.11 | 0.77 | 58.75 |
Nielsen et al. [ |
| Xanthan gum solution with 0% palm oil fraction | Rushton turbine | 0.6674 | 0.2076 | −6.6029 | 0.141 to 1.11 | 0.89 | 46.55 | ||
|
| |||||||||
| Current study | Xanthan gum solution with 5% palm oil fraction | Rushton turbine | 0.5361 | 0.1225 | −6.1622 | 0.094 to 0.89 | 0.78 | 58.74 | |
| Xanthan gum solution with 10% palm oil fraction | Rushton turbine | 0.4078 | 0.1702 | −8.2896 | 0.079 to 0.89 | 0.68 | 46.47 | ||
| Xanthan gum solution with 15% palm oil fraction | Rushton turbine | 0.4401 | 0.4253 | −2.7865 | 0.058 to 0.83 | 0.74 | 40.93 | Nielsen et al. [ | |
| Xanthan gum solution with 20% palm oil fraction | Rushton turbine | 0.4885 | 0.2777 | −1.6270 | 0.039 to 0.72 | 0.98 | 15.59 | ||
| Xanthan gum solution with 50% palm oil fraction | Rushton turbine | 0.4334 | 0.1605 | −0.0697 | 0.031 to 0.64 | 0.86 | 34.40 | ||
|
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| Current study | Xanthan gum solution with 0% palm oil fraction | Rushton turbine | 0.6674 | 0.2076 | — | 0.141 to 1.11 | 0.89 | 46.55 |
Cooper et al. [ |
| Xanthan gum solution with 5% palm oil fraction | Rushton turbine | 0.5361 | 0.1225 | — | 0.094 to 0.89 | 0.78 | 58.73 | ||
| Xanthan gum solution with 10% palm oil fraction | Rushton turbine | 0.4078 | 0.1702 | — | 0.079 to 0.89 | 0.68 | 46.47 | ||
| Xanthan gum solution with 15% palm oil fraction | Rushton turbine | 0.5343 | 0.3054 | — | 0.058 to 0.83 | 0.96 | 18.80 | ||
| Xanthan gum solution with 20% palm oil fraction | Rushton turbine | 0.4994 | 0.2740 | — | 0.039 to 0.72 | 0.98 | 14.00 | ||
| Xanthan gum solution with 50% palm oil fraction | Rushton turbine | 0.4458 | 0.3391 | — | 0.031 to 0.64 | 0.91 | 27.67 | ||
The empirical constants for ε by (11) reported in the literature and in the current study.
| Reference | Liquid system | Constant | Constant | Constant | Type of impeller |
| Average relative error (%) | Valid for |
|---|---|---|---|---|---|---|---|---|
| [ | Water | — | 0.25 | 0.75 | Flat blade turbine | NA | NA | NA |
| [ | Na2SO4 | — | 0.4903 | 0.5788 | Rushton turbine | NA | 9.3 | NA |
| [ | Tap water | — | 0.478 | 0.4910 | Disc turbine-pitched blade | 0.98 | NA | NA |
| [ | Tap water | — | 0.4244 | 0.6904 | Rushton turbine | 0.98 | NA | NA |
|
| ||||||||
| Current study | Xanthan gum solution with 0% palm oil fraction | 0.0080 | 0.2385 | 0.2180 | Rushton turbine | 0.74 | 14.47 | 0.141–1.11 |
| Xanthan gum solution with 5% palm oil fraction | 0.0061 | 0.3501 | 0.1435 | Rushton turbine | 0.90 | 12.15 | 0.094–0.89 | |
| Xanthan gum solution with 10% palm oil fraction | 0.0065 | 0.3528 | 0.1626 | Rushton turbine | 0.93 | 10.87 | 0.079–0.89 | |
| Xanthan gum solution with 15% palm oil fraction | 0.0161 | 0.2507 | 0.0773 | Rushton turbine | 0.98 | 3.27 | 0.058–0.83 | |
| Xanthan gum solution with 20% palm oil fraction | 0.0119 | 0.2558 | 0.1395 | Rushton turbine | 0.96 | 5.99 | 0.039–0.72 | |
| Xanthan gum solution with 50% palm oil fraction | 0.0178 | 0.1890 | 0.1690 | Rushton turbine | 0.84 | 12.06 | 0.031–0.64 | |