Difference between revisions of "Team:SHSBNU China/Applied Design"

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<h3>★  ALERT! </h3>
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<a href="https://2018.igem.org/Team:SHSBNU_China">
<p>This page is used by the judges to evaluate your team for the <a href="https://2018.igem.org/Judging/Medals">medal criterion</a> or <a href="https://2018.igem.org/Judging/Awards"> award listed below</a>. </p>
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<p> Delete this box in order to be evaluated for this medal criterion and/or award. See more information at <a href="https://2018.igem.org/Judging/Pages_for_Awards"> Instructions for Pages for awards</a>.</p>
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<h6 id="menu_intro">Applied Design</h6>
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<a class="snd_class" href="https://2018.igem.org/Team:SHSBNU_China/Experiments">Experiment</a>
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<h1>Applied design - Filter </h1>
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<div class="column full_size">
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<div id="sec_content">
<h1>Applied Design</h1>
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<div class="content">
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<img class="pictures" id = "" src="https://static.igem.org/mediawiki/2018/f/fc/T--SHSBNU_China--Filter.jpg"/>
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<p class="pic_text">The Schematic diagram of the Filter</p>
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<p class="text">
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In order to make the decomposition process more effective, our team comes up with the idea about making a Filter via Bluepha capsule. The Filter will be divided into six parts:
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<ol class="content_list">
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<li style="margin-left:4vw" class="content_list">
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An upper water tube which inflow the sewage into Blupha capsules
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</li>
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<li style="margin-left:4vw" class="content_list">
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The first strainer that filtrate impurities which might physically destroy the Blupha capsule like solid particles, stringer, and soft colloid
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</li>
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<li style="margin-left:4vw" class="content_list">
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Blupha capsules is PHA beads covered with E. coli that express laccase and form biofilm. In order to make a more stable structure, the Bluepha capsule will be arranged densely. As the sewage flow through the plant, Bluepha capsule would decompose the sewage efficiently
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</li>
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<li style="margin-left:4vw" class="content_list">
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An outer tube that allows sewage to flow through the two strainers and Blupha capsules
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</li>
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<li style="margin-left:4vw" class="content_list">
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A tube that would expel the degraded sewage out of the water-filter
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</li>
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<li style="margin-left:4vw" class="content_list">
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A strainer that will hold the bacteria and prevent the bacteria from flowing out of the device
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<p class="text">
<h3>Best Applied Design Special Prize</h3>
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As sewage inflow the Filter through the upper water tube, the impurities in the sewage will be fil-trated by the strainer. Then the sewage without impurities would flow into the part with Bluepha capsule, so the dyes in sewage will be decomposed effectively. After the decomposition, the sew-age without dyes will flow out of the Filter through the Filter. The flow velocity will be controlled by a flow control valve.  
 
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</p>
<p>This is a prize for the team that has developed a synbio product to solve a real world problem in the most elegant way. The students will have considered how well the product addresses the problem versus other potential solutions, how the product integrates or disrupts other products and processes, and how its lifecycle can more broadly impact our lives and environments in positive and negative ways.
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</div>
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To compete for the <a href="https://2018.igem.org/Judging/Awards">Best Applied Design prize</a>, please describe your work on this page and also fill out the description on the <a href="https://2018.igem.org/Judging/Judging_Form">judging form</a>.
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<br><br>
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You must also delete the message box on the top of this page to be eligible for this prize.
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<p style="font-size:1vw;font-family:'Times New Roman';font-style:italic;color:#666666">SHSBNU_China 2018, Created by Azir</p>
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<div class="highlight decoration_A_full">
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<h3>Inspiration</h3>
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<p>Take a look at what some teams accomplished for this prize.</p>
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<ul>
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<li><a href="https://2016.igem.org/Team:NCTU_Formosa/Design">2016 NCTU Formosa</a></li>
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<li><a href="https://2016.igem.org/Team:HSiTAIWAN/Product?locationId=Design">2016 HSiTAIWAN</a></li>
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<li><a href="https://2016.igem.org/Team:Pasteur_Paris/Design">2016 Pasteur Paris</a></li>
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Latest revision as of 01:21, 18 October 2018

Section Sample

Applied design - Filter

The Schematic diagram of the Filter

In order to make the decomposition process more effective, our team comes up with the idea about making a Filter via Bluepha capsule. The Filter will be divided into six parts:

  1. An upper water tube which inflow the sewage into Blupha capsules
  2. The first strainer that filtrate impurities which might physically destroy the Blupha capsule like solid particles, stringer, and soft colloid
  3. Blupha capsules is PHA beads covered with E. coli that express laccase and form biofilm. In order to make a more stable structure, the Bluepha capsule will be arranged densely. As the sewage flow through the plant, Bluepha capsule would decompose the sewage efficiently
  4. An outer tube that allows sewage to flow through the two strainers and Blupha capsules
  5. A tube that would expel the degraded sewage out of the water-filter
  6. A strainer that will hold the bacteria and prevent the bacteria from flowing out of the device

As sewage inflow the Filter through the upper water tube, the impurities in the sewage will be fil-trated by the strainer. Then the sewage without impurities would flow into the part with Bluepha capsule, so the dyes in sewage will be decomposed effectively. After the decomposition, the sew-age without dyes will flow out of the Filter through the Filter. The flow velocity will be controlled by a flow control valve.