Difference between revisions of "Team:OUC-China/HP/Gold Integrated"

 
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<div class="col-md-1" style="padding-top: 5px;"><a href="https://2017.igem.org/Team:OUC-China"><img src="https://static.igem.org/mediawiki/2017/8/89/T--OUC-China--logo.jpg" height="40px"/></a></div>
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<a href="https://2017.igem.org/Team:OUC-China"><img src="https://static.igem.org/mediawiki/2017/8/89/T--OUC-China--logo.jpg" height="50px"/></a></div>
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    <a href="##" style="line-height: 50px;text-align: center" class="ouc-nav">Team<span class="caret"></span></a>
 
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    <a href="##" style="line-height: 50px;text-align: center" class="ouc-nav">Project<span class="caret"></span></a>
 
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    <div><a href="https://2017.igem.org/Team:OUC-China/Description" style="line-height: 40px; " class="ouc-navdown">Description</a></div>
 
    <div><a href="https://2017.igem.org/Team:OUC-China/Description" style="line-height: 40px; " class="ouc-navdown">Description</a></div>
 
    <div><a href="https://2017.igem.org/Team:OUC-China/Design" style="line-height: 40px; " class="ouc-navdown">Design</a></div>
 
    <div><a href="https://2017.igem.org/Team:OUC-China/Design" style="line-height: 40px; " class="ouc-navdown">Design</a></div>
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                <div class="ouc-right">
        <a style="line-height: 40px; font-size: 15px;" class="ouc-navdown">Proof of concept</a>
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        <a style="line-height: 40px; font-size: 15px;" class="ouc-navdown" href="https://2017.igem.org/Team:OUC-China/proof1">Proof of concept</a>
 
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        <div class="ouc-rightnav">
        <a href="" style="display: block">Basic fermentation</a>
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        <a href="https://2017.igem.org/Team:OUC-China/proof1" style="display: block">Basic fermentation</a>
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        <a href="https://2017.igem.org/Team:OUC-China/proof2" style="display: block">Adhesion platform</a>
        <a href="" style="display: block">Mini system</a>
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        <a href="https://2017.igem.org/Team:OUC-China/proof3" style="display: block">MINI-GRE</a>
 
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    <div><a href="https://2017.igem.org/Team:OUC-China/Demonstrate" style="line-height: 40px; " class="ouc-navdown">Demonstration</a></div>
 
    <div><a href="https://2017.igem.org/Team:OUC-China/InterLab" style="line-height: 40px; " class="ouc-navdown">InterLab</a></div>
 
    <div><a href="https://2017.igem.org/Team:OUC-China/InterLab" style="line-height: 40px; " class="ouc-navdown">InterLab</a></div>
    <div><a href="https://2017.igem.org/Team:OUC-China/Improve" style="line-height: 40px; " class="ouc-navdown">Improve</a></div>
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    <div><a href="https://2017.igem.org/Team:OUC-China/Improve" style="line-height: 40px; " class="ouc-navdown">Improvement</a></div>
 
    <div><a href="https://2017.igem.org/Team:OUC-China/Notebook" style="line-height: 40px; " class="ouc-navdown">Notebook</a></div>
 
    <div><a href="https://2017.igem.org/Team:OUC-China/Notebook" style="line-height: 40px; " class="ouc-navdown">Notebook</a></div>
 
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<div class="col-md-1"><a href="https://2017.igem.org/Team:OUC-China/Model" style="line-height: 50px;text-align: center" class="ouc-nav">Model</a></div>
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<div class="col-md-1" style="padding: 0"><a href="https://2017.igem.org/Team:OUC-China/Model" style="line-height: 50px;text-align: center" class="ouc-nav">Model</a></div>
<div class="col-md-1"><a href="https://2017.igem.org/Team:OUC-China/Parts" style="line-height: 50px;text-align: center" class="ouc-nav">Parts</a></div>
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<div class="col-md-1" style="padding: 0"><a href="https://2017.igem.org/Team:OUC-China/Parts" style="line-height: 50px;text-align: center" class="ouc-nav">Parts</a></div>
<div class="col-md-1"><a href="https://2017.igem.org/Team:OUC-China/Safety" style="line-height: 50px;text-align: center" class="ouc-nav">Safety</a></div>
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<div class="col-md-1" style="padding: 0"><a href="https://2017.igem.org/Team:OUC-China/Safety" style="line-height: 50px;text-align: center" class="ouc-nav">Safety</a></div>
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    <a href="##" style="line-height: 50px;text-align: center" class="ouc-nav">Human Practice<span class="caret"></span></a>
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    <a href="https://2017.igem.org/Team:OUC-China/Engagement" style="line-height: 50px;text-align: center" class="ouc-nav">Human Practice<span class="caret"></span></a>
 
    <div class="ouc-down" style=" width: 100%; text-align: center">
 
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    <div><a href="https://2017.igem.org/Team:OUC-China/HumanPractice" style="line-height: 40px; " class="ouc-navdown">Overview</a></div>
 
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     </div>
 
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     <p style="font-size: 20px">
 
     <p style="font-size: 20px">
     We have done a full human practice this year!It can be summed up as three perspectives, inspired by society, contacts with society and feedback to society as well as a communication and cooperation section.
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     We have d a carried out a full human practice this year!It can be summed up into four perspectives, inspired by society, contacts with society and feedback to society as well as a communication and cooperation section.
 
