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

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        <h1 class="head">Entrepreneurship</h1>
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            <h1 class="head">Entrepreneurship</h1>
 
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                             <a class="list-group-item list-group-item-action" href="#Overview">Overview</a>
 
                             <a class="list-group-item list-group-item-action" href="#Overview">Overview</a>
 
                             <a class="list-group-item list-group-item-action" href="#Entrepreneurship">Entrepreneurship</a>
 
                             <a class="list-group-item list-group-item-action" href="#Entrepreneurship">Entrepreneurship</a>
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                                     <img class="bigimg" src="https://static.igem.org/mediawiki/2018/5/57/T--NCKU_Tainan--product.png" alt="product design">
 
                                     <img class="bigimg" src="https://static.igem.org/mediawiki/2018/5/57/T--NCKU_Tainan--product.png" alt="product design">
 
                                     <p class="pcenter"> Fig.1 Flow chart of <i>E. coli</i> carbon utilization system </p>                                     
 
                                     <p class="pcenter"> Fig.1 Flow chart of <i>E. coli</i> carbon utilization system </p>                                     
                                      <ol>
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                                    <ol>
 
                                         <li class="licontent">Product design</li>
 
                                         <li class="licontent">Product design</li>
                                         <p class="pcontent">In this project, we, the NCKU Tainan Team, have proposed an alternative way to reduce the emission of Carbon dioxide (CO<sub>2</sub>). Referring to the opinions and feedback from many industry experts and professors, we design a new factory flow to capture CO<sub>2</sub> by <i>E. coli</i>. Not only our device meets the specs to commercialize, but it also demonstrates high cost performance.  
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                                         <p class="pcontent">In this project, we, the NCKU Tainan Team,  
 +
                                            have proposed an alternative way to reduce the emission of Carbon dioxide (CO<sub>2</sub>).  
 +
                                            Referring to the opinions and feedback from many industry experts and professors,  
 +
                                            we design a new factory flow to capture CO<sub>2</sub> by <i>E. coli</i>.  
 +
                                            Not only our device meets the specs to commercialize, but it also demonstrates  
 +
                                            high cost performance.  
 
                                         </p>
 
                                         </p>
                                         <p class="pcontent">The emission of CO<sub>2</sub> has been a serious problem for a century that causes global warming and severe climate change. Even though many ways have been tried to reduce it, the generation of CO<sub>2</sub> primarily from industry is still overwhelming. Therefore, scientists and governments have been working hard to find solutions to tackle the problem.  
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                                         <p class="pcontent">The emission of CO<sub>2</sub> has been a serious problem for a century  
 +
                                            that causes global warming and severe climate change. Even though many ways have been tried to  
 +
                                            reduce it, the generation of CO<sub>2</sub> primarily from industry is still overwhelming.  
 +
                                            Therefore, scientists and governments have been working hard to find solutions to tackle  
 +
                                            the problem.  
 
                                         </p>
 
                                         </p>
 
                                         <li class="licontent">Enterprise interview</li>
 
                                         <li class="licontent">Enterprise interview</li>
 
                                         <p class="pcontent"> We complete the whole <a class="link" href="https://2018.igem.org/Team:NCKU_Tainan/Applied_Design">product design </a> and propose to several industrial. Through the interview the feedback form the industrial, we were able to stand in the site of customer and then improve our product. We found out what we were weak in the design and then figured out the solutions with the enterprise support.  
 
                                         <p class="pcontent"> We complete the whole <a class="link" href="https://2018.igem.org/Team:NCKU_Tainan/Applied_Design">product design </a> and propose to several industrial. Through the interview the feedback form the industrial, we were able to stand in the site of customer and then improve our product. We found out what we were weak in the design and then figured out the solutions with the enterprise support.  
 
