SlideShare a Scribd company logo
1 of 46
By: ANJALI KRISHNAN
Department of Botany
The Institute of Science,Mumbai,India
 Open pond system
 Closed pond system
 Air-lift method
 Marine /Open Ocean cultivation
 Desert cultivation
 Photobioreactors
• Types of photobioreactors
 Reference
 Open pond systems can be categorized
into two :
 Natural waters(lakes, lagoons & ponds).
 Artificial ponds or containers .
 The most commonly used systems include
shallow big ponds, tanks, circular ponds
&raceway ponds
 This method have been employed since
1950s.
 The ponds in which the algae cultivated
are known as “raceway ponds”.
 In these ponds, the algae, water,
nutrients, circulate around a race track.
 With the paddle wheels providing the flow,
algae are kept suspended in the water,&
are circulated back to the surface on a
regular frequency.
 The ponds are usually kept shallow
because the algae needs to be exposed to
sunlight ,&sunlight can only penetrate
the pond water to a limited depth .
 The ponds are operated in a continuous
manner with CO2 & nutrients being
constantly fed to the ponds, while algae
containing water is removed at the other
end.
 The algae cultivated are:
o Anabaena
o Nostoc
o Chlorella
o Dunaliella
o Arthrospira
 ADVANTAGE
• One of the major advantages of open
ponds is that it is easier to construct
&operate than the closed ponds.
 DISADVANTAGE
• There is poor light utilization by the cells,
evaporative losses, diffusion of CO2 to the
atmosphere and requirement of large
areas of land
 An alternative to open pond system.
 Control over the environment is much
better than the open ponds.
 A closed pond is to close it off, to cover a
pond or pool with green house.
 Takes care of problems associated with an
open system.
 It allows more species to be grown &
remain dominant.
 The growing season can be extended by
heating.
 It is possible to increase the amount of
CO2 in these quasi-closed systems, there
by increasing the rate of growth of algae.
 The closed systems are usually
constructed using plexiglass.
Horizontal photobioreactors.
 Vertical systems.
 Flat plate reactors.
 This system includes tubes laid on the
ground to form a network of loops.
 Mixing of microalgal suspended culture
occurs through a pump that raises the
culture vertically at timed intervals into a
photobioreactor.
 These reactors use vertical polythene
sleeves hung from an iron frame.
 Glass tubes can also be used
alternatively.
 Microalgae are also cultured in vertical
alveolar panels (VAP)which a type of
photobioreactor .
 2 main types of vertical photobioreactors
are the Flow through VAP & the Bubble
Column VAP.
 Flat plate reactors(FPR)are built using
narrow panels & are placed horizontally to
maximise sunlight input to the system.
 The concept behind FPR is to increase
the surface area to volume ratio such that
the sunlight is effectively used.
 It reduces oxygen build up.
 This method is used in indoor cultivation &
production of microalgae; where air is moved
within a system in order to circulate water
where microalgae is growing.
 The culture is grown in transparent tubes that
lie horizontally on the ground & are connected
by a network of pipes.
 Air is passed through the tube such that air
escapes from the end that rests inside the
reactor that contains the culture & creates an
effect like stirring.
 Spirulina spps
 Marine algae comes in two forms, some
marine algae are small &only be seen
under microscope while others are very
large called macroalgae or seaweeds such
as macrocystis, a species of kelp.
 The most common name of marine algae
is “seaweed”.
 Isochrysis galbana
Tetraselmis spps
Chlorococcum littorale
Synechococcus spps
Chlamydomonas sp.
Nanochloropsis salina
Pheodactylum tricornutum
Dunaliela tertiolecta
Chaetoceros muelleri
Botryococcus braunii
Emiliania huxleyi
 Algae can be grown in salt water ponds in
the deserts.
 Algae cultivation in desert is done for
biodiesel production.
 Haematococcus pluvialis
 Microcoleus vaginatus
 Chlamydomonas perigranulata
 Synechocystis
 A bioreactor is an installation for the
production of microorganisms outside their
natural but inside an artificial environment.
The prefix “photo” particularly describes the
bio-reactors property to cultivate
photoautotrophic microorganisms, or
organisms which grow on by utilizing light
energy like microalgae, macroalgae ,
mosses & cyanobacteria.
 It is a closed equipment which provides a
controlled environment & enable high
productivity of algae.
PBRs facilitate better control of culture
environment such as CO2 supply, water
supply, optimal temperature, efficient
exposure to light, culture density, pH
levels, gas supply rate mixing regime, etc.
1. From the feeding vessel, the flow progress
to the pump which moderates the flow of
the algae into the actual tube.
2. The PBRs itself are used to promote
biological growth by controlling
environmental parameters including light.
The tubes are made up of acrylic & are
designed to have light & dark intervals.
3. The PBR has an built–in cleaning system
that internally cleans the tube without
stopping the production.
4. After the algae have completed the flow
through the PBR, it passes back to the
feeding vessel. As it passes through the
hoses ,the oxygen sensors determine
how much oxygen has been built up in
the plant. It is also at this stage that the
optical cell density sensor determines the
harvesting rate,
5. When the algae is ready for harvesting,
they pass through the connected filtering
system. This filter collects the algae that
are ready for processing, while the
remaining algae passes back to the
feeding vessel.
6. The flow continues.
1. TUBULAR PBRs
 Made up of plastic tubes, tubular
PBRs consist of straight, coiled or looped
transparent tubing arranged in various
ways for maximizing sunlight capture.
2. Christmas Tree Reactor
This reactor is built in a tapered
geometry which carries a helically
attached , translucent double hose circuit
system. The result is a layout similar to a
christmas tree.
A location is not crucial ,& therefore non-
arable land is suitable as well.
3. Flat Plate Reactors
Flat-plate photobioreactors are made of
transparent materials for maximum utilization
of solar light energy. Accumulation of dissolved
oxygen concentrations in flat-plate
photobioreactors is relatively low compared to
horizontal tubular photobioreactors. It has been
reported that with flat-plate photobioreactors,
high photosynthetic efficiencies can be
achieved.
Flat-plate photobioreactors are very suitable
for mass cultures of algae
 www.oilage.com
 www.earthmagzine.com
 www.biotechnologyforums.com
 www.wekipedia.com
 www.google.com
Mass production methods of algae for biofuel

