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多功能气泡净化船
(Multifunctionalbubbletreatmentship)
SEUNG-UK LEE
ULIM CONSTRUCTION CO.,
Onsite algae harvesting using micro and nano (sub-micron) bubbles
Contents
Technology of Microbubble
Technology of Nanobubble
Application cases
Additional Technologies
1
Present situations of rivers and lakes
Wastewater
(N,P)
Bacteria
Lack of
oxygen
Deposition
SS
Organism
& Ecology
Membrane
& Filtration
Chemicals Aeration
2
Bursting
Flotation
Clean material Mass transfer
Characteristics of Bubbles
Come Empty, Return Empty
3
SNU Sustainable Water Management Research Center
Research
papers+SCI
98+67 건
Patents 63 건
Awards 28 건
Media reports 217 건
Projects 42 건
Ministry of Oceans
and Fisheries
Ministry of Environment
Ministry of Land,
Infrastructure and
Transport
Head of research
center
(Prof. Mooyoung Han)
Microbubble
A. Prof.H.Park
Thuy (doctor´s course)
S.Baek (master)
Muhamad(master's course)
Nanobubble
A. Prof.T
.Kim
H. Kim (doctor´s course)
Canh (doctor´s course)
Tatek(doctor´scourse)
Application
A. Prof. M. Kim
Shervin (doctor´s course)
Gita (master's course)
S.Yoon (master's course)
4
1. Technology of
Microbubble
5
Micro bubble (Fine bubble)
30 ㎛  1/2 of the hair thickness
(a)
0.4 min
6
(b)
0.8 min
(c)
1.2 min
(d)
1.6 min
(e)
2.0 min
5. Various applications
4. ISO
3. Development of the low-cost & high efficiency
tailoring bubble generator
2. Measurement & control of bubble and particle properties
1. Modeling
Major technologies (MB)
7
Removal of natural water pollutants
Water
pollutants
1.Water
pollutants
2.
Sediment
8
2. Technology of
Nanobubble
9
Nano bubble (Ultrafine bubble)
coalescence
Bursting
Micro bubble
Before Ultrasonic waves After Ultrasonic waves
Ultrasonic waves
coalescence
Micro bubble Macro bubble
Bubble size (㎛)
Nano bubble Micro bubble
100 ~ 1,000 nm 1
Aeration
2,000 ㎛
DAF (Dissolved Air Flotation)
30 ~50 ㎛
10 20 30 40 60
100
80
10
Rising Velocity
Surface area (at same volume)
Major technologies (NB)
50㎛
- Air volume
- Surfacearea
- Number
…
500㎚(0.5㎛)
: 1: 1
: 1: 100
: 1: 1,000,000
- Size : about500㎚
- Rising velocity : 4.58X 10-7m/s≒0
- Theoreticalrisingvelocity: 7.5㎜risingperday
Mass transfer
efficiency↑
(Aeration efficiency)
Surface area↑
Rising velocity↓
Nanobubble
1. Generation of nanobubbles
3. Characterization of nanobubbles 4. Development & application
2. Confirmation of theexistence
11
Removal of natural water pollutants
MB NB
3. Organic
oxidation
4.
Separation
/ Disinfection
5. Oxygen
injection
12
3. Application cases
(Multifunctional bubble treatmentship)
13
Overview - Multifunctional bubble treatment ship
NB
generator
MB
generator
Sludge
collection
Chemical feed Control panel
ultrasonic
generator
outboard
motor
Oxygen generator Generator
1. Water
pollutants
2.
Sediment
3. Organic
oxidation
4.
Separation
/Disinfection
5.
