Difference between revisions of "Team:Nanjing-China/Team"

Line 163: Line 163:
 
</style>
 
</style>
 
<script type="text/javascript" src="https://2017.igem.org/Template:Nanjing-China/Javascript/1?action=raw&ctype=text/javascript"></script>
 
<script type="text/javascript" src="https://2017.igem.org/Template:Nanjing-China/Javascript/1?action=raw&ctype=text/javascript"></script>
 +
<script src="file:///C|/Users/dell-pc/AppData/Roaming/Adobe/Dreamweaver CS6/zh_CN/Configuration/Temp/Assets/eam1B21.tmp/SpryEffects.js" type="text/javascript"></script>
 
<script type="text/javascript">
 
<script type="text/javascript">
 
function menuFix(){
 
function menuFix(){
Line 192: Line 193:
 
{
 
{
 
Spry.Effect.DoBlind(targetElement, {duration: duration, from: from, to: to, toggle: toggle});
 
Spry.Effect.DoBlind(targetElement, {duration: duration, from: from, to: to, toggle: toggle});
 +
}
 +
function MM_effectShake(targetElement)
 +
{
 +
Spry.Effect.DoShake(targetElement);
 
}
 
}
 
</script>
 
</script>
Line 212: Line 217:
 
         <li><a href="https://2018.igem.org/Team:Nanjing-China/Basic_Part">Basic_Part</a></li>
 
         <li><a href="https://2018.igem.org/Team:Nanjing-China/Basic_Part">Basic_Part</a></li>
 
             <li><a href="https://2018.igem.org/Team:Nanjing-China/Improved_Parts">Improved</a></li>
 
             <li><a href="https://2018.igem.org/Team:Nanjing-China/Improved_Parts">Improved</a></li>
</ul>
+
  </ul>
            </li>
+
        </li>
 
     <li><a href="https://2018.igem.org/Team:Nanjing-China/Sliver">JUDGE</a>
 
     <li><a href="https://2018.igem.org/Team:Nanjing-China/Sliver">JUDGE</a>
 
     <ul>
 
     <ul>
Line 255: Line 260:
 
production to a more efficient level especially those dependent on metal catalyst. Compared with the traditional ones, biocatalyst can carry out reactions with low pollution, low energy consumption and high specificity. We manage to make our model organisms play the role of assembling metal ions and attach to the nucleation of them which thus form biohybrid whole-cell catalysis systems. As long as a collector is designed, we will make a portable whole-cell reacting system possible, which reactions with high efficiency.</p>
 
production to a more efficient level especially those dependent on metal catalyst. Compared with the traditional ones, biocatalyst can carry out reactions with low pollution, low energy consumption and high specificity. We manage to make our model organisms play the role of assembling metal ions and attach to the nucleation of them which thus form biohybrid whole-cell catalysis systems. As long as a collector is designed, we will make a portable whole-cell reacting system possible, which reactions with high efficiency.</p>
 
     <a href="https://2018.igem.org/Team:Nanjing-China/Members"><img src="https://static.igem.org/mediawiki/2018/5/57/T--Nanjing-China--all1.jpg" width="80%" /></a>
 
     <a href="https://2018.igem.org/Team:Nanjing-China/Members"><img src="https://static.igem.org/mediawiki/2018/5/57/T--Nanjing-China--all1.jpg" width="80%" /></a>
     <p><div style="width:70px; float:left"><font size="120%">☝</font></div><h4>Click the photo to see more details about our team</h4></p>
+
     <p><div style="width:50px; float:left" onload="MM_effectShake(this)"><font size="120%">☝</font></div><h4>Click the photo to see more details about our team</h4></p>
 
     </div>
 
     </div>
 
 
Line 290: Line 295:
 
         </div>
 
         </div>
 
       </div>
 
       </div>
      </div>
+
    </div>
 
       <div class="f-b"><img src="https://static.igem.org/mediawiki/2017/9/91/T-Nanjing-China-foot.png" width="100%" /></div>
 
       <div class="f-b"><img src="https://static.igem.org/mediawiki/2017/9/91/T-Nanjing-China-foot.png" width="100%" /></div>
 
   </div>
 
   </div>

Revision as of 11:59, 13 April 2018

无标题文档

Abstract

Our team Nanjing-China 2018 intends to develop a whole-cell catalysis system targeted at developing industrial production to a more efficient level especially those dependent on metal catalyst. Compared with the traditional ones, biocatalyst can carry out reactions with low pollution, low energy consumption and high specificity. We manage to make our model organisms play the role of assembling metal ions and attach to the nucleation of them which thus form biohybrid whole-cell catalysis systems. As long as a collector is designed, we will make a portable whole-cell reacting system possible, which reactions with high efficiency.

Click the photo to see more details about our team