More Related Content

What's hot

Cynobacteria - A Blue Green Algae
Cynobacteria - A Blue Green AlgaeCynobacteria - A Blue Green Algae
Cynobacteria - A Blue Green Algaenishakataria10
 
Importance of fungi in industries
Importance of fungi in industriesImportance of fungi in industries
Importance of fungi in industriesSneha Hp
 
Algae as food
Algae as foodAlgae as food
Algae as foodHoneyM4
 
Microbial insecticides
Microbial insecticidesMicrobial insecticides
Microbial insecticidesIniya Lakshimi
 
Classification of algae
Classification of algaeClassification of algae
Classification of algaesaran96
 
Microbes as biofuels
Microbes as biofuelsMicrobes as biofuels
Microbes as biofuelsshru1604
 
Biofuel production from algae
Biofuel production from algaeBiofuel production from algae
Biofuel production from algaeBipul Das
 
Bacterial chemotaxis swaati
Bacterial chemotaxis swaatiBacterial chemotaxis swaati
Bacterial chemotaxis swaatiSwati Kumari
 
Halophile sfinal.pptx
Halophile sfinal.pptxHalophile sfinal.pptx
Halophile sfinal.pptxSadaatAltaf
 
Algae: general characters and classification
Algae: general characters and classificationAlgae: general characters and classification
Algae: general characters and classificationBIYYANI SUMAN
 
BAROPHILES .pptx
BAROPHILES .pptxBAROPHILES .pptx
BAROPHILES .pptxVaniSahil1
 

What's hot (20)

