Difference between revisions of "Team:NCKU Tainan/Integrated Human Practices"

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                             <p class="pcontent" style="color: white">
 
                             <p class="pcontent" style="color: white">
 
                                 “Bring our project to life” is always our final goal. Therefore, we visited the
 
                                 “Bring our project to life” is always our final goal. Therefore, we visited the
                                 China Steel Corporation, which is the largest steel maker in Taiwan, to gained the truth opinions from  
+
                                 China Steel Corporation, which is the largest steel maker in Taiwan, to gained the
 +
                                truth opinions from
 
                                 our future potential users. In addition,
 
                                 our future potential users. In addition,
 
                                 we also visit the Annan campus of NCKU to learn their experience from research to
 
                                 we also visit the Annan campus of NCKU to learn their experience from research to
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                                 <div class="right">
 
                                 <div class="right">
 
                                     <h1>Visit An-Nan Campus of NCKU</h1>
 
                                     <h1>Visit An-Nan Campus of NCKU</h1>
                                     <div id="cardtext">We visited a microalgae cultivation demonstration plant. With the advice                               given, we modified our bioreactor design for practical application in industry.</div>
+
                                     <div id="cardtext">We visited a microalgae cultivation demonstration plant. With
 +
                                        the advice given, we modified our bioreactor design for practical application
 +
                                        in industry.</div>
 
                                 </div>
 
                                 </div>
 
                                 <h9>8</h9>
 
                                 <h9>8</h9>
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                                             <p class="hpcontent">As part of iGEMers, our team wishes to bridge the gap
 
                                             <p class="hpcontent">As part of iGEMers, our team wishes to bridge the gap
 
                                                 between laboratories and
 
                                                 between laboratories and
                                                 industry. In order to obtain more information about CO<sub>2</sub>  
+
                                                 industry. In order to obtain more information about CO<sub>2</sub>
 
                                                 biofixation, we visited microalgae cultivation demonstration plant in
 
                                                 biofixation, we visited microalgae cultivation demonstration plant in
                                                 An-Nan Campus of National Cheng-Kung University. The microalgae cultivation  
+
                                                 An-Nan Campus of National Cheng-Kung University. The microalgae
                                                 demonstration is a project managed by Professor Jo-Shu
+
                                                cultivation
                                                 Chang, an expert in biofixation of CO<sub>2</sub> from industry using marine
+
                                                 demonstration is a project managed by Professor Jo-Shu
 +
                                                 Chang, an expert in biofixation of CO<sub>2</sub> from industry using
 +
                                                marine
 
                                                 algae. We toured their microalgae
 
                                                 algae. We toured their microalgae
 
                                                 cultivation systems, and were impressed by their idea of converting
 
                                                 cultivation systems, and were impressed by their idea of converting
 
                                                 microalgae into functional
 
                                                 microalgae into functional
                                                 products. This inspired us to synthesis commercial products from  
+
                                                 products. This inspired us to synthesis commercial products from
 
                                                 CO<sub>2</sub> in
 
                                                 CO<sub>2</sub> in
 
                                                 modified <i>E. coli</i> They also
 
                                                 modified <i>E. coli</i> They also
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                                                 to
 
                                                 to
 
                                                 design a bioreactor for
 
                                                 design a bioreactor for
                                                 utilization of CO<sub>2</sub> and evaluate cost effectiveness of our project.  
+
                                                 utilization of CO<sub>2</sub> and evaluate cost effectiveness of our
 +
                                                project.
 
                                                 CO<sub>2</sub>
 
                                                 CO<sub>2</sub>
 
                                                 concentration in flue gas
 
                                                 concentration in flue gas
                                                 can be as high as 20~30%, thus it is necessary for us to lower the  
+
                                                 can be as high as 20~30%, thus it is necessary for us to lower the
 
                                                 CO<sub>2</sub>
 
                                                 CO<sub>2</sub>
 
                                                 concentration level before
 
                                                 concentration level before
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                                                 the factory is not completely carbon dioxide, but will contain some
 