                                         </p>
 
                                         </p>
<ol>
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                                        <ol>
                                        <li class="licontent"> Our major potential client <a class="link" href="#CSC">China Steel Coporation</a>, which has a large amount of CO<sub>2</sub> emission every year.
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                                            <li class="licontent"> Our major potential client <a class="link" href="#CSC">
                                        </li>
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                                                China Steel Coporation</a>, which has a large amount of CO<sub>2</sub> emission every year.
                                        <li class="licontent"> The national science research and development institute in Taiwan                                             
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                                            </li>
<a class="link" href="#ITRI">Industrial Technology Research Institute</a>, which has the advance technology solving excess CO<sub>2</sub> emission problem.
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                                            <li class="licontent"> The national science research and development institute in Taiwan                                             
                                        </li>
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                                                <a class="link" href="#ITRI">Industrial Technology Research Institute</a>,  
                                      <li class="licontent"> An industry-university cooperative research project <a class="link" href="#ANNA">Biofixation of flue gas CO<sub>2</sub> with microalgae </a>, which is a relative project to us in Bio-method dealing CO<sub>2</sub> problem.
+
                                                which has the advance technology solving excess CO<sub>2</sub> emission problem.
                                        </li>
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                                            </li>
                                        <li class="licontent">  We collaborate with <a class="link" href="#MBR"> King Membrane Energy Technology Inc</a>, which  work for replacing traditional energy-using distillation with advanced energy-saving membrane technology.
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                                            <li class="licontent"> An industry-university cooperative research project  
                                        </li>   
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                                                <a class="link" href="#ANNA">Biofixation of flue gas CO<sub>2</sub> with microalgae </a>,  
</ol>                                                                                                   
+
                                                which is a relative project to us in Bio-method dealing CO<sub>2</sub> problem.
                                      </ol>
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                                            </li>
                      
+
                                            <li class="licontent">  We collaborate with <a class="link" href="#MBR">  
 +
                                                King Membrane Energy Technology Inc</a>, which  work for replacing traditional  
 +
                                                energy-using distillation with advanced energy-saving membrane technology.
 +
                                            </li>   
 +
                                        </ol>                                                                                                   
 +
                                    </ol>
 
                                 </div>
 
                                 </div>
  
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                                     <p class="pcenter">Fig.2 Picture of CSC interview</p>
 
                                     <p class="pcenter">Fig.2 Picture of CSC interview</p>
 
                                     <p class="pcontent">Meeting with experts and stakeholders is important in shaping our project to fulfill the needs of our target user.  
 
                                     <p class="pcontent">Meeting with experts and stakeholders is important in shaping our project to fulfill the needs of our target user.  
                                    China Steel Corporation is the largest integrated steel Manufacturer in Taiwan. Also, they had been adopting the algal bio-sequestration by  
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                                        China Steel Corporation is the largest integrated steel Manufacturer in Taiwan. Also, they had been adopting the algal bio-sequestration by  
                                    cooperating with the research group at our university. Click here to know more in Entrepreneurship:Process, Suggestion and question and  
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                                        cooperating with the research group at our university. Click here to know more in Entrepreneurship:Process, Suggestion and question and  
                                    Interview record.
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                                        Interview record.
 
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                                     </p>
 
                                     </p>
 
                                     <h5 class="boldh5">Process</h5>
 
                                     <h5 class="boldh5">Process</h5>
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                                                     <img class="bigimg" src="https://static.igem.org/mediawiki/2018/f/f6/T--NCKU_Tainan--applied_design_csc4.png">
 
                                                     <img class="bigimg" src="https://static.igem.org/mediawiki/2018/f/f6/T--NCKU_Tainan--applied_design_csc4.png">
 
                                                 </div>
 
                                                 </div>
                                              </div>
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                                            </div>
                                            </div>
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                                        </div>
                                            </div>  
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                                    </div>  
                                          </div>
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                                </div>
 
                                 <div>
 
                                 <div>
 
                                     <h5 class="smalltitle" id="ITRI">International Technology Research Institute</h5>
 
                                     <h5 class="smalltitle" id="ITRI">International Technology Research Institute</h5>
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                                     <h5 class="boldh5">Process</h5>
 