Cynobacteria - A Blue Green Algae
Cynobacteria - A Blue Green AlgaeCynobacteria - A Blue Green Algae
Cynobacteria - A Blue Green Algae
 
Importance of fungi in industries
Importance of fungi in industriesImportance of fungi in industries
Importance of fungi in industries
 
Microalgae
MicroalgaeMicroalgae
Microalgae
 
Algae as food
Algae as foodAlgae as food
Algae as food
 
Microbial insecticides
Microbial insecticidesMicrobial insecticides
Microbial insecticides
 
Classification of algae
Classification of algaeClassification of algae
Classification of algae
 
Spirulina cultivation
Spirulina cultivationSpirulina cultivation
Spirulina cultivation
 
Microbes as biofuels
Microbes as biofuelsMicrobes as biofuels
Microbes as biofuels
 
Single cell protein
Single cell proteinSingle cell protein
Single cell protein
 
Biofuel production from algae
Biofuel production from algaeBiofuel production from algae
Biofuel production from algae
 
Lichens ppt
Lichens pptLichens ppt
Lichens ppt
 
Bacterial chemotaxis swaati
Bacterial chemotaxis swaatiBacterial chemotaxis swaati
Bacterial chemotaxis swaati
 
Algae as a Food
Algae as a FoodAlgae as a Food
Algae as a Food
 
Halophile sfinal.pptx
Halophile sfinal.pptxHalophile sfinal.pptx
Halophile sfinal.pptx
 
Algae: general characters and classification
Algae: general characters and classificationAlgae: general characters and classification
Algae: general characters and classification
 
Spirulina production.pptx
Spirulina production.pptxSpirulina production.pptx
Spirulina production.pptx
 
Anabaena
AnabaenaAnabaena
Anabaena
 
BAROPHILES .pptx
BAROPHILES .pptxBAROPHILES .pptx
BAROPHILES .pptx
 
Archaebacteria
ArchaebacteriaArchaebacteria
Archaebacteria
 
Viroids
ViroidsViroids
Viroids
 

Similar to Mass production methods of algae for biofuel

Living machine: The Ecological Wastewater Treatment
Living machine: The Ecological Wastewater TreatmentLiving machine: The Ecological Wastewater Treatment
Living machine: The Ecological Wastewater TreatmentSagar Patel
 
Biotechnology in microbiology
Biotechnology in microbiologyBiotechnology in microbiology
Biotechnology in microbiologyDuithy George
 
photo bioreactor types,advantage,disadvantage,contruction
photo bioreactor types,advantage,disadvantage,contructionphoto bioreactor types,advantage,disadvantage,contruction
photo bioreactor types,advantage,disadvantage,contructionGaganKumarJanghel
 
Photo-bioreactor - Norezatul Shahirah bt Ahmad Zamanhuri
Photo-bioreactor - Norezatul Shahirah bt Ahmad ZamanhuriPhoto-bioreactor - Norezatul Shahirah bt Ahmad Zamanhuri
Photo-bioreactor - Norezatul Shahirah bt Ahmad ZamanhuriKhaleeda Karim
 
Sludge treatment by aerobic and anaerobic digestion
Sludge treatment by aerobic and anaerobic digestionSludge treatment by aerobic and anaerobic digestion
Sludge treatment by aerobic and anaerobic digestionYuvarajan Pandiyan
 
YOSUN - A CARBON SEQUESTERING MATERIAL PROCESS
YOSUN - A CARBON SEQUESTERING MATERIAL PROCESSYOSUN - A CARBON SEQUESTERING MATERIAL PROCESS
YOSUN - A CARBON SEQUESTERING MATERIAL PROCESSAoife Fahey
 
Aquaponics forhainan3
Aquaponics forhainan3Aquaponics forhainan3
Aquaponics forhainan3appledragon12
 
Hydroponics, Soil-less Cultivation
Hydroponics, Soil-less CultivationHydroponics, Soil-less Cultivation
Hydroponics, Soil-less CultivationSuyog Khose
 