                                                 the factory is not completely carbon dioxide, but will contain some
 
                                                 impurities like SOx and NOx. So
 
                                                 impurities like SOx and NOx. So
                                                 they asked more about whether <i>E. coli</i> can survive and react in this
+
                                                 they asked more about whether <i>E. coli</i> can survive and react in
 +
                                                this
 
                                                 environment. In addition, they
 
                                                 environment. In addition, they
 
                                                 also praise our idea of removing carbon and solving the disadvantages
 
                                                 also praise our idea of removing carbon and solving the disadvantages
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                                             <p class="hpcontent">Various useful advice was given by her. She emphasized
 
                                             <p class="hpcontent">Various useful advice was given by her. She emphasized
 
                                                 the
 
                                                 the
                                                 advantage of protein production by <i>E. coli</i>, she also suggested us
+
                                                 advantage of protein production by <i>E. coli</i>, she also suggested
 +
                                                us
 
                                                 to study more on high cell density fermentation. Without her timely
 
                                                 to study more on high cell density fermentation. Without her timely
 
                                                 advice, our team cannot improve our project.</p>
 
                                                 advice, our team cannot improve our project.</p>
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                                         </div>
 
                                         </div>
 
                                         <div class="modal-body">
 
                                         <div class="modal-body">
                                             <p class="hpcontent">Our PI, Dr. Huang works as an assistant professor under
+
                                             <p class="hpcontent">Our PI, Dr. Huang works as an assistant professor
 +
                                                under
 
                                                 the institute of Basic Medical Sciences in National Cheng Kung
 
                                                 the institute of Basic Medical Sciences in National Cheng Kung
 
                                                 Univercity. His major field is Bacteriology, Bacteria Genetics, and
 
                                                 Univercity. His major field is Bacteriology, Bacteria Genetics, and
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                                             <p class="hpcontent">The host organism in our project is <i>E. coli</i>. Professor
+
                                             <p class="hpcontent">The host organism in our project is <i>E. coli</i>.
 +
                                                Professor
 
                                                 Hashimoto is
 
                                                 Hashimoto is
 
                                                 familiar with the genetic manipulation of <i>E. coli</i>, therefore we
 
                                                 familiar with the genetic manipulation of <i>E. coli</i>, therefore we
 
                                                 introduced our idea to him. One of his research is about the effect of
 
                                                 introduced our idea to him. One of his research is about the effect of
                                                 carbonic anhydrase (CA) to the growth of <i>E. coli</i>. Since we wanted to
+
                                                 carbonic anhydrase (CA) to the growth of <i>E. coli</i>. Since we
                                                 introduce heterologous CA into the <i>E. coli</i>, he suggested us to consider
+
                                                wanted to
                                                 whether it will compete with the native CA of <i>E. coli</i>, which might
+
                                                 introduce heterologous CA into the <i>E. coli</i>, he suggested us to
 +
                                                consider
 +
                                                 whether it will compete with the native CA of <i>E. coli</i>, which
 +
                                                might
 
                                                 affect the function of the heterologous CA. Also, Professor Hashimoto
 
                                                 affect the function of the heterologous CA. Also, Professor Hashimoto
 
                                                 introduced the concept of homologous recombination to us as we had the
 
                                                 introduced the concept of homologous recombination to us as we had the
                                                 idea to insert our construction into <i>E. coli</i> chromosome. However, we
+
                                                 idea to insert our construction into <i>E. coli</i> chromosome.
 +
                                                However, we
 
                                                 were suggested not to do the homologous recombination due to the
 
                                                 were suggested not to do the homologous recombination due to the
 
                                                 limited time we had. </p>
 
                                                 limited time we had. </p>
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                                             <p class="hpcontent">After the discussion, we started to review journals
 
                                             <p class="hpcontent">After the discussion, we started to review journals
 
                                                 and found out the
 
                                                 and found out the
                                                 feasibility of expressing both native and non-native CA in <i>E. coli</i>. We
+
                                                 feasibility of expressing both native and non-native CA in <i>E. coli</i>.
 +
                                                We
 