     </p>
 
     </p>
     <h3 class="ouc-heading"><strong>Inspired by society</strong></h3>
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     <h2 class="ouc-heading"><strong>Inspired by society</strong></h2>
 
     <p style="font-size: 20px">
 
     <p style="font-size: 20px">
     Through the work of human practice, we did plenty of research about <i>Enteromorpha</i>'s current condition, application, and related study of <i>Enteromorpha</i>. The results can be feed back to our lab and modify our project designs.
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     Through the work of human practice, we did plenty of research about <i>Enteromorpha</i>'s current condition, application, and related study. The results can feedback to our lab and help modify our project designs.
 
     </p>
 
     </p>
 
     <p style="font-size: 20px">
 
     <p style="font-size: 20px">
     First, we conducted a full investigation and analyzed the practical significance, feasibility, and development potential of our projects. We worked on two parts: the social and environmental issues involved in the project, and the feasibility of the implementation while doing research in order for analyzing the possibility of improvement.
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     We conducted a full investigation and analyzed the practical significance, feasibility, and development potential of our projects. To be specific, our work can be divided into two sections: investigating the social and environmental issues lies beneath our project, and adjusting our emphasis of the project according to our research and analyzation.
 
     </p>
 
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    <div class="panel-group" id="accordion">
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            <div class="panel-heading ouc-panel-heading">
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                <h4 class="panel-title"><a data-toggle="collapse" data-parent="#accordion" href="#collapse1"><strong>The social and environmental issues </strong></a></h4>
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              <h3 style="color: #E3D434;text-align:center"><strong>The social and environmental issues </strong></h3>
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                 <p style="font-size: 20px">
 
                 <p style="font-size: 20px">
                 This year we are concerned about the development and utilization of <i>Enteromorpha</i>. We have a full investigation of the background of the project: including the cause of the <i>Enteromorpha</i> outbreak, the situation of <i>Enteromorpha</i> utilization. In the social research, we examined the local people's understanding of the current situation of <i>Enteromorpha</i>'s outbreak. We also went to The First Institute of Oceanography,SOA, Qingdao Winsea Group and other places for field study. At the Institute of Oceanography, we detailed knowledge of the causes of the outbreak of <i>Enteromorpha</i> and its influencing factors. In the Qingdao Winsea Group, we worked as volunteers in the processing workshop of the <i>Enteromorpha</i> to learn about the complete process of processing.
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                 We have a full investigation of the background of the project: the cause of the <i>Enteromorpha</i> outbreak, the current situation of <i>Enteromorpha</i> outbreak, the application and utilization, the monitoring and forcasting, as well as local people's understanding of <i>Enteromorpha</i>'s outbreak. To learn more about its advanced study, we also went to the First Institute of Oceanography, IOCAS, Qingdao Seawin Biotech Group and other places like that to dig deeper of <i>Enteromorpha</i>. There in IOCAS, we acquired knowledge of the influencing factor and reason for  <i>Enteromorpha</i> outbreak. In the Qingdao Seawin Group, we volunteered in the processing workshop of the <i>Enteromorpha</i> and learn about the physical pretreatment necessary for our <i>Enteromorpha</i> residue utilization.
 
                 </p>
 
                 </p>
                 <h3 style="color: #E3D434"><strong>Comprehensive status</strong></h3>
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                 <h3 style="color: #E3D434"><strong>Current Situation</strong></h3>
 
                 <p style="font-size: 20px">
 
                 <p style="font-size: 20px">
                 Through the investigation, we know that the cause of the outbreak of local <i>Enteromorpha</i> in Qingdao is mainly the aquaculture of coastal aquaculture farms and the excessive discharge of aquaculture waste water, resulting in a large number of <i>Enteromorpha</i> growth, so as the current floating along the coast of Qingdao. At present, <i>Enteromorpha</i>'s annual salvage volume of 70000 tons, the annual number of slightly floating, when the overall number remains high. After the recovery, <i>Enteromorpha</i> after the drying, crushing and other roughing process, grinding into powder. The utilization of the plant was mainly to extract the polysaccharides from <i>Enteromorpha</i>, and some of the residual algae residue was processed to the fertilizer for soil improvement. Generally speaking, the utilization rate of <i>Enteromorpha</i> is lower, and only a few are exploited.
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                 Through the investigation, we know that the cause of <i>Enteromorpha</i> outbreak in Qingdao is mainly the excessive discharge of aquaculture waste water from coastal farms. At present, the amount of salvaged <i>Enteromorpha</i> annually is over 70000 tons, which fluctuates slightly on a high level over years. After drying, crushing and other physical pretreatment, <i>Enteromorpha</i> residue is grinded into powder. The polysaccharidesutilization is then extracted from the powder, leaving a second-round residue as fertilizer for farmland. In another word, the utilization rate of <i>Enteromorpha</i> is quite low, with only a little potential exploited.
 