Cyanobacteria as a Biofertilizer (BY- Ayushi).pptx
Cyanobacteria as a Biofertilizer (BY- Ayushi).pptxCyanobacteria as a Biofertilizer (BY- Ayushi).pptx
Cyanobacteria as a Biofertilizer (BY- Ayushi).pptxAyushiKardam
 
SRK-Blue green algae and their mass multiplication
SRK-Blue green algae and their mass multiplicationSRK-Blue green algae and their mass multiplication
SRK-Blue green algae and their mass multiplicationsivaram Krishna
 
Biological and Advanced Water Treatment.pptx
Biological and Advanced Water Treatment.pptxBiological and Advanced Water Treatment.pptx
Biological and Advanced Water Treatment.pptxYalelet Abera
 
Hazardous Waste Treatment Technologies.pptx
Hazardous Waste Treatment Technologies.pptxHazardous Waste Treatment Technologies.pptx
Hazardous Waste Treatment Technologies.pptxNioLouieReyesBoloron
 
primary and secondary treatment
primary and secondary treatment primary and secondary treatment
primary and secondary treatment wasifhussain22
 

Similar to Mass production methods of algae for biofuel (20)

Srac 5007
Srac 5007Srac 5007
Srac 5007
 
Living machine: The Ecological Wastewater Treatment
Living machine: The Ecological Wastewater TreatmentLiving machine: The Ecological Wastewater Treatment
Living machine: The Ecological Wastewater Treatment
 
Biotechnology in microbiology
Biotechnology in microbiologyBiotechnology in microbiology
Biotechnology in microbiology
 
photo bioreactor types,advantage,disadvantage,contruction
photo bioreactor types,advantage,disadvantage,contructionphoto bioreactor types,advantage,disadvantage,contruction
photo bioreactor types,advantage,disadvantage,contruction
 
Bioreactors ppt atun
Bioreactors ppt atunBioreactors ppt atun
Bioreactors ppt atun
 
Article three
Article threeArticle three
Article three
 
Photo-bioreactor - Norezatul Shahirah bt Ahmad Zamanhuri
Photo-bioreactor - Norezatul Shahirah bt Ahmad ZamanhuriPhoto-bioreactor - Norezatul Shahirah bt Ahmad Zamanhuri
Photo-bioreactor - Norezatul Shahirah bt Ahmad Zamanhuri
 
Sludge treatment by aerobic and anaerobic digestion
Sludge treatment by aerobic and anaerobic digestionSludge treatment by aerobic and anaerobic digestion
Sludge treatment by aerobic and anaerobic digestion
 
YOSUN - A CARBON SEQUESTERING MATERIAL PROCESS
YOSUN - A CARBON SEQUESTERING MATERIAL PROCESSYOSUN - A CARBON SEQUESTERING MATERIAL PROCESS
YOSUN - A CARBON SEQUESTERING MATERIAL PROCESS
 
Aquaponics forhainan3
Aquaponics forhainan3Aquaponics forhainan3
Aquaponics forhainan3
 
Hydroponics, Soil-less Cultivation
Hydroponics, Soil-less CultivationHydroponics, Soil-less Cultivation
Hydroponics, Soil-less Cultivation
 
Cyanobacteria as a Biofertilizer (BY- Ayushi).pptx
Cyanobacteria as a Biofertilizer (BY- Ayushi).pptxCyanobacteria as a Biofertilizer (BY- Ayushi).pptx
Cyanobacteria as a Biofertilizer (BY- Ayushi).pptx
 
Bioreactor
BioreactorBioreactor
Bioreactor
 
Phycology of algae
Phycology of algaePhycology of algae
Phycology of algae
 
Algae cultur
Algae cultur Algae cultur
Algae cultur
 
SRK-Blue green algae and their mass multiplication
SRK-Blue green algae and their mass multiplicationSRK-Blue green algae and their mass multiplication
SRK-Blue green algae and their mass multiplication
 