Oxygen
injection
14
Technical detail 1. Micro bubble
Lake/
River
Inflow
controller
Chemical
feeder
Air
Compressor
MB
generator
+ MB
Water
Pollutants
removal
Sediment
removal
Low cost & high
efficiency bubble
generator
No clogging
nozzle
Tailoring MB
generator
Automatic
injection
control system
Process Flow Diagram
MB generator + Chemical feeder
15
Technical detail 2. Nano bubble
Unnecessary
facilities to
eliminate ozone
NB residence
time : 6 days
Medium/Large
NB generator
PFR
AOP
Lake/
River
Inflow
controller
Oxygen
generator
Ozone
generator
NB
Bubble
Bursting
device
NB
generator
Air
compressor
Separation
Disinfection
Organic
oxidation
Oxygen
injection
Process Flow Diagram
NB generator + Organic oxidation device
+ Bubble bursting device + Air compressor
16
Item Time Item Time
① Sediment 1.5 min ⑤ Organic oxidation 2 min
② Water pollutant 1.5 min ⑥ Separation
& Disinfection
2 min
③ Floating 5 min ⑦ Oxygen injection 2 min
④ Sludge collection 2 min Total time 6.5 min
Operating Specification
Optimal operation according to river and lake types
Operation and Maintenance
Item Content
Mean velocity
Maximum velocity
Operator 2 (Engineerier1, assistant1)
Operating distance 300 m/hr (width 3.0 m)
Average surface area
treated per day
Average daily
throughput
Sludge Storage 3.0 m3
Power consumption 25.2 kW
Chemical feed 8 ppm
Fuel Diesel, Gasoline
*River width : 20 m, Depth : 1.5 m, Length :10 km
NB
generator
MB
generator
Sludge
collection
①
17
②
③
Operation method
Processing order
④
⑤
⑥
⑦
R lake, Jeollabuk-do S lake, Seoul
P lake, Gyeonggi-do
18
[Large size] Multifunctional bubble treatmentship
 Removal of pollutants in water
(turbid water, algae, etc.)
 Non-powered dehydration
 Field assembly and installation
 Daily throughput : 2,113 m3/hr
 Pretreatment of water purification plant
 Cityscape improvement
S lake, Jeollanam-do
[Medium size] Multifunctional bubble treatmentship
Before
After
19
 Removal of pollutants in water (algae,
agricultural wastewater, etc)
 Sediment removal
 Reduction of algae currentcycle
 Daily throughput : 1,200 m3/hr
 Field assembly and installation
C lake, Gyeonggi-do
[Small size] Multifunctional bubble treatmentship
 Removal of pollutants in water (algae, wastewater, etc.)
 Drum type scum collection(throughput ↑)
 Organic oxidation
 Oxygen injection
 Daily throughput : 512 m3/hr
20
4. Additional
Technologies
21
Soil washing process using bubbles(1) - overview
1st step : Separation process 2nd step : Water treatment process
Conveyor belt
Conveyor belt
(+) bubble
(-) bubble
Scum outlet
Polluted sands
& gravels
Rotary kiln
Treated water (recycle ratio : 15 %)
22
Raw sample Water (+) & (-) bubble
Treated
water
Treated
sands
Soil washing process using bubbles(2) - Results
23
Natural water management using Drone
B
1. GIS electronic map for drone
2. Autopilot
3. Image analysis technique using satellite
4. Pollution analysis and monitoring / alarm
24
ULIM CONSTRUCTION CO.,
LTD.
Sludge collection + Buoyancy + Electricity
Technical detail 3. Body of a ship, etc.
Drum type scum collection Small size 
Container
Catamaran  Secure space
Drum type scum collection  throughput ↑
Non-powered mixer
21
Step 3
Hydroponics Park
Vegetation Site
Step 2
Complex natural
mineral filter
Step 1
Functional
pump room
Step 4
Nanobubble
Overview
Treatment effect
Water quality management using filtration & bubbles
29
Sludge Composting
Sludge Additive
Dry molding
Potassium silicate
fertilizer
Plasticity
26
Description Specification Q'ty Unit Price Total price (KRW) Total price (CNY)
MB generator, etc.
compressor 380V, Ø3, 2.2kW 1 850,000 850,000 5,185
Voltex pump 9m3/hr,60mH380V, ø3, 5.5kW 1 800,000 800,000 4,880
혼화장치 180 rpm 2 300,000 600,000 3,660
Chemical dosingsystem 60mL/min,10mH380V, ø3, 60hz 1 650,000 650,000 3,965
Base, pipe, elbow, socket, cap, tank valve. PE, 200L 1 550,000 550,000 3,355
NB generator, etc.