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                 <h3 style="color: #E3D434"><strong>Causes of <i>Enteromorpha</i>'s outbreak</strong></h3>
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                 <h3 style="color: #E3D434"><strong>Causes of outbreak</strong></h3>
 
                 <p style="font-size: 20px">
 
                 <p style="font-size: 20px">
                 The <i>Enteromorpha</i> of Qingdao coastal area is mainly from the northern Jiangsu Shoal, a large number of floating <i>Enteromorpha</i> from south to north floating to the Yellow Sea coast.  
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                 The huge amount of <i>Enteromorpha</i> in Qingdao's coastal area is mainly formed in the Shoal of northern Jiangsu where there is abundance of local aquaculture, and drifts from south to north into the coastline of Yellow Sea (about 10 kilometers a day).
 
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                 <p style="font-size: 20px">
 
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                 It is related to local environmental characteristics and a large number of local aquaculture rafts.
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                 The main reasons affecting the distribution of <i>Enteromorpha</i> include: the impact of other algae on its growth, the water temperature, the salinity and the nutrients in nearby sea.
 
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                <h3 style="color: #E3D434"><strong>Monitoring, forecasting and controling</strong></h3>
 
                 <p style="font-size: 20px">
 
                 <p style="font-size: 20px">
                 Enteromorpha drift 10 kilometers a day or so. The main reasons affecting the growth distribution of <i>Enteromorpha</i> include the following: the effects of other algae on its growth, water temperature, salinity and nutrients in Qingdao sea area.
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                 The North Sea Forecast center of SOA monitors the distribution of <i>Enteromorpha</i> in the Yellow Sea and East China Sea by means of remote satellite sensing. Monitoring data on June 28, 2017 showed that the green tide distributed in over 20,000 square kilometers, covering an area of about 187 square kilometers.  
 
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                After summarizing all the information collected, from the location of the green tide to theocean current that may affect this area, we can obtain the time-shift information of the green tide patches in the next 72 hours and draw a forecast warning map for the green tide with the support of supercomputer.
 +
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                <h3 style="color: #E3D434"><strong>Utilization status</strong></h3>
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                <p style="font-size: 20px">
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                The annual salvage of floating algae begins in June and ends in August, during which the company will treat it with mature and complete processing system and produce different levels of <i>Enteromorpha</i>. The daily salvage of <i>Enteromorpha</i> must be treated in time and mustn’t be stored to avoid rotting.
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                The production  is mainly used for foddering and extracting trehalose.  <i>Enteromorpha</i> powder is also known to be used as soil conditioner, which improves soil quality by adjusting its pH value and advocating green agriculture.
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                 <h3 style="color: #E3D434"><strong>Monitoring, forecast and control of <i>Enteromorpha</i></strong></h3>
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 +
                
 +
<h3 style="color: #E3D434;text-align:center"><strong>Feasibility analysis and improvement</strong></h3>
 +
 
 
                 <p style="font-size: 20px">
 
                 <p style="font-size: 20px">
                The North Sea Forecast center of SOA monitors the distribution of <i>Enteromorpha</i> in the Yellow Sea and East China Sea by means of satellite remote sensing. June 28, 2017 monitoring data show that the green tide distribution area of about 20,000 square kilometers, covering an area of about 187 square kilometers.  
+
                  At first, we assumed to utilize a kind of engineered cells to degrade cellulose and hemicellulose to ethanol inside <i>Enteromorpha</i>, and to produce cellulase and hemicellulose with our surface display system. Therefore, in February, we came to Beijing University of Chemical Technology to consult Prof. Lihai Fan, an expert in the field of making good use of cellulose, about how to improve our design. Consequently, we found that the metabolic burden of the engineered yeast will be severe and that the degradation efficiency will be low if we only use one kind of cells.
 
                 </p>
 
                 </p>
                <p style="font-size: 20px">
 
                After summarizing all the monitoring information, combining the waters of the green tide and the sea surface wind that may affect the sea area, the integrated data of ocean currents and waves, using the self-developed green Tide patch drift model, with the support of supercomputer, fine-grained prediction of the direction, location and influence of the green tide drift, can obtain the time-shift information of the green tide patches in the next 72 hours. , draw the green Tide Drift forecast map, and notify the forecast warning information.
 
                </p>
 
                <h3 style="color: #E3D434"><strong>Utilization status of <i>Enteromorpha</i></strong></h3>
 
                <p style="font-size: 20px">
 
                The company salvage the floating algae in the ocean, and the annual salvage period begins in June and ends in August. The salvage volume is about 70000 tons. The company has mature and complete processing system of <i>Enteromorpha</i>.
 
