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<img src="https://static.igem.org/mediawiki/2018/9/9b/T--SDSZ_China--37.jpeg" class="rounded mx-auto d-block" alt="..." width="37%" height="37%" style="Padding:0px"> | <img src="https://static.igem.org/mediawiki/2018/9/9b/T--SDSZ_China--37.jpeg" class="rounded mx-auto d-block" alt="..." width="37%" height="37%" style="Padding:0px"> | ||
− | <p style="color:black;top:531px;left: | + | <p style="color:black;top:531px;left:540px;wdith:950px;height:100px;position:absolute;right:100px;">Large scale of industrial production requires storage system of raw materials that ensures both the stable quality of reactants and the convenient applicability of them for further treatments.<br> |
In our design, the first unit of the machine functions to eliminate physical impurities mixed in the raw materials and as a container of the treated materials.<br> | In our design, the first unit of the machine functions to eliminate physical impurities mixed in the raw materials and as a container of the treated materials.<br> | ||
The storing compartment mentioned above is installed with an electric fan, heating device and a discharge gate. <br> | The storing compartment mentioned above is installed with an electric fan, heating device and a discharge gate. <br> | ||
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</header> | </header> | ||
<p style="color:black;font-size:35px;"> | <p style="color:black;font-size:35px;"> | ||
− | Overview<br><br> | + | <b>Overview</b><br><br> |
− | To further purify and completely abstract chitin from crystalized lobster shells, another step of treatment is necessary for the completion of the process, which is the removal of minerals (especially calcium) inside the shells. | + | To further purify and completely abstract chitin from crystalized lobster shells, another step of treatment is necessary for the completion of the process, which is the removal of minerals (especially calcium) inside the shells. <br><br> |
− | Reaction theory<br><br> | + | |
+ | <b>Reaction theory</b><br><br> | ||
We decided to use hydrogen chloride to dissolve and remove the calcium inside the shells and adopted the similar design of how we treat the materials with alkali. Since there are no specific criteria in market on the use of acid in chitosan production, we used the exoskeleton of lobsters to experiment and found out that acid with the concentration of 5mol/L is the most effective dose in industry conversion. | We decided to use hydrogen chloride to dissolve and remove the calcium inside the shells and adopted the similar design of how we treat the materials with alkali. Since there are no specific criteria in market on the use of acid in chitosan production, we used the exoskeleton of lobsters to experiment and found out that acid with the concentration of 5mol/L is the most effective dose in industry conversion. | ||
− | + | <b>Mechanical Design</b><br><br> | |
Considering that the removal of minerals also requires the renewal of acid solution during the complete reaction, we adopted our mechanical design of the materials’ reaction with alkali. <br> | Considering that the removal of minerals also requires the renewal of acid solution during the complete reaction, we adopted our mechanical design of the materials’ reaction with alkali. <br> |
Revision as of 01:49, 18 October 2018