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<div class="col-2 side"> | <div class="col-2 side"> | ||
<div id="sidelist" class="list-group"> | <div id="sidelist" class="list-group"> | ||
− | <a class="list-group-item list-group-item-action" href="# | + | <a class="list-group-item list-group-item-action" href="#Accomplishment">Accomplishment</a> |
− | <a class="list-group-item list-group-item-action" href="# | + | <a class="list-group-item list-group-item-action" href="#Introduction">Introduction</a> |
− | <a class="list-group-item list-group-item-action" href="# | + | <a class="list-group-item list-group-item-action" href="#Device_design">Device design</a> |
− | <a class="list-group-item list-group-item-action" href="# | + | <a class="list-group-item list-group-item-action" href="#Bioreactor">Bioreactor</a> |
− | <a class="list-group-item list-group-item-action" href="# | + | <a class="list-group-item list-group-item-action" href="#Nutrient_tank">Nutrient tank</a> |
− | <a class="list-group-item list-group-item-action" href="# | + | <a class="list-group-item list-group-item-action" href="#Materials_required">Materials required</a> |
<a class="list-group-item list-group-item-action" href="#"><i class="fa fa-arrow-up fa-1x" | <a class="list-group-item list-group-item-action" href="#"><i class="fa fa-arrow-up fa-1x" | ||
aria-hidden="true"></i></a> | aria-hidden="true"></i></a> | ||
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− | <div id=" | + | <div id="Accomplishment"> |
</br></br></br> | </br></br></br> | ||
<h3>Accomplishment</h3> | <h3>Accomplishment</h3> | ||
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<li>Implemented Bio-safety to our device.</li> | <li>Implemented Bio-safety to our device.</li> | ||
<li>Integrated with <a href="https://2018.igem.org/Team:NCKU_Tainan/Model" style="color:#28ff28;">modeling</a>.</li> | <li>Integrated with <a href="https://2018.igem.org/Team:NCKU_Tainan/Model" style="color:#28ff28;">modeling</a>.</li> | ||
− | <li>Installation of sensors: pH Meter, Temperature Sensor, CO<sub>2</sub> Sensor and Wi-Fi Sensor.</li> | + | <li>Installation of sensors: pH Meter, Temperature Sensor, CO<sub>2</sub> Sensor |
+ | and Wi-Fi Sensor.</li> | ||
</ol> | </ol> | ||
</div> | </div> | ||
− | <div id=" | + | <div id="Introduction"> |
</br></br></br> | </br></br></br> | ||
<h3>Introduction</h3> | <h3>Introduction</h3> | ||
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industrial IGCC system. And we used the Arduino to sense the <a href="#list-item-6" | industrial IGCC system. And we used the Arduino to sense the <a href="#list-item-6" | ||
style="color:#28ff28;">pH</a>, | style="color:#28ff28;">pH</a>, | ||
− | <a href="#list-item-7" style="color:#28ff28;">CO<sub>2</sub> concentration</a> and <a href="#list-item-8" | + | <a href="#list-item-7" style="color:#28ff28;">CO<sub>2</sub> concentration</a> |
− | + | and <a href="#list-item-8" style="color:#28ff28;">temperature</a> then use the | |
− | + | <a href="#list-item-9" style="color:#28ff28;">wi-fi | |
sensor</a> to upload to the <a href="https://2018.igem.org/Team:NCKU_Tainan/Software#list-item-3" | sensor</a> to upload to the <a href="https://2018.igem.org/Team:NCKU_Tainan/Software#list-item-3" | ||
style="color:#28ff28;">database</a>.Last but not least, we can monitor the | style="color:#28ff28;">database</a>.Last but not least, we can monitor the | ||
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− | <div id=" | + | <div id="Device_design"> |
</br></br></br> | </br></br></br> | ||
<h3>Device design</h3> | <h3>Device design</h3> | ||
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− | <div id=" | + | <div id="Bioreactor"> |
</br></br></br> | </br></br></br> | ||
<h3>Bioreactor</h3> | <h3>Bioreactor</h3> | ||
<div id="pt"> | <div id="pt"> | ||
− | + | <p class="pcontent">We developed a closed bioreactor system and implemented online | |
− | + | monitoring system | |
+ | which can live monitoring several environmental parameters. Here is the detail | ||
+ | of our bioreactor.</p> | ||
</div> | </div> | ||
<div class="carousel-item active" style="background-image: url('http://placehold.it/1900x1080')"></div> | <div class="carousel-item active" style="background-image: url('http://placehold.it/1900x1080')"></div> | ||
