Difference between revisions of "Team:NYMU-Taipei/HP/Gold Integrated"

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<br>What is the limitation that we haven’t discovered in producing biofuel from algae? Can we make effort to conquer it?</l></p>
 
<br>What is the limitation that we haven’t discovered in producing biofuel from algae? Can we make effort to conquer it?</l></p>
 
                               <p>With the eagerness to find out appropriate and feasible answers to those questions, we were honored to meet with Far East Bio-Tec Company(FEBICO) in their headquarter on July.10 2017.
 
                               <p>With the eagerness to find out appropriate and feasible answers to those questions, we were honored to meet with Far East Bio-Tec Company(FEBICO) in their headquarter on July.10 2017.
                                <img src="https://static.igem.org/mediawiki/2017/e/ea/NYMU_2017_hp_FEBIOCO_5.jpg" />     
 
 
                                 <img src="https://static.igem.org/mediawiki/2017/1/16/NYMU_2017_hp_FEBIOCO_7.jpg" />   
 
                                 <img src="https://static.igem.org/mediawiki/2017/1/16/NYMU_2017_hp_FEBIOCO_7.jpg" />   
                                 <p >Far East Bio-Tec Company is the largest microalgae supplier in Asia, and its clients are located mostly in Japan, Europe, and the USA. Providing high -quality microalgae products to serve public's nutritional, cosmetic and biomedical needs is their primary mission.</p>
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                                <img src="https://static.igem.org/mediawiki/2017/e/ea/NYMU_2017_hp_FEBIOCO_5.jpg" />     
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                                 <p>Far East Bio-Tec Company is the largest microalgae supplier in Asia, and its clients are located mostly in Japan, Europe, and the USA. Providing high -quality microalgae products to serve public's nutritional, cosmetic and biomedical needs is their primary mission.</p>
  
 
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Revision as of 07:11, 21 October 2017

Far East Bio Tec

After months of research on increasing the oil production in algae, we started to construct plasmids which would be used in our project. However, some question arose during the process of conducting our project:
Except “denitrification”, is there any other pathway to increase oil production in algae?
How to maximize the potential of algae and make it play a promising role in producing clean energy?
What is the limitation that we haven’t discovered in producing biofuel from algae? Can we make effort to conquer it?

With the eagerness to find out appropriate and feasible answers to those questions, we were honored to meet with Far East Bio-Tec Company(FEBICO) in their headquarter on July.10 2017.

Far East Bio-Tec Company is the largest microalgae supplier in Asia, and its clients are located mostly in Japan, Europe, and the USA. Providing high -quality microalgae products to serve public's nutritional, cosmetic and biomedical needs is their primary mission.





Department of Chemical Engineering in John Hopkins University

On July 16, 2017, thanks to the help of a senior NYMU-Taipei team participant, we contacted a Ph.D. student from Department of Chemical Engineering at John Hopkins University, Chien Ting Li. Through Skype webcam, we discussed our project with him, including experimental design, theoretical mechanism, and the follow-up application. Chien Ting also shared with us how academics and industries in the US view biomass energy, and how we can improve our co-culture system and simulation model. This exchange was inspirational and fruitful, and we really appreciated that Chien Ting pointed out what we missed in the process of brainstorming.

Academia Sinica

Academia Sinica On July 18th, 2017, to enhance our knowledge on microalgae we visited Academia Sinica, a national academy that supports research in Taiwan. We contacted Professor Chu Hsiu-An, a professor with a Ph.D. in Biochemistry. He works at the Institute of Plant and microbial biology department. He provided us a supply of Synechocystis species PCC6803 that can survive with its high dependence on glucose. He gave us further information on the optimal conditions for the cultivation of algae. We are really grateful that Dr. Chu was willing to provide us with the algae he uses in his lab. We later cultivated our algae in our own lab.

Professor Chen

You-Yin Chen is a professor of biomedical engineering a National Yang-Ming University. He is responsible for the integration of semiconductor process, micro-electromechanical technology, and material science, in order to develop a new generation of nerve wafers. Obviously, our device needs his brilliant skills and guidance. Luckily, he is willing to help us set up the initial architecture of the entire project as well as the erection of the network. Also, he provides us rich resources and technology, and guides us through the establishment of the whole program such as pH sensor, motor, circuit design…etc. Furthermore, he teaches us Arduino development version of the application and design. Most importantly, he suggests that we can use the cloud technology to store more data and keep records. Thanks to Professor Chen, we are able to improve our quality of the device.

Professor Yang

On June 18, 2017, due to the lack of chemicals, NYMU-Taipei team contacted the Teaching Assistant of Department of Life Sciences and Institute of Genome Sciences, National Yang-Ming University, Dr. Nien Chung Yang, who manages the laboratory. Not only did he help us find the required chemicals such as iodine solution, and gradients of breeding medium, BG-11, but also provide us a working operation to prepare the breeding medium. Furthermore, Dr. Yang taught us how to work in experiment safely, and also gave us a lot of experimental advice on lab-working. Thanks to his generous support, we could progress our experiments more smoothly.