                                                 found out that there were research which expressed heterologous CA
 
                                                 found out that there were research which expressed heterologous CA
 
                                                 successfully. Therefore we decided to clone the CA gene into the E
 
                                                 successfully. Therefore we decided to clone the CA gene into the E
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                                                 Professor Bieng-Zih Hsieh. Professor Bieng-Zih Hsieh is an associate
 
                                                 Professor Bieng-Zih Hsieh. Professor Bieng-Zih Hsieh is an associate
 
                                                 professor from the Department of Resources Engineering. One of his
 
                                                 professor from the Department of Resources Engineering. One of his
                                                 research topics is about CO<sub>2</sub> sequestration, which is a topic that
+
                                                 research topics is about CO<sub>2</sub> sequestration, which is a topic
 +
                                                that
 
                                                 related to our project, the difference is he employs a physical method
 
                                                 related to our project, the difference is he employs a physical method
 
                                                 in this aspect, while we use a biological method. </p>
 
                                                 in this aspect, while we use a biological method. </p>
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                                                 more suitable for our project. Professor Hsieh introduced some carbon
 
                                                 more suitable for our project. Professor Hsieh introduced some carbon
 
                                                 capture or utilization strategies that implemented in the industry
 
                                                 capture or utilization strategies that implemented in the industry
                                                 currently and suggested us to do more research on those methods. He also
+
                                                 currently and suggested us to do more research on those methods. He
 +
                                                also
 
                                                 reminded us to compare our system with other biological approach to
 
                                                 reminded us to compare our system with other biological approach to
 
                                                 figure out our strength and weakness. </p>
 
                                                 figure out our strength and weakness. </p>
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                                                 possible point that is more inefficient. The benefit of the whole
 
                                                 possible point that is more inefficient. The benefit of the whole
 
                                                 project is very great. For example, what kind of way we can use to let
 
                                                 project is very great. For example, what kind of way we can use to let
                                                 every <i>E. coli</i> to eat most CO<sub>2</sub>, the way we replace our cultured <i>E. coli</i>.
+
                                                 every <i>E. coli</i> to eat most CO<sub>2</sub>, the way we replace our
 +
                                                cultured <i>E. coli</i>.
 
                                                 It is true that there are existing ways we can think more about
 
                                                 It is true that there are existing ways we can think more about
 
                                                 how we can improve. Also, professor telled us we must be very
 
                                                 how we can improve. Also, professor telled us we must be very
 
                                                 understandable about our project, it included our advantages,
 
                                                 understandable about our project, it included our advantages,
 
                                                 disadvantages, potential threat, our whole project process, and the
 
                                                 disadvantages, potential threat, our whole project process, and the
                                                 most optimum environment we should provide for our <i>E. coli</i>. The more we
+
                                                 most optimum environment we should provide for our <i>E. coli</i>. The
                                                 realized our project, we could find more possibility of development. After
+
                                                more we
 +
                                                 realized our project, we could find more possibility of development.
 +
                                                After
 
                                                 talking with professor, we inspired more ideas and found direction
 
                                                 talking with professor, we inspired more ideas and found direction
 
                                                 about our project more clearly.</p>
 
                                                 about our project more clearly.</p>
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                                                 Chieh-Chen from National Chung Hsing University (NCHU) in the Asia
 
                                                 Chieh-Chen from National Chung Hsing University (NCHU) in the Asia
 
                                                 Pacific Conference, whose work includes the reverse TCA cycle of
 
                                                 Pacific Conference, whose work includes the reverse TCA cycle of
                                                 engineered carbon capturing <i>E. coli</i>. Upon our discussion, Dr. Huang
+
                                                 engineered carbon capturing <i>E. coli</i>. Upon our discussion, Dr.
 +
                                                Huang
 
                                                 raised the issue of the low efficiency of one of our enzymes, Rubisco
 
                                                 raised the issue of the low efficiency of one of our enzymes, Rubisco
                                                 and suggested that we cultured our engineered <i>E. coli</i> in an anaerobic
+
                                                 and suggested that we cultured our engineered <i>E. coli</i> in an
 +
                                                anaerobic
 