<div id="pt"> | <div id="pt"> | ||
− | + | <p class="pcontent">Gas inlet port are located on the bioreactor’s lower part while | |
− | + | outlet port are | |
− | + | located on the bioreactor’s upper lid. As low concentration CO2 enters the | |
− | + | bioreactor, it flows | |
− | + | through the diffuser refiner and dissolves in the buffered medium to form acid. | |
− | + | A pH sensor and | |
− | + | temperature sensor is installed to monitor the bioreactor tank for further | |
− | + | control implementation. | |
+ | Besides, the CO2 concentration level of exhaust gas is monitored by a CO2 gas | ||
+ | sensor, which is | ||
+ | mounted on the upper lid. These sensor’s output is connected to an Arduino | ||
+ | analog input and sensor | ||
+ | readings are displayed on a serial LCD which is attached on the lid of | ||
+ | bioreactor. The data is then | ||
+ | uploaded in real time to a web server via WiFi by using Arduino WiFi Shield.</br></p> | ||
</div> | </div> | ||
</br> | </br> | ||
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<div class="carousel-item active" style="background-image: url('http://placehold.it/1900x1080')"></div> | <div class="carousel-item active" style="background-image: url('http://placehold.it/1900x1080')"></div> | ||
<div id="pt"> | <div id="pt"> | ||
− | + | <p class="pcontent">To prevent sedimentation of cells at the bottom of bioreactor, | |
− | + | we build our own | |
− | + | 3D printed slow speed magnetic stirrer which permits gentle mixing of | |
− | + | microcarrier cell cultures. | |
− | + | The 3D printed magnet bed is designed specifically for two magnets and can be | |
− | + | fitted on the DC | |
− | + | motor. The stirrer works by using a DC motor to spin two magnets with opposite | |
+ | polarity, which | ||
+ | could create a magnetic field in the bioreactor and cause the stir bar to spin | ||
+ | and mix the | ||
+ | contents. For controlling the speed of the DC motor, we use Arduino and L298N | ||
+ | to control the input | ||
+ | voltage to the motor by using PWM signal.</p> | ||
</div> | </div> | ||
− | + | </div> | |
− | + | ||
− | + | <div id="list-item-5"> | |
</br></br></br> | </br></br></br> | ||
− | <h3>Nutrient tank | + | <h3>Nutrient tank</h3> |
<div id="pt"> | <div id="pt"> | ||
− | + | <p class="pcontent">Besides, we also implemented fed-batch culture system in our | |
− | + | design. Nutrients are fed to the bioreactor during cultivation to prevent | |
− | + | nutrient depletion. The nutrients are pumped into the growth chamber at a rate | |
+ | proportional to the growth factor of the culture, which is determined | ||
+ | experimentally through the doubling time of the particular bacterial strain.</p> | ||
</div> | </div> | ||
− | + | </div> | |
− | + | <div id="Materials_required"> | |
</br></br></br></br> | </br></br></br></br> | ||
<h3>Materials required</h3> | <h3>Materials required</h3> | ||
<div id="pt"> | <div id="pt"> | ||
− | + | <ul> | |
− | + | <li>Acrylic Sheet</li> | |
− | + | <li>Arduino UNO</li> | |
− | + | <li>Power Supply</li> | |
− | + | <li>Batteries</li> | |
− | + | <li>Rotameter</li> | |
− | + | <li>pH meter</li> | |
− | + | <li>Thermometer(DS18B20)</li> | |
− | + | <li>CO2 sensor(MG811)</li> | |
− | + | <li>Wi-fi sensor(ESP8266 NodeMcu)</li> | |
− | + | <li>Geared DC Motor</li> | |
− | + | <li>Tubes</li> | |
− | + | <li>Magnets</li> | |
− | + | <li>3D Printed Structure</li> | |
− | + | <li>Nuts and Screws</li> | |
− | + | <li>Wires</li> | |
− | + | <li>Pumps</li> | |
− | + | </ul> | |
− | + | </br></br></br></br> | |
</div> | </div> | ||
− | + | </div> | |
</div> | </div> | ||
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</div> | </div> | ||
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<script src="https://2018.igem.org/Team:NCKU_Tainan/js/frame/T--NCKU_Tainan--jquery-1_12_4_min_js?action=raw&ctype=text/javascript"></script> | <script src="https://2018.igem.org/Team:NCKU_Tainan/js/frame/T--NCKU_Tainan--jquery-1_12_4_min_js?action=raw&ctype=text/javascript"></script> | ||
<script src="https://2018.igem.org/Template:NCKU_Tainan/js/bootstrap_min_js?action=raw&ctype=text/javascript"></script> | <script src="https://2018.igem.org/Template:NCKU_Tainan/js/bootstrap_min_js?action=raw&ctype=text/javascript"></script> |
Revision as of 06:28, 6 October 2018
Hardware