Difference between revisions of "Team:Aix-Marseille/Integrated Practices/Environment"

(Biotechnological solutions)
(Biotechnological solutions)
Line 64: Line 64:
 
The '''phytoremdiation''' use plants and their ability to concentrate or destroy pollutant to clean up soils or waters.
 
The '''phytoremdiation''' use plants and their ability to concentrate or destroy pollutant to clean up soils or waters.
 
Plants thriving along the roads are continuously exposed to the metals pollution, so they can be used as a compartments in order to remove pollution.  
 
Plants thriving along the roads are continuously exposed to the metals pollution, so they can be used as a compartments in order to remove pollution.  
Some plant species are well known to accumulate metals as ''Pycnandra acuminata'', see photo. Metals accumulation are sometimes so powerful techniques known as '''Biomining''' are planned to be used. These plants could even be an alternative to classical mining. Since plants are naturally growing along the roadsides and are currently cut off regularly (but not used!) this technique doesn't involve a lot of change in actual proceeding along the roadsides. If all the gathered cut grass is incinerated,  treatment processes starting from the ashes could remove metals, like [https://2016.igem.org/Team:Aix-Marseille/Integrated_Practices/Process | our process]. Such processes are  currently being developed as for ''Alyssum murale '' a plant able to accumulate Nickel too.  
+
Some plant species are well known to accumulate metals as ''Pycnandra acuminata'', see photo. Metals accumulation are sometimes so powerful techniques known as '''Biomining''' are planned to be used. These plants could even be an alternative to classical mining. Since plants are naturally growing along the roadsides and are currently cut off regularly (but not used!) this technique doesn't involve a lot of change in actual proceeding along the roadsides. If all the gathered cut grass is incinerated,  treatment processes starting from the ashes could remove metals, like [https://2016.igem.org/Team:Aix-Marseille/Integrated_Practices/Process our process]. Such processes are  currently being developed as for ''Alyssum murale '' a plant able to accumulate Nickel too.  
[https://2016.igem.org/File:T--Aix-Marseille--nickel_mining.png|thumb|400px|right|''Alyssum murale'' is a plant able to perform biomining on nickel. Techniques are being developed in laboratory to process the ashes and remove metals<ref>Baptiste Laubie, Laboratory LGPB, CNRS</ref>]  
+
[File:T--Aix-Marseille--nickel_mining.png|thumb|400px|right|''Alyssum murale'' is a plant able to perform biomining on nickel. Techniques are being developed in laboratory to process the ashes and remove metals<ref>Baptiste Laubie, Laboratory LGPB, CNRS</ref>]  
  
 
The advantage of phytoremediation is that this process rely on the uses of  biomass, and biomass is produced easily almost everywhere. Biomass can  be used for another purpose before being used to recover precious metals as platinum or to remove from the environment toxic and pollutant metals.
 
The advantage of phytoremediation is that this process rely on the uses of  biomass, and biomass is produced easily almost everywhere. Biomass can  be used for another purpose before being used to recover precious metals as platinum or to remove from the environment toxic and pollutant metals.

Revision as of 18:12, 18 October 2016