                                                 condition. Since Rubisco, the ribulose-1,5-biphosphate
 
                                                 condition. Since Rubisco, the ribulose-1,5-biphosphate
 
                                                 carboxylase/oxygenase is an enzyme catalyzing the reaction of either
 
                                                 carboxylase/oxygenase is an enzyme catalyzing the reaction of either
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                                         </div>
 
                                         </div>
 
                                         <div class="modal-body">
 
                                         <div class="modal-body">
                                             <p class="hpcontent">We had an opportunity to speak with Dr. Huang
+
                                             <p class="hpcontent">
                                                 Chieh-Chen
+
                                                 On October, 6 Our team participated in the Biotechnology Green Energy
                                                 from National Chung Hsing
+
                                                 Expo. There are many stands which could be divided into Biotechnology,
                                                 University (NCHU) in the Asia Pacific Conference, whose work includes
+
                                                 Green energy and Innovative production. In addition, we also joined the
                                                the
+
                                                 NEP-II Technology Workshop and Matchmaking Conference.
                                                 reverse TCA cycle of
+
                                            </p>
                                                engineered carbon capturing <i>E. coli</i>. Upon our discussion, Dr. Huang
+
 
                                                raised
+
                                            <p class="hpcontent">
                                                the issue of the low
+
                                                 We chose Multi-fuel pure oxygen combustion reduction and Advanced
                                                 efficiency of one of our enzymes, Rubisco and suggested that we culture
+
                                                 carbon capture combustion technology which have closely related to our
                                                 our
+
                                                 project. Interestingly, we found that in the such business matchmaking
                                                 engineered <i>E. coli</i> in an
+
                                                 conference involved in many vendor, most of them focused more on what
                                                 anaerobic condition. Since Rubisco, the ribulose-1,5-biphosphate
+
                                                benefit they create rather than the detailed technology process.
                                                carboxylase/oxygenase is an enzyme
+
                                            </p>
                                                catalyzing the reaction of either carbon dioxide or oxygen with
+
 
                                                ribulose-1,5-biphosphate (RuBP) as
+
                                            <p class="hpcontent">
                                                 the name itself suggests, putting our system in an aerobic condition
+
                                                 It is important that when we want to apply our projects in practice, we
                                                 would
+
                                                 have to understand our product strengths, potential client and other
                                                 significantly lower the
+
                                                 resources which benefit our idea. Besides, using the government
                                                 efficiency of capturing carbon dioxide due to the similarities between
+
                                                 resources to receive subsidies also can make our research go more well
                                                 gaseous carbon dioxide and
+
                                                 , and improve our product visibility at the same time.
                                                oxygen. </p>
+
 
 +
                                            </p>
  
 
                                             <img class="contentimg col-12" src="https://static.igem.org/mediawiki/2018/a/a3/T--NCKU_Tainan--home_41991334_482787205568789_5317508140554518528_n.jpg">
 
                                             <img class="contentimg col-12" src="https://static.igem.org/mediawiki/2018/a/a3/T--NCKU_Tainan--home_41991334_482787205568789_5317508140554518528_n.jpg">
Line 675: Line 698:
 
                                                 Microbiology. He complete a microalge carbon utilization system in ANAN
 
                                                 Microbiology. He complete a microalge carbon utilization system in ANAN
 
                                                 Campus of NCKU which helped the largest energy company in Taiwan (CPC,
 
                                                 Campus of NCKU which helped the largest energy company in Taiwan (CPC,
                                                 Taiwan) and Taiwan's No.2 CO<sub>2</sub> emission company (China Steel Co.) to
+
                                                 Taiwan) and Taiwan's No.2 CO<sub>2</sub> emission company (China Steel
 +
                                                Co.) to
 
                                                 develop the research platform of microalgae-based flue gas CO<sub>2</sub>
 
                                                 develop the research platform of microalgae-based flue gas CO<sub>2</sub>
                                                 biofixation technology.Besides, Since 2009, Prof. Chang served as the PI
+
                                                 biofixation technology.Besides, Since 2009, Prof. Chang served as the
 +
                                                PI
 
