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Ashok Kumar Jangid
M.Phil. Nano Sciences
Centre for Nano Sciences
Central university of Gujarat
Sustainable Nano-based technology
1
2
INTRODUCTION
Sustainability
3
Improve quality of human life
Supporting Eco-system
Maintains
Sustainable nano???
using nano products in support of sustainability
Pollution control
Global warming
Agriculture field
Food protection
Health management
Energy conservation
How
Nanotechnology
help us
4
5
Remediation process
A
sustainable approach
Nanotechnology in Remediation (Environmental clean up)
 Removal of pollutants and contaminants from environment as nontoxic
substances
 In remediation technology mainly use: living organism (i.e. (bioremediation)
microbes, fungi, bacteria, plants etc.), chemical substance (i.e. metals NPs,
polymers) and many nano scale materials (i.e. metal oxides, carbon nanotubes,
nanoscale zeolites, fibres etc.)
 Use of nano devices to enhance microbial activity to remove pollutants
6
Bioreactor Approaches:
a
Sustainable technologies
For pollution control
7
Bioreactor to control air pollution
8
 Peat
 Composited waste
 Bark
 Gravels
 Waste plastics
 Fertilizers
 coarse soil
Contaminated Air from buildings
or industries
9
Improvement in bioreactor by nanotechnology
 CNTs-adsorbed toxic
gases
 Nano fibres layers
 Nano catalyst :
MnO removes volatile
organic compounds from
industrial smokestacks
 Adsorbents : Active
carbon fibres, zeolite,
silica.
 Nano based sequence bioreactor has been designed and developed by Prof.
M.H. Fulekar in 2009 for the bioremediation of hazardous waste with the
special reference to dye stuff effluents.
 In the first reactor the physicochemical and microbial characterized effluents
will be taken where in TiO2 nano based semiconductor will be used under the
influence of UV radiation for the oxidation/reduction and chemical degradation
of dye stuff effluents.
 Nano biosensors will be used to observe rate of chemical degradation of the
hazardous compound present in dye stuff effluents.
 First reactor was connected to second bioreactor through the peristaltic pump
where mycorrhizal soil amended with Gold NPs/sand/gravel will be arranged
one below the other on perforated plates at the bottom inside the bioreactor for
trickling the contaminants.
Bioremediation of Dye and Dye Effluent
(A Sequence Bioreactor Approach)
10
nano based Sequence Bioreactor
11
CONCLUSION
12
 This technology will be useful to the Petrochemical industry and Chemical
industry which generates the waste containing compounds such as phenol
 Provide and fundamentally restructure the technologies currently used in
environmental detection, sensing, remediation and pollution removal
 Eco-friendly, No toxic martials formed
 Sustainable for Environment, Social and Economical
13
I don’t want to protect the environment
I want to create a environment where the environment doesn't need protecting
14

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Sustainable nano based technology ppt

  • 1. Ashok Kumar Jangid M.Phil. Nano Sciences Centre for Nano Sciences Central university of Gujarat Sustainable Nano-based technology 1
  • 3. Sustainability 3 Improve quality of human life Supporting Eco-system Maintains
  • 4. Sustainable nano??? using nano products in support of sustainability Pollution control Global warming Agriculture field Food protection Health management Energy conservation How Nanotechnology help us 4
  • 6. Nanotechnology in Remediation (Environmental clean up)  Removal of pollutants and contaminants from environment as nontoxic substances  In remediation technology mainly use: living organism (i.e. (bioremediation) microbes, fungi, bacteria, plants etc.), chemical substance (i.e. metals NPs, polymers) and many nano scale materials (i.e. metal oxides, carbon nanotubes, nanoscale zeolites, fibres etc.)  Use of nano devices to enhance microbial activity to remove pollutants 6
  • 8. Bioreactor to control air pollution 8  Peat  Composited waste  Bark  Gravels  Waste plastics  Fertilizers  coarse soil Contaminated Air from buildings or industries
  • 9. 9 Improvement in bioreactor by nanotechnology  CNTs-adsorbed toxic gases  Nano fibres layers  Nano catalyst : MnO removes volatile organic compounds from industrial smokestacks  Adsorbents : Active carbon fibres, zeolite, silica.
  • 10.  Nano based sequence bioreactor has been designed and developed by Prof. M.H. Fulekar in 2009 for the bioremediation of hazardous waste with the special reference to dye stuff effluents.  In the first reactor the physicochemical and microbial characterized effluents will be taken where in TiO2 nano based semiconductor will be used under the influence of UV radiation for the oxidation/reduction and chemical degradation of dye stuff effluents.  Nano biosensors will be used to observe rate of chemical degradation of the hazardous compound present in dye stuff effluents.  First reactor was connected to second bioreactor through the peristaltic pump where mycorrhizal soil amended with Gold NPs/sand/gravel will be arranged one below the other on perforated plates at the bottom inside the bioreactor for trickling the contaminants. Bioremediation of Dye and Dye Effluent (A Sequence Bioreactor Approach) 10
  • 11. nano based Sequence Bioreactor 11
  • 13.  This technology will be useful to the Petrochemical industry and Chemical industry which generates the waste containing compounds such as phenol  Provide and fundamentally restructure the technologies currently used in environmental detection, sensing, remediation and pollution removal  Eco-friendly, No toxic martials formed  Sustainable for Environment, Social and Economical 13
  • 14. I don’t want to protect the environment I want to create a environment where the environment doesn't need protecting 14