                </p>
 
                <p style="font-size: 20px">
 
                In the factory, <i>Enteromorpha</i> must be deal in a timely manner, due to a lot of daily salvage mustn’t be stored in the factory, so every day the factory will quickly deal with a large number of <i>Enteromorpha</i>, made different levels of <i>Enteromorpha</i>.
 
                </p>
 
                <p style="font-size: 20px">
 
                It is mainly used as feed to add and extract the humose monosaccharide. And we know that <i>Enteromorpha</i> powder can also be used for the make of soil conditioner, modified for acid soil, and optimize the structure of soil, used in the production of green agriculture.
 
                </p>
 
                <div class="row">
 
                <div class="col-md-6" style="text-align: center">
 
                <img src="https://static.igem.org/mediawiki/2017/6/60/T--OUC-China--hp1-1.jpg" width="400px" height="300px"/>
 
                </div>
 
                <div class="col-md-6" style="text-align: center">
 
                <img src="https://static.igem.org/mediawiki/2017/f/f3/T--OUC-China--hp1-2.jpg" width="400px"/>
 
                </div>
 
                </div>
 
                <h3 style="color: #E3D434"><strong>Investigate the people's awareness of the eruption of <i>Enteromorpha</i></strong></h3>
 
                <p style="font-size: 20px">
 
                We distribute questionnaires in Qingdao coastal tourist areas, interview the masses, and design network questionnaires. Through the network questionnaire and the results of the offline questionnaire statistics, we found that the masses of the <i>Enteromorpha</i> is very low understanding of the level. The masses believe that the eruption of <i>Enteromorpha</i> has some influence on marine organism, water quality, ecological landscape and tourism development.
 
                </p>
 
                <p style="font-size: 20px">
 
                People expect to realize the efficient utilization of <i>Enteromorpha</i>.
 
                </p>
 
                <p style="font-size: 20px">We have collected 658 questionnaires.</p>
 
                <div class="row">
 
                <div class="col-md-8" style="text-align: center">
 
                <div class="row">
 
                <div class="col-md-6" style="text-align: center">
 
                <img src="https://static.igem.org/mediawiki/2017/8/82/T--OUC-China--gold1-9.jpg" width="300px"/>
 
                </div>
 
                <div class="col-md-6" style="text-align: center">
 
                <img src="https://static.igem.org/mediawiki/2017/c/cb/T--OUC-China--hp4-1.jpg" width="300px"/>
 
                </div>
 
                </div>
 
                <br/>
 
                <div class="row">
 
                <div class="col-md-6" style="text-align: center">
 
                <img src="https://static.igem.org/mediawiki/2017/f/f5/T--OUC-China--hp4-2.jpg" width="300px"/>
 
                </div>
 
                <div class="col-md-6" style="text-align: center">
 
                <img src="https://static.igem.org/mediawiki/2017/2/22/T--OUC-China--hp4-3.jpg" width="300px"/>
 
                </div>
 
                </div>
 
                </div>
 
                <div class="col-md-4" style="text-align: center">
 
                <img src="https://static.igem.org/mediawiki/2017/c/c5/T--OUC-China--hp4-4.jpg" width="350px"/>
 
                </div>
 
                </div>
 
 
                
 
                
               
+
 
                </div>
+
 
            </div>
+
        </div>
+
</div>
+
    <div class="panel-group" id="accordion">
+
        <div class="panel ">
+
            <div class="panel-heading ouc-panel-heading">
+
                <h4 class="panel-title"><a data-toggle="collapse" data-parent="#accordion" href="#collapse2"><strong>Feasibility analysis,improvement and promotion of project</strong></a></h4>
+
            </div>
+
            <div id="collapse2" class="panel-collapse collapse">
+
                <div class="panel-body">
+
 
                 <p style="font-size: 20px">
 
                 <p style="font-size: 20px">
                    The feasibility of project implementation was analyzed through investigation. Our human practice works were analyzed and fed back to lab to improve our project.
+
                Then, we made a decision that we divide the whole project into two procedures including using enzyme to pretreat the cellulose and hemicellulose into cellodextrin and xylose and using our engineered cells to produce ethanol. At last, we choose four enzyme used in pretreat β-1, 4-Nechemu, β-glycoside, β-dextran, inner β-dextran enzyme.
                </p>
+
 
                <p style="font-size: 20px">
+
                At the beginning, we initially conceived the use of engineering bacteria to convert cellulose and hemicellulose from <i>Enteromorpha</i> to ethanol, and to express cellulase and hemicellulose by surface display system. At the end of February 2017, we took our initial project design to Beijing Huagong University, Beijing, to visit Professor Fan Lihai, who worked for many years on the utilize of cellulose by yeasts. After discussion, we found that if only one engineered bacterium was used to degrade cellulose, hemicellulose, and then direct conversion of ethanol, the metabolic burden of yeast would be very large, and the efficiency of cellulose degradation would be very low.
+
                </p>
+
                <p style="font-size: 20px">
+
                So we go back to school and readjust our project design, we decided to divide the whole process into two parts, using enzymes to process the cellulose and hemicellulose in the <i>Enteromorpha</i>, producing the cellubiose and xylose, and then producing ethanol from the engineering bacteria using cellubiose  and xylose.
+
                </p>
+
                <p style="font-size: 20px">
+
                By referring to the literature, we identified 4 enzymes that we used in the final process: β-1, 4-Nechemu, β-glycoside, β-dextran, inner β-dextran enzyme.
+
 