                                     <h5 class="boldh5">Process</h5>
                                     <p class="pcontent">We attend the Biotechnology Green Energy Expo and have a business matchmaking with International Technology Research Institute (ITRI). The Dr. Cheng was a manager of Carbon Capture & Storage (CCS) Application Project in Green Energy and Environment Research Laboratories of ITRI. He gave a short speech about the condition of CCS in Taiwan. CCS technology is a relevant technology with our <i>E. coli</i> carbon utilization system. Therefore, through business matchmaking, we introduce our project and all the design including what we improve after the customer investigation with CSC.
+
                                     <p class="pcontent">We attend the Biotechnology Green Energy Expo and have a  
 +
                                        business matchmaking with International Technology Research Institute (ITRI).  
 +
                                        The Dr. Cheng was a manager of Carbon Capture & Storage (CCS) Application Project  
 +
                                        in Green Energy and Environment Research Laboratories of ITRI.  
 +
                                        He gave a short speech about the condition of CCS in Taiwan.  
 +
                                        CCS technology is a relevant technology with our <i>E. coli</i> carbon utilization system.  
 +
                                        Therefore, through business matchmaking, we introduce our project and all the design  
 +
                                        including what we improve after the customer investigation with CSC.
 
                                     </p>
 
                                     </p>
 
                                    
 
                                    
 
                                     <h5 class="boldh5">Suggestion and Question</h5>
 
                                     <h5 class="boldh5">Suggestion and Question</h5>
                                     <p class="pcontent">The currently solution in Taiwan is CCS, however, the policy and the inhabitant are big challenge of CCS technology. ITRI had cooperated with lots of industrial and academic institutes and developed advance CCS technology, however, most of them cannot have real implementation. The public doubt the safety about storage high density carbon underground. Therefore, ITRI now contribute to develop carbon utilize technology. That’s the point that ITRI will adopt our project into their lab.  
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                                     <p class="pcontent">The currently solution in Taiwan is CCS, however,  
 +
                                        the policy and the inhabitant are big challenge of CCS technology.  
 +
                                        ITRI had cooperated with lots of industrial and academic institutes and developed advance  
 +
                                        CCS technology, however, most of them cannot have real implementation.  
 +
                                        The public doubt the safety about storage high density carbon underground.  
 +
                                        Therefore, ITRI now contribute to develop carbon utilize technology.  
 +
                                        That’s the point that ITRI will adopt our project into their lab.
 +
                                    </p>
 +
                                    <p class="pcontent">Dr. Cheng suggested us to think more about the bioproduct after our
 +
                                        <i>E. coli</i> uptake CO<sub>2</sub>. We can easily transgene <i>E. coli</i>
 +
                                        to let <i>E. coli</i> metabolized CO<sub>2</sub> and produce amino acid.
 +
                                        The highest value of bioproduct will be the health food.
 +
                                        However, we could hardly to make the health food which source came
 +
                                        from industrial flue gas into the market. There are still many valuable product
 +
                                        we can achieve with less limitation when apply to the market,
 +
                                        such as electronic material solvent, biocytoculture, agricultural chemicals…...etc.
 +
                                        Besides, the last choice will be biofuel. We should try to reuse our product again and
 +
                                        again to maximize the value before converting it into biofuel.
 
                                     </p>
 
                                     </p>
                                    <p class="pcontent">Dr. Cheng suggested us to think more about the bioproduct after our <i>E. coli</i> uptake CO<sub>2</sub>. We can easily transgene <i>E. coli</i> to let <i>E. coli</i> metabolized CO<sub>2</sub> and produce amino acid. The highest value of bioproduct will be the health food. However, we could hardly to make the health food which source came from industrial flue gas into the market. There are still many valuable product we can achieve with less limitation when apply to the market, such as electronic material solvent, biocytoculture, agricultural chemicals…...etc. Besides, the last choice will be biofuel. We should try to reuse our product again and again to maximize the value before converting it into biofuel.</p>
+
                                     <p class="pcontent">This suggestion triggers our design about recycle system (link)  
                                     <p class="pcontent">This suggestion triggers our design about recycle system (link) after bioreactor.  
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                                        after bioreactor.  
 
