Difference between revisions of "Team:NCKU Tainan/Results"

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                                     </p></br>
 
                                     </p></br>
  
                                     <h8>Incubation under different CO2 concentration</h8></br></br>
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                                     <h8>Incubation under different CO<sub>2</sub> concentration</h8></br></br>
  
 
                                     <p class="pcontent">
 
                                     <p class="pcontent">
                                         Finally, we compare the XUI under different CO2 concentration. We incubated the
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                                         Finally, we compare the XUI under different CO<sub>2</sub> concentration. We incubated the
                                         bacteria in normal incubator without CO2 input and the cell culture incubator
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                                         bacteria in normal incubator without CO<sub>2</sub> input and the cell culture incubator
                                         that maintains 5% C02 concentration. We observed that the strain in 5% CO2
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                                         that maintains 5% CO<sub>2</sub> concentration. We observed that the strain in 5% CO<sub>2</sub>
                                         incubator has lower the XUI. The supply of sufficient CO2 can increase the
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                                         incubator has lower the XUI. The supply of sufficient CO<sub>2</sub> can increase the
 
                                         efficiency of the bypass pathway and enhance the growth. We can concluded that
 
                                         efficiency of the bypass pathway and enhance the growth. We can concluded that
 
                                         our constructed pathway can be utilize carbon dioxide as one of its carbon
 
                                         our constructed pathway can be utilize carbon dioxide as one of its carbon
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                                     <p class="pcontent">
 
                                     <p class="pcontent">
 
                                         Fig. 16 The comparison of the growth and the XUI of the BL21(DE3) that contains
 
                                         Fig. 16 The comparison of the growth and the XUI of the BL21(DE3) that contains
                                         all three enzymes in normal incubator and 5% CO2 incubator. The strain grown in
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                                         all three enzymes in normal incubator and 5% CO<sub>2</sub> incubator. The strain grown in
                                         CO2 incubator shows better growth and lower XUI, which indicates that our
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                                         CO<sub>2</sub> incubator shows better growth and lower XUI, which indicates that our
                                         strain can use CO2 as a carbon source in the presence of high CO2 level.
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                                         strain can use CO<sub>2</sub> as a carbon source in the presence of high CO<sub>2</sub> level.
 
                                     </p>
 
                                     </p>
  
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                                         To find out how much and how efficient genetically engineered E. coli can fix
 
                                         To find out how much and how efficient genetically engineered E. coli can fix
 
                                         carbon dioxide, we use the material balance concept to evaluate the
 
                                         carbon dioxide, we use the material balance concept to evaluate the
                                         heterotrophic CO2 fixation process. Consider a system composed of a single
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                                         heterotrophic CO<sub>2</sub> fixation process. Consider a system composed of a single
 
                                         component, the general material balance can be written as:
 
                                         component, the general material balance can be written as:
  
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                                         $${=\ 0.5558\ {g\over L ∙hr}}$$
 
                                         $${=\ 0.5558\ {g\over L ∙hr}}$$
  
                                         To find out how much carbon in biomass comes from the carbon in CO2 captured by
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                                         To find out how much carbon in biomass comes from the carbon in CO<sub>2</sub> captured by
 
                                         the heterotrophic microbes, divide the net amount of carbon fixed by the mass
 
                                         the heterotrophic microbes, divide the net amount of carbon fixed by the mass
 
                                         percent of carbon in biomass.
 
                                         percent of carbon in biomass.

Revision as of 19:59, 13 October 2018

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