Difference between revisions of "Team:ShanghaitechChina/Design"

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<a href="#Demonstrated Functionality" >Demonstrated Functionality</a>
 
<a href="#Demonstrated Functionality" >Demonstrated Functionality</a>
 
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<a href="#Methods"style="font-size:14px" >Methods</a>
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<a href="#Instrument" style="font-size:14px">Instrument</a>
 
<a href="#Instrument" style="font-size:14px">Instrument</a>
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<p id="A Functional Applied Design"></p>   
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     <div class="col-lg-12">      <center> <h1 >Demonstrated Functionality</h1></center>
 
     <div class="col-lg-12">      <center> <h1 >Demonstrated Functionality</h1></center>
 
<h2> Methods </h2>
 
<h2> Methods </h2>
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In the activity assay of the hydrogenase in producing hydrogen, the system goes through three periods of “light-on and light-off”. The result (see below) shows the stability of the system and the reversible catalytic activity of the hydrogenase of the reaction, 2H+ + 2e-  ⇿ H2 .<p></p>
 
In the activity assay of the hydrogenase in producing hydrogen, the system goes through three periods of “light-on and light-off”. The result (see below) shows the stability of the system and the reversible catalytic activity of the hydrogenase of the reaction, 2H+ + 2e-  ⇿ H2 .<p></p>
 
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<h2> Instrument</h2>
 
<h2> Instrument</h2>
  
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<center><p style="text-align:center"><b>Figure 1</b> Apparatus of the hydrogen production assay.</p></center>
 
<center><p style="text-align:center"><b>Figure 1</b> Apparatus of the hydrogen production assay.</p></center>
 
It contains (1) an anaerobic reaction container which is a transparent circular cuvette that allows light to go through; (2) a light source in our hydrogen production assay acting as a substitute for the real sun. (We chose a high-power white LED light, set 28cm away from the reaction container for a even distribution of photons); (3) a hydrogen electrode linked to its inner sensor inserted into the reaction container to measure the realtime concentration of hydrogen; (4) a data hub; (5) a computer connected to the hub to record the data and generate the curve of concentration variation within a period of time. <p></p>
 
It contains (1) an anaerobic reaction container which is a transparent circular cuvette that allows light to go through; (2) a light source in our hydrogen production assay acting as a substitute for the real sun. (We chose a high-power white LED light, set 28cm away from the reaction container for a even distribution of photons); (3) a hydrogen electrode linked to its inner sensor inserted into the reaction container to measure the realtime concentration of hydrogen; (4) a data hub; (5) a computer connected to the hub to record the data and generate the curve of concentration variation within a period of time. <p></p>
 
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<p id="Results" style="margin-bottom:80px"></p>
  
 
<h2> Results </h2>
 
<h2> Results </h2>

Revision as of 20:30, 19 October 2016

igem2016:ShanghaiTech