                                                 of National Energy Program (NEP) projects and focused on
 
                                                 of National Energy Program (NEP) projects and focused on
                                                 microalgae-based CO<sub>2</sub> capture and utilization for biofuels production
+
                                                 microalgae-based CO<sub>2</sub> capture and utilization for biofuels
 +
                                                production
 
                                                 and biorefinery. </p>
 
                                                 and biorefinery. </p>
  
 
                                             <p class="hpcontent">Our project is to reuse the carbon dioxide emitted
 
                                             <p class="hpcontent">Our project is to reuse the carbon dioxide emitted
 
                                                 from the industry
 
                                                 from the industry
                                                 with a biological way. Although the pathway of carbon flow in <i>E. coli</i>
+
                                                 with a biological way. Although the pathway of carbon flow in <i>E.
 +
                                                    coli</i>
 
                                                 and in microalge are quite different, it is really important for us to
 
                                                 and in microalge are quite different, it is really important for us to
 
                                                 understand the current method of biological carbon utilization before
 
                                                 understand the current method of biological carbon utilization before
 
                                                 we begin our research. We want to deeply understand the whole
 
                                                 we begin our research. We want to deeply understand the whole
                                                 microalgae culture pool system including the position of CO<sub>2</sub> pipeline,
+
                                                 microalgae culture pool system including the position of CO<sub>2</sub>
 +
                                                pipeline,
 
                                                 downstream process, pool cleaning and how is the progress of an
 
                                                 downstream process, pool cleaning and how is the progress of an
 
                                                 research in lab turning into real application.What's more, we
 
                                                 research in lab turning into real application.What's more, we
Line 700: Line 728:
 
                                                 campus(link).
 
                                                 campus(link).
 
                                                 Prof. Chang's team has been working with China Steel Co. and CPC,
 
                                                 Prof. Chang's team has been working with China Steel Co. and CPC,
                                                 Taiwan to develop innovative microalgae-based flue gas CO<sub>2</sub> reduction
+
                                                 Taiwan to develop innovative microalgae-based flue gas CO<sub>2</sub>
 +
                                                reduction
 
                                                 and biofuels production technologies. Therefore, they shared the
 
                                                 and biofuels production technologies. Therefore, they shared the
 
                                                 progress of the whole technologies coming out. From the beginning,
 
                                                 progress of the whole technologies coming out. From the beginning,
Line 711: Line 740:
 
                                             <p class="hpcontent">We visited Prof. Jo-Shu Chang to discuss about our
 
                                             <p class="hpcontent">We visited Prof. Jo-Shu Chang to discuss about our
 
                                                 carbon capture
 
                                                 carbon capture
                                                 system. We had a great time discussing and he gave us three advice. One is
+
                                                 system. We had a great time discussing and he gave us three advice. One
                                                 to define the velocity of CO<sub>2</sub> input in which scale of CO<sub>2</sub> we want to
+
                                                is
 +
                                                 to define the velocity of CO<sub>2</sub> input in which scale of CO<sub>2</sub>
 +
                                                we want to
 
                                                 solve with. Another one is to confirm a commercial product like
 
                                                 solve with. Another one is to confirm a commercial product like
 
                                                 proteins which can bring us some income to balance the cost. The last
 
                                                 proteins which can bring us some income to balance the cost. The last
Line 733: Line 764:
 
                                 <div class="right">
 
                                 <div class="right">
 
                                     <h1>Meetup with Dr. Veerabhadran Ramanathan</h1>
 
                                     <h1>Meetup with Dr. Veerabhadran Ramanathan</h1>
                                     <div id="cardtext">Through this meetup, we realized that unity of the entire society is the most effective way to mitigate climate change.  
+
                                     <div id="cardtext">Through this meetup, we realized that unity of the entire
 +
                                        society is the most effective way to mitigate climate change.
  