                                     </p>
 
                                     </p>
  
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                                                 </p>
 
                                                 </p>
 
                                                 <li class="pcontent">Now the technology renewable energy is mature,  
 
                                                 <li class="pcontent">Now the technology renewable energy is mature,  
                                                why not convert carbon dioxide into energy?</li>
+
                                                    why not convert carbon dioxide into energy?
 +
                                                </li>
 
                                                 <p class="pcontent">If we convert it to bio-fuel, the cost is NTD 50 (2 dollars) per litter.  
 
                                                 <p class="pcontent">If we convert it to bio-fuel, the cost is NTD 50 (2 dollars) per litter.  
 
                                                     And the price that China Petroleum Corporation (CPC) sells is NTD 30 (1 dollar) per litter.  
 
                                                     And the price that China Petroleum Corporation (CPC) sells is NTD 30 (1 dollar) per litter.  
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                                         </p>                                         
 
                                         </p>                                         
 
                                         <p class="pcenter" id="closep"> Table 3 Cost of dealing with 1% amount of industrial CO<sub>2</sub> emission </p>
 
                                         <p class="pcenter" id="closep"> Table 3 Cost of dealing with 1% amount of industrial CO<sub>2</sub> emission </p>
                                            <div class="card card-body">
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                                        <div class="card card-body">
 
                                             <table>
 
                                             <table>
 
                                                 <tr>
 
                                                 <tr>
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                                             </table>
 
                                             </table>
 
                                         </div>
 
                                         </div>
                                         <p class="pcontent" id="closep"> We take two major industrial in Taiwan for example, which are China Steel Corporation (CSC) and Taiwan Semiconductor Manufacturing Company (TSMC). We had research on annual emission and calculate with our CO<sub>2</sub> utilization efficiency. Therefore, we can model the scale of <i>E. coli</i> carbon utilization system working for 1 % CO<sub>2</sub> emission.
+
                                         <p class="pcontent" id="closep"> We take two major industrial in Taiwan for example,  
 +
                                            which are China Steel Corporation (CSC) and Taiwan Semiconductor Manufacturing  
 +
                                            Company (TSMC). We had research on annual emission and calculate with our  
 +
                                            CO<sub>2</sub> utilization efficiency. Therefore,  
 +
                                            we can model the scale of <i>E. coli</i> carbon utilization system working  
 +
                                            for 1 % CO<sub>2</sub> emission.
 
                                         </p>
 
                                         </p>
  
 
                                         <h5 class="boldh5">Energy consumption</h5>
 
                                         <h5 class="boldh5">Energy consumption</h5>
                                         <p class="pcontent">Our bioreactor applies in the industry, including the magnetic stirrer, pump and controller. It will cost 3313 USD every month if the price of industrial electricity is 0.063 USD per kWh.
+
                                         <p class="pcontent">Our bioreactor applies in the industry,  
 +
                                            including the magnetic stirrer, pump and controller.  
 +
                                            It will cost 3313 USD every month if the price of industrial electricity  
 +
                                            is 0.063 USD per kWh.
 
                                         </p>
 
                                         </p>
 
                                         <br>
 
                                         <br>
                                            <p class="pcenter"> Table 4 Energy consumption of different items of device </p>
+
                                        <p class="pcenter"> Table 4 Energy consumption of different items of device </p>
                                            <div class="card card-body">
+
                                        <div class="card card-body">
 
                                             <table>
 
                                             <table>
 
                                                 <tr>
 
                                                 <tr>
Line 593: Line 638:
 
                                                 </tr>
 
                                                 </tr>
 
                                             </table>
 
                                             </table>
                                          <p class="pcontent hpword">* hp = horse power</p>
+
                                            <p class="pcontent hpword">* hp = horse power</p>
                                          <p class="pcontent hpword">* kW = kilo watt </p>
+
                                            <p class="pcontent hpword">* kW = kilo watt </p>
                                          <p class="pcontent hpword">* kWh = kilo watt per hour in one month</p>
+
                                            <p class="pcontent hpword">* kWh = kilo watt per hour in one month</p>
                                         
+
                                        </div>
 
                                     </div>
 
                                     </div>
 
                                 </div>
 
                                 </div>

Revision as of 17:17, 15 October 2018

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