                 </p>
 
                 </p>
 
                 <div class="row">
 
                 <div class="row">
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                 <img src="https://static.igem.org/mediawiki/2017/7/7b/T--OUC-China--hp2-3.jpg" width="350px"/>
 
                 <img src="https://static.igem.org/mediawiki/2017/7/7b/T--OUC-China--hp2-3.jpg" width="350px"/>
 
                 </div>
 
                 </div>
                </div>
+
 
                </div>
+
</div></div>
            </div>
+
        </div>
+
</div>
+
 
      
 
      
     <h3 class="ouc-heading"><strong>Contacts by society</strong></h3>
+
     <h2 class="ouc-heading"><strong>Contacts by society</strong></h2>
 
     <p style="font-size: 20px">
 
     <p style="font-size: 20px">
 
     We linked our projects to real production!
 
     We linked our projects to real production!
 
     </p>
 
     </p>
 
     <p style="font-size: 20px">
 
     <p style="font-size: 20px">
     To combine our projects with real energy production, we visited Qingdao Winsea Group (currently one of the biggest companies in the country carrying out <i>Enteromorpha</i> Salvage and roughing) and established a partnership with them. At the same time, their research and development staff helped assess the prospect of our project and thought highly of it.
+
     To combine our projects with real production, we visited Qingdao Seawin Group (currently one of the biggest companies in the country carrying out <i>Enteromorpha</i> Salvage and roughing) and established a partnership with them. At the same time, their research and development staff helped assess the prospect of our project and thought highly of it.
 
     </p>
 
     </p>
 
      
 
      
    <div class="panel-group" id="accordion">
+
<div class="container" style="border: 1px dotted #66BCC7">
        <div class="panel ">
+
                 <h3 style="color: #E3D434;text-align:center"><strong>Combination with real production</strong></h3>
            <div class="panel-heading ouc-panel-heading">
+
 
                 <h4 class="panel-title"><a data-toggle="collapse" data-parent="#accordion" href="#collapse3"><strong>Combination with real energy production</strong></a></h4>
+
            </div>
+
            <div id="collapse3" class="panel-collapse collapse">
+
                <div class="panel-body">
+
 
                 <p style="font-size: 20px">
 
                 <p style="font-size: 20px">
                 We went to the Qingdao Winsea Group Headquarters and briefed their techni-cians on our project: the development and utilization of algae residue.  
+
                 We introduce our project, using cellulose and hemicellulose from algae residue to produce alcohol, to research staffs of Qingdao Seawin Biotech Group and the principle of the group present their main industry—exploitation of trehalose.  
 
                 </p>
 
                 </p>
 
                
 
                
 
                 <p style="font-size: 20px">
 
                 <p style="font-size: 20px">
                 Ethanol was produced by fermentation of cellulose and hemicellulose from algae residue.
+
                 As volunteers, we came to the product workshop in their industrial base and knew about the whole process of utilizing the <i>Enteromorpha</i>. After that, the researchers assessed our project and gave out a suggestion that can industrialize our ideas: we need to create a complete biological treatment scheme—from residue to alcohol, explore fermentation condition and optimize our engineered cells.
 
                 </p>
 
                 </p>
 +
 +
 +
 +
<p style="font-size: 20px"> 
 +
 +
We will stay in touch with Seawin Biotech over a long term, hoping that our project will be industrialized in the future.
 +
 +
             
 +
</p>
 +
 +
 +
 
                
 
                
                <p style="font-size: 20px">
 
                We went to the Qingdao Winsea Group Jiaozhou Industrial Base,  as volunteers, we learn the entire industrial production process (involving the company confiden-tial part does not allow photo records), and visited the Qingdao Winsea Group's product workshop.
 
                </p>
 
               
 
                <p style="font-size: 20px">
 
                The group's technical staff introduced us to the group's main industries: the utili-zation of <i>Enteromorpha</i>'s polysaccharide.
 
                </p>
 
               
 
                <p style="font-size: 20px">
 
                For our project, the group's research and development staff gave the suggestion of a factory-developed biological treatment program, from algae residue pro-cessing to ethanol production. Factory production needs to explore the strict fer-mentation conditions, as well as the domestication of engineering bacteria and so on.
 
                </p>
 
               
 
                <p style="font-size: 20px">
 
                At the same time, we introduce the development trend of <i>Enteromorpha</i>, the refinement of the use of the ingredients in <i>Enteromorpha</i>, the de-velopment of higher-value products, promotion to the market.
 