 
                                     </div>
 
                                     </div>
Line 760: Line 792:
  
 
                                             <p class="hpcontent">
 
                                             <p class="hpcontent">
Dr. Veerabhadran Ramanathan is a Distinguished Professor in Scripps Institution of Oceanography at UC San Diego, and UNESCO Professor of Climate and Policy at TERI University, New Delhi, India. Dr. Ramanathan discovered the greenhouse effect of halocarbons, particularly, CFCs in 1975.</p>
+
                                                Dr. Veerabhadran Ramanathan is a Distinguished Professor in Scripps
<p class="hpcontent">He has won many prestigious awards, such as the Volvo Prize, the Rossby Prize and the Tyler Prize, the highest rated environmental award given in the United States. In 2013 he was awarded the United Nations Top Environmental Prize. </p>
+
                                                Institution of Oceanography at UC San Diego, and UNESCO Professor of
<p class="hpcontent">He was invited to share his thought about climate change in NCKU as the 2018 Tang Laureate for sustainability science. Using the topic ‘Bending the Curve’, he would like to raise the public awareness on climate change issue. His speech inspired us a lot, he not only introduced the ideas of super pollutants such as HFCs, CH4 and black carbon, but also proposed the solutions for tackling climate change.</p>
+
                                                Climate and Policy at TERI University, New Delhi, India. Dr. Ramanathan
<p class="hpcontent">After his speech, we briefly introduced our project to him. Although his work focuses on the impact of non-CO<sub>2</sub> gases on climate change, he thinks that human beings need more alternatives to tackle carbon dioxide emission problem, and our project may be one of the solutions, which makes us have faith in our project. He was glad to know that university students worked hard to deal with this issue. </p>
+
                                                discovered the greenhouse effect of halocarbons, particularly, CFCs in
<p class="hpcontent">Through this meetup, we realized that ‘everyone is responsible to make the world better, no one should be excluded.’ Unity of the entire society is the most effective way to mitigate climate change. Therefore, we put more effort in our human practice activities by engaging with government entities, local enterprise, institution and the public.
+
                                                1975.</p>
 +
                                            <p class="hpcontent">He has won many prestigious awards, such as the Volvo
 +
                                                Prize, the Rossby Prize and the Tyler Prize, the highest rated
 +
                                                environmental award given in the United States. In 2013 he was awarded
 +
                                                the United Nations Top Environmental Prize. </p>
 +
                                            <p class="hpcontent">He was invited to share his thought about climate
 +
                                                change in NCKU as the 2018 Tang Laureate for sustainability science.
 +
                                                Using the topic ‘Bending the Curve’, he would like to raise the public
 +
                                                awareness on climate change issue. His speech inspired us a lot, he not
 +
                                                only introduced the ideas of super pollutants such as HFCs, CH4 and
 +
                                                black carbon, but also proposed the solutions for tackling climate
 +
                                                change.</p>
 +
                                            <p class="hpcontent">After his speech, we briefly introduced our project to
 +
                                                him. Although his work focuses on the impact of non-CO<sub>2</sub>
 +
                                                gases on climate change, he thinks that human beings need more
 +
                                                alternatives to tackle carbon dioxide emission problem, and our project
 +
                                                may be one of the solutions, which makes us have faith in our project.
 +
                                                He was glad to know that university students worked hard to deal with
 +
                                                this issue. </p>
 +
                                            <p class="hpcontent">Through this meetup, we realized that ‘everyone is
 +
                                                responsible to make the world better, no one should be excluded.’ Unity
 +
                                                of the entire society is the most effective way to mitigate climate
 +
                                                change. Therefore, we put more effort in our human practice activities
 +
                                                by engaging with government entities, local enterprise, institution and
 +
                                                the public.
 
                                             </p>
 
                                             </p>
  
Line 1,124: Line 1,180:
 
                         <div class="card">
 
                         <div class="card">
 
                             <div class="thumbnail">
 
                             <div class="thumbnail">
                                 <img src="照片_1"
+
                                 <img src="照片_1" class="left">
                                    class="left">
+
 
                             </div>
 
                             </div>
 
                             <div class="right">
 
                             <div class="right">
 
                                 <h1>Meet up with UESTC</h1>
 
                                 <h1>Meet up with UESTC</h1>
 
                                 <div id="cardtext">
 
                                 <div id="cardtext">
                                     We designed a complete flow chart of <i>E. coli</i> carbon utilization system in factory UESTC-China igem team who aim to degrade straw by a sythetic biology way and then convert it into bio-fuel such as hydrogen and butanol.  
+
                                     We designed a complete flow chart of <i>E. coli</i> carbon utilization system in
 +
                                    factory UESTC-China igem team who aim to degrade straw by a sythetic biology way
 +
                                    and then convert it into bio-fuel such as hydrogen and butanol.
 