Bioreactors
BioreactorsBioreactors
Bioreactors
 
Biological and Advanced Water Treatment.pptx
Biological and Advanced Water Treatment.pptxBiological and Advanced Water Treatment.pptx
Biological and Advanced Water Treatment.pptx
 
Hazardous Waste Treatment Technologies.pptx
Hazardous Waste Treatment Technologies.pptxHazardous Waste Treatment Technologies.pptx
Hazardous Waste Treatment Technologies.pptx
 
primary and secondary treatment
primary and secondary treatment primary and secondary treatment
primary and secondary treatment
 

Recently uploaded

ISYU TUNGKOL SA SEKSWLADIDA (ISSUE ABOUT SEXUALITY
ISYU TUNGKOL SA SEKSWLADIDA (ISSUE ABOUT SEXUALITYISYU TUNGKOL SA SEKSWLADIDA (ISSUE ABOUT SEXUALITY
ISYU TUNGKOL SA SEKSWLADIDA (ISSUE ABOUT SEXUALITYKayeClaireEstoconing
 
Concurrency Control in Database Management system
Concurrency Control in Database Management systemConcurrency Control in Database Management system
Concurrency Control in Database Management systemChristalin Nelson
 
Influencing policy (training slides from Fast Track Impact)
Influencing policy (training slides from Fast Track Impact)Influencing policy (training slides from Fast Track Impact)
Influencing policy (training slides from Fast Track Impact)Mark Reed
 
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdf
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdfGrade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdf
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdfJemuel Francisco
 
Keynote by Prof. Wurzer at Nordex about IP-design
Keynote by Prof. Wurzer at Nordex about IP-designKeynote by Prof. Wurzer at Nordex about IP-design
Keynote by Prof. Wurzer at Nordex about IP-designMIPLM
 
How to do quick user assign in kanban in Odoo 17 ERP
How to do quick user assign in kanban in Odoo 17 ERPHow to do quick user assign in kanban in Odoo 17 ERP
How to do quick user assign in kanban in Odoo 17 ERPCeline George
 
ICS2208 Lecture6 Notes for SL spaces.pdf
ICS2208 Lecture6 Notes for SL spaces.pdfICS2208 Lecture6 Notes for SL spaces.pdf
ICS2208 Lecture6 Notes for SL spaces.pdfVanessa Camilleri
 
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptx
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptxMusic 9 - 4th quarter - Vocal Music of the Romantic Period.pptx
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptxleah joy valeriano
 
ROLES IN A STAGE PRODUCTION in arts.pptx
ROLES IN A STAGE PRODUCTION in arts.pptxROLES IN A STAGE PRODUCTION in arts.pptx
ROLES IN A STAGE PRODUCTION in arts.pptxVanesaIglesias10
 
ENGLISH 7_Q4_LESSON 2_ Employing a Variety of Strategies for Effective Interp...
ENGLISH 7_Q4_LESSON 2_ Employing a Variety of Strategies for Effective Interp...ENGLISH 7_Q4_LESSON 2_ Employing a Variety of Strategies for Effective Interp...
ENGLISH 7_Q4_LESSON 2_ Employing a Variety of Strategies for Effective Interp...JhezDiaz1
 
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...Nguyen Thanh Tu Collection
 
Incoming and Outgoing Shipments in 3 STEPS Using Odoo 17
Incoming and Outgoing Shipments in 3 STEPS Using Odoo 17Incoming and Outgoing Shipments in 3 STEPS Using Odoo 17
Incoming and Outgoing Shipments in 3 STEPS Using Odoo 17Celine George
 
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATIONTHEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATIONHumphrey A Beña
 
AUDIENCE THEORY -CULTIVATION THEORY - GERBNER.pptx
AUDIENCE THEORY -CULTIVATION THEORY -  GERBNER.pptxAUDIENCE THEORY -CULTIVATION THEORY -  GERBNER.pptx
AUDIENCE THEORY -CULTIVATION THEORY - GERBNER.pptxiammrhaywood
 