                </p>
 
               
 
                <p style="font-size: 20px">
 
                We have established a long term relationship with Qingdao Winsea Group and look forward to the future of our projects can be used in factory production!
 
                </p>
 
 
                 <div class="row">
 
                 <div class="row">
 
                 <div class="col-md-4" style="text-align: center;">
 
                 <div class="col-md-4" style="text-align: center;">
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                 </div>
 
                 </div>
            </div>
+
    
        </div>    
+
    </div>
+
 
      
 
      
 
      
 
      
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     In addition, to spread our ideas and promote the influence of synthetic biology, we carried out a thorough research and started our science popularization work!  
 
     In addition, to spread our ideas and promote the influence of synthetic biology, we carried out a thorough research and started our science popularization work!  
 
     </p>
 
     </p>
    <div class="panel-group" id="accordion">
+
<div class="container" style="border: 1px dotted #66BCC7">
        <div class="panel ">
+
                 <h3 style="color: #E3D434;text-align:center"><strong>Research and publicity work</strong></a></h3>
            <div class="panel-heading ouc-panel-heading">
+
              
                 <h4 class="panel-title"><a data-toggle="collapse" data-parent="#accordion" href="#collapse4"><strong>Research and publicity work</strong></a></h4>
+
 
             </div>
+
            <div id="collapse4" class="panel-collapse collapse">
+
                <div class="panel-body">
+
 
                 <p style="font-size: 20px">
 
                 <p style="font-size: 20px">
                 In order to let more people understand our projects and synthetic biology, we have conducted a full research and publicity work!
+
                 To make more people aware of our project, we conduct a thorough investigation and science popularization!
 
                 </p>
 
                 </p>
 
                 <p style="font-size: 20px">
 
                 <p style="font-size: 20px">
                 We investigate the impact of the eruption of <i>Enteromorpha</i> on tourism and ecological landscape in Qingdao. By consulting the literature, as well as carry-ing out social investigation and visit to the coastal tourist scenic spot in Qingdao, to the social masses for popular science.
+
                 (1)In the form of questionnaire<br/>We submit questionnaire on the Internet and collect information from various stages of society. Our target includes residents near the seaside and tourists from other places. We wonder whether they know the cause of <i>Enteromorpha</i> outbreak and how they plan to make use of <i>Enteromorpha</i> residue. To our surprise, we received 658 copies of questionnaire in all and among most of our informants there is generally a poor understanding of <i>Enteromorpha</i>.
 
                 </p>
 
                 </p>
 
                 <p style="font-size: 20px">
 
                 <p style="font-size: 20px">
                 We produce brochures to educate the public on the current situation of <i>Enteromorpha</i> in Qingdao, and establish correct cognition for the people.
+
                 (2)In the form of science popularization brochure<br/>Through our investigation, we believe there is an urgent need for science popularization. So we designed the brochure and held some lectures. By leading them to collect <i>Enteromorpha</i> from the seaside and explaining to them the cause, current situation and utilization of <i>Enteromorpha</i>, we called on citizens to protect water environment and reduce the amount of outbreaking algae from the source. If everyone lend a hand, our city will certainly makes a better future! Meanwhile, along with our project, we show to the public the charming synthetic biology, which can be used as a useful tool to solve the problems around us!
                </p>
+
                <p style="font-size: 20px">
+
                At the same time, we call on the public to protect the water, the green environ-mentally sustainable ecological concept, advocating the utilization of <i>Enteromorpha</i>. Establish the correct cognition, let the people participate in the work that the Enteromorpha salvage and govern.
+
                </p>
+
                <p style="font-size: 20px">
+
                What’s more, we introduce synthetic biology to the public, and let more people know about synthetic biology, and realize that we can use synthetic biology to solve real problems in our lives.
+
 
                 </p>
 
                 </p>
 +
               
 
                 <div class="row">
 
                 <div class="row">
 
                 <div class="col-md-3" style="text-align: center">
 
                 <div class="col-md-3" style="text-align: center">
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                 </div>
 
                 </div>
             </div>
+
              
        </div> 
+
    
    </div>    
+
     <h2 class="ouc-heading"><strong>Feedback to society</strong></h2>
     <h3 class="ouc-heading"><strong>Feedback to society</strong></h3>
+
 
     <p style="font-size: 20px">
 
     <p style="font-size: 20px">
 
     To give more feedback to society, we proceeded a creative education work!
 
     To give more feedback to society, we proceeded a creative education work!
 
     </p>
 
     </p>
 
<p style="font-size: 20px">
 
<p style="font-size: 20px">
Believing that algae outbreak caused by water pollution do not exist only in our locality, we investigated such environmental problems worldwide by distributing questionnaires in iGEM communities, consulting iGEM teams around the world, searching for relevant research institutes, and making hot maps of it. We hope that there will be more people understanding this kind of environmental problems, aware of its possible applications, thus enhance the protection degree. We also sent the information to Qingdao Winsea Group and related research institutes to assist in their work.  
+
Believing that algae outbreak caused by water pollution do not exist only in our locality, we investigated such environmental problems worldwide by distributing questionnaires in iGEM communities, consulting iGEM teams around the world, searching for relevant research institutes, and making hot maps of it. We hope that there will be more people understanding this kind of environmental problems, aware of its possible applications, thus enhance the protection degree. We also sent the information to Qingdao Seawin Group and related research institutes to assist in their work.  
 