(Organic oxidation device
, Bubble bursting device ,
Air compressor)
Mixing chamberSet FRAME etc. 1 8,000,000 8,000,000 48,800
Controlled volumepump 380V, Ø3, 60hz 1500, 1/5,200W 1 153,000 153,000 933
External case 220V, Ø2, 60hz, 100bar,2.2kW 1 850,000 850,000 5,185
Control panel STS/GC200 1 500,000 500,000 3,050
Oxygen demandregulator STS304 1 1,000,000 1,000,000 6,100
Flow meter STS etc. 1 500,000 500,000 3,050
Pipe, Hose GD-25S(25KVA) 1 9,100,000 9,100,000 55,510
AOP 15TML 15HP 1 2,980,000 2,980,000 18,178
Body of ship, etc.
(Skimmer, generator, outboard
Motor, etc.)
Ship body, skimmerstorage tank, Hand Rai SS400+STS 1 32,000,000 32,000,000 195,200
Skimmerprocessing SS400, STS 1 500,000 500,000 3,050
Skimmermotor NMRV040+1/100 +TXF002,0.2kW 1 300,000 300,000 1,830
Skimmer screwjack UJ44-ICLFN500 2 440,000 880,000 5,368
Sludge storagetank SS400, 1.8m3 1 3,000,000 3,000,000 18,300
Sludge transfertank 50L/min,10mH 380V, ø3, 4P 1 800,000 800,000 4,880
Panitng 3m3/hr, 220V,1.2Hp 1 1,000,000 1,000,000 6,100
Pipe, Hose STS304/rubber 1 500,000 500,000 3,050
Assembly 1 4,000,000 4,000,000 24,400
Local controlpanel SS400 etc. 1 9,500,000 9,500,000 57,950
Production cost 79,013,000 481,979
Transportation cost 540,000 3.294
Operation & maintenance cost 22,000,000 134,200
Total cost 101,553,000 619,473
23
* Conditions : FOB, Production in Korea, Period, Pretax cost, Water quality standard, Surface area treated, etc.
Demonstration project budget (Proposal)
Consultation & Expected schedule
5 Days 30 Days 15 Days 15 Days 5 Days
Consultation
 Site selection: Lake or River (width:20m, depth:1.5m, velocity:0.2m/s)
 Determination of standard (River environmental quality standard;
Turbidity, SS, chlorophyll -a, COD)
 Condition determination (Period, Cost, Length, etc.)
 Determination of application technology
 Consortium Composition
Schedule
24
Field
survey
Evaluation
Project
Trans-
portation
Production
4. Demonstration Project
17

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Seunguk-Lee-converted.pptx

  • 1. 多功能气泡净化船 (Multifunctionalbubbletreatmentship) SEUNG-UK LEE ULIM CONSTRUCTION CO., Onsite algae harvesting using micro and nano (sub-micron) bubbles
  • 2. Contents Technology of Microbubble Technology of Nanobubble Application cases Additional Technologies 1
  • 3. Present situations of rivers and lakes Wastewater (N,P) Bacteria Lack of oxygen Deposition SS Organism & Ecology Membrane & Filtration Chemicals Aeration 2
  • 4. Bursting Flotation Clean material Mass transfer Characteristics of Bubbles Come Empty, Return Empty 3
  • 5. SNU Sustainable Water Management Research Center Research papers+SCI 98+67 건 Patents 63 건 Awards 28 건 Media reports 217 건 Projects 42 건 Ministry of Oceans and Fisheries Ministry of Environment Ministry of Land, Infrastructure and Transport Head of research center (Prof. Mooyoung Han) Microbubble A. Prof.H.Park Thuy (doctor´s course) S.Baek (master) Muhamad(master's course) Nanobubble A. Prof.T .Kim H. Kim (doctor´s course) Canh (doctor´s course) Tatek(doctor´scourse) Application A. Prof. M. Kim Shervin (doctor´s course) Gita (master's course) S.Yoon (master's course) 4
  • 7. Micro bubble (Fine bubble) 30 ㎛  1/2 of the hair thickness (a) 0.4 min 6 (b) 0.8 min (c) 1.2 min (d) 1.6 min (e) 2.0 min
  • 8. 5. Various applications 4. ISO 3. Development of the low-cost & high efficiency tailoring bubble generator 2. Measurement & control of bubble and particle properties 1. Modeling Major technologies (MB) 7
  • 9. Removal of natural water pollutants Water pollutants 1.Water pollutants 2. Sediment 8