How to Add Barcode on PDF Report in Odoo 17
How to Add Barcode on PDF Report in Odoo 17How to Add Barcode on PDF Report in Odoo 17
How to Add Barcode on PDF Report in Odoo 17Celine George
 
Activity 2-unit 2-update 2024. English translation
Activity 2-unit 2-update 2024. English translationActivity 2-unit 2-update 2024. English translation
Activity 2-unit 2-update 2024. English translationRosabel UA
 
Field Attribute Index Feature in Odoo 17
Field Attribute Index Feature in Odoo 17Field Attribute Index Feature in Odoo 17
Field Attribute Index Feature in Odoo 17Celine George
 

Recently uploaded (20)

LEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptx
LEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptxLEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptx
LEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptx
 
ISYU TUNGKOL SA SEKSWLADIDA (ISSUE ABOUT SEXUALITY
ISYU TUNGKOL SA SEKSWLADIDA (ISSUE ABOUT SEXUALITYISYU TUNGKOL SA SEKSWLADIDA (ISSUE ABOUT SEXUALITY
ISYU TUNGKOL SA SEKSWLADIDA (ISSUE ABOUT SEXUALITY
 
Concurrency Control in Database Management system
Concurrency Control in Database Management systemConcurrency Control in Database Management system
Concurrency Control in Database Management system
 
Influencing policy (training slides from Fast Track Impact)
Influencing policy (training slides from Fast Track Impact)Influencing policy (training slides from Fast Track Impact)
Influencing policy (training slides from Fast Track Impact)
 
YOUVE GOT EMAIL_FINALS_EL_DORADO_2024.pptx
YOUVE GOT EMAIL_FINALS_EL_DORADO_2024.pptxYOUVE GOT EMAIL_FINALS_EL_DORADO_2024.pptx
YOUVE GOT EMAIL_FINALS_EL_DORADO_2024.pptx
 
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdf
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdfGrade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdf
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdf
 
Keynote by Prof. Wurzer at Nordex about IP-design
Keynote by Prof. Wurzer at Nordex about IP-designKeynote by Prof. Wurzer at Nordex about IP-design
Keynote by Prof. Wurzer at Nordex about IP-design
 
How to do quick user assign in kanban in Odoo 17 ERP
How to do quick user assign in kanban in Odoo 17 ERPHow to do quick user assign in kanban in Odoo 17 ERP
How to do quick user assign in kanban in Odoo 17 ERP
 
ICS2208 Lecture6 Notes for SL spaces.pdf
ICS2208 Lecture6 Notes for SL spaces.pdfICS2208 Lecture6 Notes for SL spaces.pdf
ICS2208 Lecture6 Notes for SL spaces.pdf
 
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptx
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptxMusic 9 - 4th quarter - Vocal Music of the Romantic Period.pptx
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptx
 
YOUVE_GOT_EMAIL_PRELIMS_EL_DORADO_2024.pptx
YOUVE_GOT_EMAIL_PRELIMS_EL_DORADO_2024.pptxYOUVE_GOT_EMAIL_PRELIMS_EL_DORADO_2024.pptx
YOUVE_GOT_EMAIL_PRELIMS_EL_DORADO_2024.pptx
 
ROLES IN A STAGE PRODUCTION in arts.pptx
ROLES IN A STAGE PRODUCTION in arts.pptxROLES IN A STAGE PRODUCTION in arts.pptx
ROLES IN A STAGE PRODUCTION in arts.pptx
 
ENGLISH 7_Q4_LESSON 2_ Employing a Variety of Strategies for Effective Interp...
ENGLISH 7_Q4_LESSON 2_ Employing a Variety of Strategies for Effective Interp...ENGLISH 7_Q4_LESSON 2_ Employing a Variety of Strategies for Effective Interp...
ENGLISH 7_Q4_LESSON 2_ Employing a Variety of Strategies for Effective Interp...
 