</p>
 
</p>
 
     <p style="font-size: 20px">
 
     <p style="font-size: 20px">
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     Also, we cooperated with many other universities and organized summer camps for primary and secondary school students to spread our thoughts. We introduced our work to young people through social software like WeChat, and even helped iGEM organizing committee apply for social accounts in China Sina Weibo, which is one of the most popular social media in China. We sincerely hope that more people in our country can get to know about iGEM and synthetic biology!  
 
     Also, we cooperated with many other universities and organized summer camps for primary and secondary school students to spread our thoughts. We introduced our work to young people through social software like WeChat, and even helped iGEM organizing committee apply for social accounts in China Sina Weibo, which is one of the most popular social media in China. We sincerely hope that more people in our country can get to know about iGEM and synthetic biology!  
 
     </p>
 
     </p>
     <a href="##">See more details in our education page.</a>
+
     <a href="https://2017.igem.org/Team:OUC-China/Engagement">See more details in our Education page.</a>
 
      
 
      
     <h3 class="ouc-heading"><strong>Communication and cooperation</strong></h3>
+
     <h2 class="ouc-heading"><strong>Communication and cooperation</strong></h2>
 
     <p style="font-size: 20px">
 
     <p style="font-size: 20px">
 
     This year, our team participated in the 3rd Synthetic Biology Young Scholar Forum at Institute of Plant Physiology and Ecology, SIBS, CAS from July 1st to July 2nd, 2017.
 
     This year, our team participated in the 3rd Synthetic Biology Young Scholar Forum at Institute of Plant Physiology and Ecology, SIBS, CAS from July 1st to July 2nd, 2017.

Latest revision as of 14:05, 18 November 2017

Gold

We have d a carried out a full human practice this year!It can be summed up into four perspectives, inspired by society, contacts with society and feedback to society as well as a communication and cooperation section.

Inspired by society

Through the work of human practice, we did plenty of research about Enteromorpha's current condition, application, and related study. The results can feedback to our lab and help modify our project designs.

We conducted a full investigation and analyzed the practical significance, feasibility, and development potential of our projects. To be specific, our work can be divided into two sections: investigating the social and environmental issues lies beneath our project, and adjusting our emphasis of the project according to our research and analyzation.

The social and environmental issues

We have a full investigation of the background of the project: the cause of the Enteromorpha outbreak, the current situation of Enteromorpha outbreak, the application and utilization, the monitoring and forcasting, as well as local people's understanding of Enteromorpha's outbreak. To learn more about its advanced study, we also went to the First Institute of Oceanography, IOCAS, Qingdao Seawin Biotech Group and other places like that to dig deeper of Enteromorpha. There in IOCAS, we acquired knowledge of the influencing factor and reason for Enteromorpha outbreak. In the Qingdao Seawin Group, we volunteered in the processing workshop of the Enteromorpha and learn about the physical pretreatment necessary for our Enteromorpha residue utilization.

Current Situation

Through the investigation, we know that the cause of Enteromorpha outbreak in Qingdao is mainly the excessive discharge of aquaculture waste water from coastal farms. At present, the amount of salvaged Enteromorpha annually is over 70000 tons, which fluctuates slightly on a high level over years. After drying, crushing and other physical pretreatment, Enteromorpha residue is grinded into powder. The polysaccharidesutilization is then extracted from the powder, leaving a second-round residue as fertilizer for farmland. In another word, the utilization rate of Enteromorpha is quite low, with only a little potential exploited.

Causes of outbreak

The huge amount of Enteromorpha in Qingdao's coastal area is mainly formed in the Shoal of northern Jiangsu where there is abundance of local aquaculture, and drifts from south to north into the coastline of Yellow Sea (about 10 kilometers a day).

The main reasons affecting the distribution of Enteromorpha include: the impact of other algae on its growth, the water temperature, the salinity and the nutrients in nearby sea.

Monitoring, forecasting and controling

The North Sea Forecast center of SOA monitors the distribution of Enteromorpha in the Yellow Sea and East China Sea by means of remote satellite sensing. Monitoring data on June 28, 2017 showed that the green tide distributed in over 20,000 square kilometers, covering an area of about 187 square kilometers.

After summarizing all the information collected, from the location of the green tide to theocean current that may affect this area, we can obtain the time-shift information of the green tide patches in the next 72 hours and draw a forecast warning map for the green tide with the support of supercomputer.

Utilization status

The annual salvage of floating algae begins in June and ends in August, during which the company will treat it with mature and complete processing system and produce different levels of Enteromorpha. The daily salvage of Enteromorpha must be treated in time and mustn’t be stored to avoid rotting.