  • 11. Nano bubble (Ultrafine bubble) coalescence Bursting Micro bubble Before Ultrasonic waves After Ultrasonic waves Ultrasonic waves coalescence Micro bubble Macro bubble Bubble size (㎛) Nano bubble Micro bubble 100 ~ 1,000 nm 1 Aeration 2,000 ㎛ DAF (Dissolved Air Flotation) 30 ~50 ㎛ 10 20 30 40 60 100 80 10
  • 12. Rising Velocity Surface area (at same volume) Major technologies (NB) 50㎛ - Air volume - Surfacearea - Number … 500㎚(0.5㎛) : 1: 1 : 1: 100 : 1: 1,000,000 - Size : about500㎚ - Rising velocity : 4.58X 10-7m/s≒0 - Theoreticalrisingvelocity: 7.5㎜risingperday Mass transfer efficiency↑ (Aeration efficiency) Surface area↑ Rising velocity↓ Nanobubble 1. Generation of nanobubbles 3. Characterization of nanobubbles 4. Development & application 2. Confirmation of theexistence 11
  • 13. Removal of natural water pollutants MB NB 3. Organic oxidation 4. Separation / Disinfection 5. Oxygen injection 12
  • 14. 3. Application cases (Multifunctional bubble treatmentship) 13
  • 15. Overview - Multifunctional bubble treatment ship NB generator MB generator Sludge collection Chemical feed Control panel ultrasonic generator outboard motor Oxygen generator Generator 1. Water pollutants 2. Sediment 3. Organic oxidation 4. Separation /Disinfection 5. Oxygen injection 14
  • 16. Technical detail 1. Micro bubble Lake/ River Inflow controller Chemical feeder Air Compressor MB generator + MB Water Pollutants removal Sediment removal Low cost & high efficiency bubble generator No clogging nozzle Tailoring MB generator Automatic injection control system Process Flow Diagram MB generator + Chemical feeder 15
  • 17. Technical detail 2. Nano bubble Unnecessary facilities to eliminate ozone NB residence time : 6 days Medium/Large NB generator PFR AOP Lake/ River Inflow controller Oxygen generator Ozone generator NB Bubble Bursting device NB generator Air compressor Separation Disinfection Organic oxidation Oxygen injection Process Flow Diagram NB generator + Organic oxidation device + Bubble bursting device + Air compressor 16
  • 18. Item Time Item Time ① Sediment 1.5 min ⑤ Organic oxidation 2 min ② Water pollutant 1.5 min ⑥ Separation & Disinfection 2 min ③ Floating 5 min ⑦ Oxygen injection 2 min ④ Sludge collection 2 min Total time 6.5 min Operating Specification Optimal operation according to river and lake types Operation and Maintenance Item Content Mean velocity Maximum velocity Operator 2 (Engineerier1, assistant1) Operating distance 300 m/hr (width 3.0 m) Average surface area treated per day Average daily throughput Sludge Storage 3.0 m3 Power consumption 25.2 kW Chemical feed 8 ppm Fuel Diesel, Gasoline *River width : 20 m, Depth : 1.5 m, Length :10 km NB generator MB generator Sludge collection ① 17 ② ③ Operation method Processing order ④ ⑤ ⑥ ⑦
  • 19. R lake, Jeollabuk-do S lake, Seoul P lake, Gyeonggi-do 18 [Large size] Multifunctional bubble treatmentship  Removal of pollutants in water (turbid water, algae, etc.)  Non-powered dehydration  Field assembly and installation  Daily throughput : 2,113 m3/hr  Pretreatment of water purification plant  Cityscape improvement
  • 20. S lake, Jeollanam-do [Medium size] Multifunctional bubble treatmentship Before After 19  Removal of pollutants in water (algae, agricultural wastewater, etc)  Sediment removal  Reduction of algae currentcycle  Daily throughput : 1,200 m3/hr  Field assembly and installation
  • 21. C lake, Gyeonggi-do [Small size] Multifunctional bubble treatmentship  Removal of pollutants in water (algae, wastewater, etc.)  Drum type scum collection(throughput ↑)  Organic oxidation  Oxygen injection  Daily throughput : 512 m3/hr 20
