Difference between revisions of "Team:SJTU-BioX-Shanghai/Achievements"
(→Human practices) |
|||
Line 9: | Line 9: | ||
==Human practices== | ==Human practices== | ||
− | + | ===Resource water study=== | |
+ | ===The desalination industry === | ||
+ | ===Cell-water separation consideration=== | ||
+ | #Single use and bio-mass utilization | ||
+ | #Long-term use and collaboration with Nanjing-China team | ||
===Public and government=== | ===Public and government=== | ||
#Post section in Shanghai science museum | #Post section in Shanghai science museum | ||
#Coloring several maps using government data to address water shortage problem in China | #Coloring several maps using government data to address water shortage problem in China | ||
#Discussing with experts the requirements to get government approval | #Discussing with experts the requirements to get government approval | ||
− | |||
− | |||
===Communication with other iGEM team=== | ===Communication with other iGEM team=== | ||
#Nanjing-China: | #Nanjing-China: |
Revision as of 03:20, 19 September 2015
Contents
Experiments
- Construct a red/green light cultivation system.
- Test the expression of HR controlled by Pdark and PcpG2.
- Test the desalination system by simulate the sea water in our lab and measure the desalinization rate.
Human practices
Resource water study
The desalination industry
Cell-water separation consideration
- Single use and bio-mass utilization
- Long-term use and collaboration with Nanjing-China team
Public and government
- Post section in Shanghai science museum
- Coloring several maps using government data to address water shortage problem in China
- Discussing with experts the requirements to get government approval
Communication with other iGEM team
- Nanjing-China:
- collaborate study relating to seawater restoration
- immbolization cooperation
- Communication with 11 teams in small scale meet-up or visits to each other.
- Join 2 issues of Newsletter as writer and participate in 3 surveys online posted on iGEM community
Modeling
- Build an ODEs model to describe the concentration of chloridion variation in the molecule level.
- Simulate the model and plot the result by MATLAB.