freshwater recirculation systems. recirculating system - 60% system components –solids filter...

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Freshwater recirculation systems

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Page 1: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Freshwater recirculation systems

Page 2: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Recirculating system - 60%

• System components– solids filter– tanks– aeration

Page 3: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Recirculating system 90%

• System components– solids filter– tanks– Aeration– Degasser (CO2)– biological filter– buffering systems

Page 4: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Recirculating system 98%

• System components– solids filter– tanks– Aeration– Degasser (CO2)– biological filter– buffering systems– Anaerobic biofiltration– disinfection

Page 5: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

System Components

• Primary– Tanks– Solids filter– Biofilter– Aeration– Tanks

• Secondary – Pumps– Lighting– Disinfection

Page 6: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Components of a Recirculating Aquaculture System continued

2. Biofiltration continued

Engineered forms:• Submerged•Fluidized beds• Emerged•Trickling/RBC•Combinations

Page 7: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Solids Filtration

• Sources– Fish wastes– Uneaten food

• Types– Settable– Suspended– Fine and dissolved

Pressurized downflow sand filter

Page 8: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Solids Filtration

• Settable solids (gravity removal)– Sediment trap– Settling tank– Hydrocyclone

(swirl separator)

Gravity SumpGravity Sump

Page 9: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Solids Removal

• Suspended Solids (non-gravity)– Screen filtration– Expandable granular media

• Downflow (fine sand)• Upflow (course sand)

Screen filtersScreen filters

Screen

Suction

Page 10: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Solids Filtration

• Fine and dissolved solids– Foam Fractionation

• Principle– Particles attach

to bubbles thatrise throughtube.

Page 11: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Biological Filtration• Sources

– Fish metabolism

• Function– Nitrification

• Oxidizes ammonia and nitrite to nitrate

NONO33-- NHNH33

1½ O1½ O22

nitrosomonasnitrosomonas nitrobacternitrobacter

1½ O1½ O22 NONO22

--

Page 12: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Types of Bio-filters

• Submerged filters– Simple– Inefficient

• Trickling filters– Simple– Aerates

Submerged filterSubmerged filter

Page 13: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Oxygenation• Non-pressurized

• Downflow bubble contactor (DBC)• Counter current diffusion

column• U-tube diffusers

U-tubeU-tubeDBCDBC

Page 14: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Degassing

• spray tower

• packed column

packed column

Page 15: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Bicarbonate Drip• Rational

– CO2 removal (<20 mg/L)• from respiration

– Buffering• nitrification is an acidifying process

• Purpose– Adds alkalinity to water

Page 16: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Recirculating Aquaculture System Components continued

2. Biofiltration continuedIdeal characteristics:• Large surface area: volume ratios•Long-lasting• Cheap•Light

KaldnesB-cell

198 m2/m3 152 m2/m3

Page 17: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Recirculating Aquaculture System Components continued

2. Biofiltration continued

TAN

NO2

NO3

time (days)

mg

l- 1

0 40

15

Page 18: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Particulate removal

Removal by:• Gravity separation•Filtration•Flotation

0.001 0.01 0.1 1 10 100 1000

supra colloidal

settleable

colloidal

dissolved

Particle size

Page 19: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Particulate removal

10 25 50 75 100

fractionation

sedimentation

granular filters

microscreens

Particle size

cartridge filter

Optional treatment Main treatment Pretreatment

coarse screen

Most effective solids removal processes and particle range

Page 20: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Recirculation systems

Page 21: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Biological filtration

• Biological filtration is the use bacteria to removal of waste metabolites that accumulate from keeping, feeding and growing fish in a closed recirculating system.

• After oxygen, it is the accumulation of ammonia - the waste metabolite from protein digestion - that is probably the most limiting factor affecting the success of operating closed recirculation systems.

Page 22: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Biological filtration• The removal of ammonia (NH3) by

oxidation to nitrite (NO2) and finally nitrate (NO3) is carried out by the bacteria Nitrosomonas sp. and Nitrobacter sp. respectively. This process is known as nitrification.

• Un-ionised ammonia and nitrite are both toxic to fish at relatively low concentrations whereas nitrate, the end product of nitrification, is relatively non-toxic at even quite high concentrations.

Page 23: Freshwater recirculation systems. Recirculating system - 60% System components –solids filter –tanks –aeration

Biological filtration

• The rate of nitrification is optimal around 30°C.

• The particular size and type of filtration equipment needed will depend on a number of factors including,

• the type of fish,

• the biomass of fish,

• the amount of food fed

• the temperature of the water.