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...
 
Incoming and Outgoing Shipments in 3 STEPS Using Odoo 17
Incoming and Outgoing Shipments in 3 STEPS Using Odoo 17Incoming and Outgoing Shipments in 3 STEPS Using Odoo 17
Incoming and Outgoing Shipments in 3 STEPS Using Odoo 17
 
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATIONTHEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
 
AUDIENCE THEORY -CULTIVATION THEORY - GERBNER.pptx
AUDIENCE THEORY -CULTIVATION THEORY -  GERBNER.pptxAUDIENCE THEORY -CULTIVATION THEORY -  GERBNER.pptx
AUDIENCE THEORY -CULTIVATION THEORY - GERBNER.pptx
 
How to Add Barcode on PDF Report in Odoo 17
How to Add Barcode on PDF Report in Odoo 17How to Add Barcode on PDF Report in Odoo 17
How to Add Barcode on PDF Report in Odoo 17
 
Activity 2-unit 2-update 2024. English translation
Activity 2-unit 2-update 2024. English translationActivity 2-unit 2-update 2024. English translation
Activity 2-unit 2-update 2024. English translation
 
Field Attribute Index Feature in Odoo 17
Field Attribute Index Feature in Odoo 17Field Attribute Index Feature in Odoo 17
Field Attribute Index Feature in Odoo 17
 

