Difference between revisions of "Team:TU Darmstadt/Project/Bio/InVitroDegradation/sec3"

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Since our bioreactor concept is suitable for more pathways than xylan degradation, we searched for another approach to show the functionality of our concept.<br>
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3D printing leads to additional plastic creation and eventually to more garbage. The photopolymer synthesized in the course of this project numbers among the group of polyesters - polymeric structures containing ester functional groups. Since a few decades some of these compounds had become widely manufactured synthetics. Due to rare biodegradable capacity, pollution with plastic garbage became a serious problem.
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Reflecting this problem led us to the idea of inverting the intended polyester production by implementing polyester degradation in the designed <i>in vitro</i> bioreactor.
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Revision as of 03:25, 19 September 2015

Polyester degradation


Abstract

Since our bioreactor concept is suitable for more pathways than xylan degradation, we searched for another approach to show the functionality of our concept.
3D printing leads to additional plastic creation and eventually to more garbage. The photopolymer synthesized in the course of this project numbers among the group of polyesters - polymeric structures containing ester functional groups. Since a few decades some of these compounds had become widely manufactured synthetics. Due to rare biodegradable capacity, pollution with plastic garbage became a serious problem. Reflecting this problem led us to the idea of inverting the intended polyester production by implementing polyester degradation in the designed in vitro bioreactor.


Introduction

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Goal

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Results

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