The production is mainly used for foddering and extracting trehalose. Enteromorpha powder is also known to be used as soil conditioner, which improves soil quality by adjusting its pH value and advocating green agriculture.


Feasibility analysis and improvement

At first, we assumed to utilize a kind of engineered cells to degrade cellulose and hemicellulose to ethanol inside Enteromorpha, and to produce cellulase and hemicellulose with our surface display system. Therefore, in February, we came to Beijing University of Chemical Technology to consult Prof. Lihai Fan, an expert in the field of making good use of cellulose, about how to improve our design. Consequently, we found that the metabolic burden of the engineered yeast will be severe and that the degradation efficiency will be low if we only use one kind of cells.

Then, we made a decision that we divide the whole project into two procedures including using enzyme to pretreat the cellulose and hemicellulose into cellodextrin and xylose and using our engineered cells to produce ethanol. At last, we choose four enzyme used in pretreat β-1, 4-Nechemu, β-glycoside, β-dextran, inner β-dextran enzyme.

Contacts by society

We linked our projects to real production!

To combine our projects with real production, we visited Qingdao Seawin Group (currently one of the biggest companies in the country carrying out Enteromorpha Salvage and roughing) and established a partnership with them. At the same time, their research and development staff helped assess the prospect of our project and thought highly of it.

Combination with real production

We introduce our project, using cellulose and hemicellulose from algae residue to produce alcohol, to research staffs of Qingdao Seawin Biotech Group and the principle of the group present their main industry—exploitation of trehalose.

As volunteers, we came to the product workshop in their industrial base and knew about the whole process of utilizing the Enteromorpha. After that, the researchers assessed our project and gave out a suggestion that can industrialize our ideas: we need to create a complete biological treatment scheme—from residue to alcohol, explore fermentation condition and optimize our engineered cells.

We will stay in touch with Seawin Biotech over a long term, hoping that our project will be industrialized in the future.


In addition, to spread our ideas and promote the influence of synthetic biology, we carried out a thorough research and started our science popularization work!

Research and publicity work

To make more people aware of our project, we conduct a thorough investigation and science popularization!

(1)In the form of questionnaire
We submit questionnaire on the Internet and collect information from various stages of society. Our target includes residents near the seaside and tourists from other places. We wonder whether they know the cause of Enteromorpha outbreak and how they plan to make use of Enteromorpha residue. To our surprise, we received 658 copies of questionnaire in all and among most of our informants there is generally a poor understanding of Enteromorpha.

(2)In the form of science popularization brochure
Through our investigation, we believe there is an urgent need for science popularization. So we designed the brochure and held some lectures. By leading them to collect Enteromorpha from the seaside and explaining to them the cause, current situation and utilization of Enteromorpha, we called on citizens to protect water environment and reduce the amount of outbreaking algae from the source. If everyone lend a hand, our city will certainly makes a better future! Meanwhile, along with our project, we show to the public the charming synthetic biology, which can be used as a useful tool to solve the problems around us!

The first three pictures is for us to all ages, each occupation's dissemination of science popularization brochure, carries on the propaganda science populariza-tion.

The last picture is about coastal intertidal zone of the collection of Enteromorpha.

Feedback to society

To give more feedback to society, we proceeded a creative education work!

Believing that algae outbreak caused by water pollution do not exist only in our locality, we investigated such environmental problems worldwide by distributing questionnaires in iGEM communities, consulting iGEM teams around the world, searching for relevant research institutes, and making hot maps of it. We hope that there will be more people understanding this kind of environmental problems, aware of its possible applications, thus enhance the protection degree. We also sent the information to Qingdao Seawin Group and related research institutes to assist in their work.

What's more, education! Since we have had a more innovative conception of synthetic biology and scientific thinking, we spent half a year designing and creating a comic book of synthetic biology, which talks about the biological model of synthetic biology in the way of a series of vivid cartoon stories. We want to make more people understand synthetic biology and love synthetic biology!

Also, we cooperated with many other universities and organized summer camps for primary and secondary school students to spread our thoughts. We introduced our work to young people through social software like WeChat, and even helped iGEM organizing committee apply for social accounts in China Sina Weibo, which is one of the most popular social media in China. We sincerely hope that more people in our country can get to know about iGEM and synthetic biology!

See more details in our Education page.

Communication and cooperation

This year, our team participated in the 3rd Synthetic Biology Young Scholar Forum at Institute of Plant Physiology and Ecology, SIBS, CAS from July 1st to July 2nd, 2017.

In August this year, our team went to Fujian province of China to participate in the China regional iGEM Exchange Meeting (CCiC), a total of nearly 50 Chinese teams participated. We communicated with each other, displayed our posters and also explained our own project. At the same time, we understand the forefront of the field of synthetic biology. In the final project display and poster selection, we won the Best poster award!

While we were communicating, we got many useful advices from other teams and experts, so that we can improve our project.



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