Mass production methods of algae for biofuel

  • 1. By: ANJALI KRISHNAN Department of Botany The Institute of Science,Mumbai,India
  • 2.  Open pond system  Closed pond system  Air-lift method  Marine /Open Ocean cultivation  Desert cultivation  Photobioreactors • Types of photobioreactors  Reference
  • 3.  Open pond systems can be categorized into two :  Natural waters(lakes, lagoons & ponds).  Artificial ponds or containers .  The most commonly used systems include shallow big ponds, tanks, circular ponds &raceway ponds  This method have been employed since 1950s.
  • 4.  The ponds in which the algae cultivated are known as “raceway ponds”.  In these ponds, the algae, water, nutrients, circulate around a race track.  With the paddle wheels providing the flow, algae are kept suspended in the water,& are circulated back to the surface on a regular frequency.  The ponds are usually kept shallow because the algae needs to be exposed to sunlight ,&sunlight can only penetrate
  • 5. the pond water to a limited depth .  The ponds are operated in a continuous manner with CO2 & nutrients being constantly fed to the ponds, while algae containing water is removed at the other end.
  • 6.
  • 7.  The algae cultivated are: o Anabaena o Nostoc o Chlorella o Dunaliella o Arthrospira
  • 8.
  • 9.  ADVANTAGE • One of the major advantages of open ponds is that it is easier to construct &operate than the closed ponds.  DISADVANTAGE • There is poor light utilization by the cells, evaporative losses, diffusion of CO2 to the atmosphere and requirement of large areas of land
  • 10.
  • 11.  An alternative to open pond system.  Control over the environment is much better than the open ponds.  A closed pond is to close it off, to cover a pond or pool with green house.  Takes care of problems associated with an open system.  It allows more species to be grown & remain dominant.  The growing season can be extended by heating.
  • 12.  It is possible to increase the amount of CO2 in these quasi-closed systems, there by increasing the rate of growth of algae.  The closed systems are usually constructed using plexiglass.
  • 13. Horizontal photobioreactors.  Vertical systems.  Flat plate reactors.
  • 14.  This system includes tubes laid on the ground to form a network of loops.  Mixing of microalgal suspended culture occurs through a pump that raises the culture vertically at timed intervals into a photobioreactor.
  • 15.
  • 16.  These reactors use vertical polythene sleeves hung from an iron frame.  Glass tubes can also be used alternatively.  Microalgae are also cultured in vertical alveolar panels (VAP)which a type of photobioreactor .  2 main types of vertical photobioreactors are the Flow through VAP & the Bubble Column VAP.
  • 17.
  • 18.
  • 19.
  • 20.  Flat plate reactors(FPR)are built using narrow panels & are placed horizontally to maximise sunlight input to the system.  The concept behind FPR is to increase the surface area to volume ratio such that the sunlight is effectively used.  It reduces oxygen build up.
  • 21.
  • 22.
  • 23.  This method is used in indoor cultivation & production of microalgae; where air is moved within a system in order to circulate water where microalgae is growing.  The culture is grown in transparent tubes that lie horizontally on the ground & are connected by a network of pipes.  Air is passed through the tube such that air escapes from the end that rests inside the reactor that contains the culture & creates an effect like stirring.
  • 24.
  • 26.  Marine algae comes in two forms, some marine algae are small &only be seen under microscope while others are very large called macroalgae or seaweeds such as macrocystis, a species of kelp.  The most common name of marine algae is “seaweed”.
  • 27.  Isochrysis galbana Tetraselmis spps Chlorococcum littorale Synechococcus spps Chlamydomonas sp. Nanochloropsis salina Pheodactylum tricornutum Dunaliela tertiolecta Chaetoceros muelleri Botryococcus braunii Emiliania huxleyi
  • 28.
  • 29.  Algae can be grown in salt water ponds in the deserts.  Algae cultivation in desert is done for biodiesel production.
  • 30.  Haematococcus pluvialis  Microcoleus vaginatus  Chlamydomonas perigranulata  Synechocystis
  • 31.
  • 32.  A bioreactor is an installation for the production of microorganisms outside their natural but inside an artificial environment. The prefix “photo” particularly describes the bio-reactors property to cultivate photoautotrophic microorganisms, or organisms which grow on by utilizing light energy like microalgae, macroalgae , mosses & cyanobacteria.
  • 33.  It is a closed equipment which provides a controlled environment & enable high productivity of algae. PBRs facilitate better control of culture environment such as CO2 supply, water supply, optimal temperature, efficient exposure to light, culture density, pH levels, gas supply rate mixing regime, etc.
  • 34. 1. From the feeding vessel, the flow progress to the pump which moderates the flow of the algae into the actual tube. 2. The PBRs itself are used to promote biological growth by controlling environmental parameters including light. The tubes are made up of acrylic & are designed to have light & dark intervals.
  • 35. 3. The PBR has an built–in cleaning system that internally cleans the tube without stopping the production. 4. After the algae have completed the flow through the PBR, it passes back to the feeding vessel. As it passes through the hoses ,the oxygen sensors determine how much oxygen has been built up in the plant. It is also at this stage that the optical cell density sensor determines the harvesting rate,
  • 36. 5. When the algae is ready for harvesting, they pass through the connected filtering system. This filter collects the algae that are ready for processing, while the remaining algae passes back to the feeding vessel. 6. The flow continues.
  • 37.
  • 38. 1. TUBULAR PBRs  Made up of plastic tubes, tubular PBRs consist of straight, coiled or looped transparent tubing arranged in various ways for maximizing sunlight capture.
  • 39.
  • 40.
  • 41. 2. Christmas Tree Reactor This reactor is built in a tapered geometry which carries a helically attached , translucent double hose circuit system. The result is a layout similar to a christmas tree. A location is not crucial ,& therefore non- arable land is suitable as well.
  • 42.
  • 43. 3. Flat Plate Reactors Flat-plate photobioreactors are made of transparent materials for maximum utilization of solar light energy. Accumulation of dissolved oxygen concentrations in flat-plate photobioreactors is relatively low compared to horizontal tubular photobioreactors. It has been reported that with flat-plate photobioreactors, high photosynthetic efficiencies can be achieved. Flat-plate photobioreactors are very suitable for mass cultures of algae
  • 44.
  • 45.  www.oilage.com  www.earthmagzine.com  www.biotechnologyforums.com  www.wekipedia.com  www.google.com