  • 23. Soil washing process using bubbles(1) - overview 1st step : Separation process 2nd step : Water treatment process Conveyor belt Conveyor belt (+) bubble (-) bubble Scum outlet Polluted sands & gravels Rotary kiln Treated water (recycle ratio : 15 %) 22
  • 24. Raw sample Water (+) & (-) bubble Treated water Treated sands Soil washing process using bubbles(2) - Results 23
  • 25. Natural water management using Drone B 1. GIS electronic map for drone 2. Autopilot 3. Image analysis technique using satellite 4. Pollution analysis and monitoring / alarm 24
  • 27. Sludge collection + Buoyancy + Electricity Technical detail 3. Body of a ship, etc. Drum type scum collection Small size  Container Catamaran  Secure space Drum type scum collection  throughput ↑ Non-powered mixer 21
  • 28. Step 3 Hydroponics Park Vegetation Site Step 2 Complex natural mineral filter Step 1 Functional pump room Step 4 Nanobubble Overview Treatment effect Water quality management using filtration & bubbles 29
  • 29. Sludge Composting Sludge Additive Dry molding Potassium silicate fertilizer Plasticity 26
  • 30. Description Specification Q'ty Unit Price Total price (KRW) Total price (CNY) MB generator, etc. compressor 380V, Ø3, 2.2kW 1 850,000 850,000 5,185 Voltex pump 9m3/hr,60mH380V, ø3, 5.5kW 1 800,000 800,000 4,880 혼화장치 180 rpm 2 300,000 600,000 3,660 Chemical dosingsystem 60mL/min,10mH380V, ø3, 60hz 1 650,000 650,000 3,965 Base, pipe, elbow, socket, cap, tank valve. PE, 200L 1 550,000 550,000 3,355 NB generator, etc. (Organic oxidation device , Bubble bursting device , Air compressor) Mixing chamberSet FRAME etc. 1 8,000,000 8,000,000 48,800 Controlled volumepump 380V, Ø3, 60hz 1500, 1/5,200W 1 153,000 153,000 933 External case 220V, Ø2, 60hz, 100bar,2.2kW 1 850,000 850,000 5,185 Control panel STS/GC200 1 500,000 500,000 3,050 Oxygen demandregulator STS304 1 1,000,000 1,000,000 6,100 Flow meter STS etc. 1 500,000 500,000 3,050 Pipe, Hose GD-25S(25KVA) 1 9,100,000 9,100,000 55,510 AOP 15TML 15HP 1 2,980,000 2,980,000 18,178 Body of ship, etc. (Skimmer, generator, outboard Motor, etc.) Ship body, skimmerstorage tank, Hand Rai SS400+STS 1 32,000,000 32,000,000 195,200 Skimmerprocessing SS400, STS 1 500,000 500,000 3,050 Skimmermotor NMRV040+1/100 +TXF002,0.2kW 1 300,000 300,000 1,830 Skimmer screwjack UJ44-ICLFN500 2 440,000 880,000 5,368 Sludge storagetank SS400, 1.8m3 1 3,000,000 3,000,000 18,300 Sludge transfertank 50L/min,10mH 380V, ø3, 4P 1 800,000 800,000 4,880 Panitng 3m3/hr, 220V,1.2Hp 1 1,000,000 1,000,000 6,100 Pipe, Hose STS304/rubber 1 500,000 500,000 3,050 Assembly 1 4,000,000 4,000,000 24,400 Local controlpanel SS400 etc. 1 9,500,000 9,500,000 57,950 Production cost 79,013,000 481,979 Transportation cost 540,000 3.294 Operation & maintenance cost 22,000,000 134,200 Total cost 101,553,000 619,473 23 * Conditions : FOB, Production in Korea, Period, Pretax cost, Water quality standard, Surface area treated, etc. Demonstration project budget (Proposal)
  • 31. Consultation & Expected schedule 5 Days 30 Days 15 Days 15 Days 5 Days Consultation  Site selection: Lake or River (width:20m, depth:1.5m, velocity:0.2m/s)  Determination of standard (River environmental quality standard; Turbidity, SS, chlorophyll -a, COD)  Condition determination (Period, Cost, Length, etc.)  Determination of application technology  Consortium Composition Schedule 24 Field survey Evaluation Project Trans- portation Production