                                 </div>
 
                                 </div>
 
                             </div>
 
                             </div>
Line 1,152: Line 1,209:
 
                                     </div>
 
                                     </div>
 
                                     <div class="modal-body">
 
                                     <div class="modal-body">
                                       
+
 
 
                                         <p class="hpcontent">
 
                                         <p class="hpcontent">
                                             When designing the whole CO<sub>2</sub> utilization system, we met some problem during cost evaluation and carbon footprint. We were lucky to find our friend, UESTC-China, to work together and end up building a completely eco-friendly system with negative carbon footprint.  
+
                                             When designing the whole CO<sub>2</sub> utilization system, we met some
 +
                                            problem during cost evaluation and carbon footprint. We were lucky to find
 +
                                            our friend, UESTC-China, to work together and end up building a completely
 +
                                            eco-friendly system with negative carbon footprint.
 
                                         </p>
 
                                         </p>
                                         <p class="hpcontent">We were delighted when we found out someone who will be able to resolve our problems. UESTC-China, an iGEM team that focus on degrading straw into useful raw materials, which are glucose, xylose, ferule acid, and lignin. In addition, they aimed to convert glucose into butanol and hydrogen. As xylose is the main carbon source for our engineered <i>E. coli</i>, we came up with a collaboration idea by integrating our system at the downstream of their system. Xylose is one of the side product produced during straw degradation, it can be extracted and utilized in our system. Concerning the synthesis of xylose may produce greenhouse gas and chemicals, we would like to obtain xylose produced via biological method.
+
                                         <p class="hpcontent">We were delighted when we found out someone who will be
 +
                                            able to resolve our problems. UESTC-China, an iGEM team that focus on
 +
                                            degrading straw into useful raw materials, which are glucose, xylose,
 +
                                            ferule acid, and lignin. In addition, they aimed to convert glucose into
 +
                                            butanol and hydrogen. As xylose is the main carbon source for our
 +
                                            engineered <i>E. coli</i>, we came up with a collaboration idea by
 +
                                            integrating our system at the downstream of their system. Xylose is one of
 +
                                            the side product produced during straw degradation, it can be extracted and
 +
                                            utilized in our system. Concerning the synthesis of xylose may produce
 +
                                            greenhouse gas and chemicals, we would like to obtain xylose produced via
 +
                                            biological method.
 
                                         </p>
 
                                         </p>
                                         <p class="hpcontent">Straw was a biowaste in agriculture while it wasn't easy to decompose. UESTC-China's work successfully solved this problem with synthetic biology. Through our collaboration, they can not only produce bioenergy, but have another powerful application in CO<sub>2</sub> emission problem. NCKU-Tainan provided them a valuable application way and helped them design a draft of device. The xylose source from straw was really important to <i>E. coli</i> CO<sub>2</sub> utilization system which changed the positive carbon footprint into negative carbon footprint. This collaboration solved both the energy problem and environment problem.  
+
                                         <p class="hpcontent">Straw was a biowaste in agriculture while it wasn't easy
 +
                                            to decompose. UESTC-China's work successfully solved this problem with
 +
                                            synthetic biology. Through our collaboration, they can not only produce
 +
                                            bioenergy, but have another powerful application in CO<sub>2</sub> emission
 +
                                            problem. NCKU-Tainan provided them a valuable application way and helped
 +
                                            them design a draft of device. The xylose source from straw was really
 +
                                            important to <i>E. coli</i> CO<sub>2</sub> utilization system which changed
 +
                                            the positive carbon footprint into negative carbon footprint. This
 +
                                            collaboration solved both the energy problem and environment problem.
 
                                         </p>
 
                                         </p>
  

Revision as of 14:32, 15 October 2018

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