Overview of Korea Environmental R&D Program Eco-STAR Project. Eun Namkung, Ph.D.
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1 JWRC Symposium Yokohama, Japan Overview of Korea Environmental R&D Program Eco-STAR Project Eun Namkung, Ph.D. Professor, Myongji University, Korea Director, I 2 WaterTech Center, Korea
2 Logo Technical Innovation Technical Integration
3 Vision To develop and commercialize the world-best water treatment technologies and systems
4 From Source to Tap
5 Advanced wastewater treatment technology for source water protection Improvement of treated effluent quality to level of recreation water Removal of nutrients (N, P) Reduction of effluent toxicity High efficiency and compact wastewater treatment technology Improvement of treatment efficiency Design of high efficiency treatment processes Reduction of sludge production From Source To Tap Development and commercialization of high efficiency, compact, advanced water and wastewater treatment technologies Development of membranes and modules for water treatment Development of globally-competitive membrane materials & modules Optimized design and water quality control technology for drinking water distribution systems Control and optimization of drinking water quality in distribution systems Minimization of energy consumption Rehabilitation of aged distribution systems Design and operation of full-scale membrane DW treatment system Applications of full-scale membrane DW treatment systems Removal of micropollutants/t&o/chlorine resistant pathogens Control of chlorine residual
6 Project Duration and Budgets Terms & Budget Term : ~ (6.5 year) Budget : US $65 million (Korea MOE Support) Development of 7 Different Technologies
7 Technology Development - 1 Technology Development of advanced DW treatment technology Development of drinking Water distribution system & water quality control technology 1. Development of membranes & modules for water treatment 2. Development of full-scale advanced membrane drinking water treatment processes & systems 3. Development of optimized design & water control technology for DW distribution systems
8 Technology Development - 2 Technology 4. Advanced wastewater treatment technology for recreation water Wastewater treatment technology Satisfying recreation water criteria 5. High efficiency, compact wastewater treatment technology by developing integrated operating systems & retrofitting technologies 6. Treatment technology of electronic industry wastewater 7. High efficiency, compact treatment technology for highly concentrated food industry wastewater
9 Construction (or Preparation) of basic technical foundations Membrane/module Membrane-based water treatment processes Drinking water distribution system water quality control Wastewater treatment technology for recreation water 1 St Project Phases Development of unit and integrated system technologies Water treatment membrane (MF/UF/NF/special)/module manufacturing technology Hybrid systems with conventional treatment processes Cleaning, repair and rehabilitation of distribution system Unit and integrated system wastewater treatment technologies 2 nd 3rd System optimization and applications (or feasibility study) Water treatment membrane /module & control systems Membrane process optimization & installation and operation of full-scale demonstration plants Application of optimum water quality management technology in distribution system Optimization of wastewater treatment technology for recreation water Commercialization of water treatment systems developed Commercialization of water treatment membrane/module Improvement of demonstration plant efficiency and feasibility Commercialization Optimum water quality management technology in distribution system Commercialization of Wastewater treatment technology developed 4 th Develop and commercialize the world-best water treatment Technologies and systems
10 Key Strategies Innovation Select & Focus Globally competitive technology development Integration Development of integrated technologies Unit process/technology development Integration of BT/NT/IT/ET Develop Development - oriented Application oriented Exclusion of academic studies with no commercial values System development Feasibility verification by full-scale demonstration study Technology development through field applications and commercialize the world-best water treatment technologies and systems Commercialization -oriented Industry - leading Setting up quantitative (measurable) project goals
11 Goals in Number Future Global Level Current Global Level Current Korean Level Gap Analysis
12 Project #2 Development of full-scale advanced membrane drinking water treatment processes & systems
13 Advanced Membrane DW Treatment System Numerical Goals By using membrane separation water purification technology, develop and commercialize drinking water treatment system which satisfies WHO criteria, footprint reduction, low energy consumption Protozoa removal Turbidity High efficiency above 4 log below 0.05 NTU Complete removal of T&O compounds Recovery ratio with multi-stage membrane separation system above 99.5% High compact/energy Saving Footprint 50% Chemical use 40% Enhancement of sludge dehydrate by decreasing Al/T ratio
14 Advanced Membrane DW Treatment System Current vs Future Conventional System Membrane System
15 System Development Equipment, Unit Process Automatic Measurement & Control Design, Construction, Operating & Maintenance Manual
16 Eco-Design & LCC/LCA High Efficiency Low Energy Multifunction Low Solids Compact
17 Success Criteria for Commercialization Performance + Cost Effectiveness
18 Eco-Design & LCC/LCA From Cradle To Grave
19 Final Outcome 3P strategy Product / Process / Program / System Patent Paper
20
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