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Design of Dual Water Supply System Using Rainwater and Groundwater at Arsenic Contaminated Area in Vietnam : 빗물과 지하수를 이용한 베트남의 용수공급시스템 개발

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dc.contributor.advisor한 무 영-
dc.contributor.author엔규엔-
dc.date.accessioned2017-07-14T04:10:01Z-
dc.date.available2017-07-14T04:10:01Z-
dc.date.issued2013-02-
dc.identifier.other000000008276-
dc.identifier.urihttps://hdl.handle.net/10371/124189-
dc.description학위논문 (석사)-- 서울대학교 대학원 : 건설환경공학부, 2013. 2. 한무영.-
dc.description.abstractIn Cukhe, a village located in the outskirts of Hanoi, the capital of Vietnam, people suffer from a shortage of high-quality water due to arsenic contaminated supply water resource. We found that a dual water supply of rainwater and groundwater is a suitable method to provide sustainable water to the local residents. Rainwater is supplied for potable purposes. Groundwater is supplied for non-potable purposes. In this paper, a novel model is developed based on rainfall variance. An Rainwater Harvesting (RWH) system can get optimal performance by changing demand of water use due to rainfall. This model is then used to assess the reliability and water savings of an RWH system for Cukhe village. Using rainwater for portable purposes in dry days and for all purposes in rainy days is recommended. The cost of RWH systems was analyzed. In order to get 100% reliability, an RWH system has a roof area of 100m2 and a tank size of 2m3 is recommended in terms of cost efficiency. From the water supply chart in a year, it is recommended that rainwater should be supplied for only potable purposes in January-April and October-December-
dc.description.abstractand should be supplied for all purposes in May-September.
The research also investigated arsenic removal from groundwater. A novel adsorbent Fe-Mn-Si oxide was prepared by coprecipitation from environmentally friendly and low-cost materials for effective arsenic removal and evaluated its arsenic adsorption capacities. Batch and column adsorption experiments were conducted to study efficiency adsorption of arsenic on Fe-Mn-Si oxide. Results from this study demonstrate the potential usability of Fe-Mn-Si oxide as a good arsenic-selective adsorbent.
Eventually, this research suggested water supply system options. There are three water supply system options namely: (1) rainwater supply system
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dc.description.abstract(2) groundwater supply system and (3) Dual system which rainwater is used for drinking purposes and groundwater is used for non-drinking purposes. The triple bottom line considerations, the environmental, economical, and social impacts of the systems are examined. From the results it is clear that rainwater harvesting is a sustainable method to obtain good-quality drinking water at low cost and with little energy expenditure. A dual system, rainwater is supplied for drinking purposes and groundwater is supplied for non-drinking purposes, is recommended in terms of engineering, social and economic benefits.-
dc.description.tableofcontentsList of tables I
List of Figures II
Chapter 1. INTRODUCTION 1
1.1. Background 1
1.2. Objectives 1
1.3. Dissertation structure 3
1.4. Literature review 4
1.4.1. Rainwater harvesting 4
1.4.2. Arsenic removal 6
REFERENCES 10
Chapter 2. DESCRIPTION O AREA STUDY 13
2.1. Cukhe village 13
2. 2. The status of water sources 13
Chapter 3. DESIGN OF RAINWATER HARVESTING SYSTEM 16
3.1. INTRODUCTION 16
3.2. MATERIALS AND METHODS 18
3.2.1. Typical housing and current water supply system 18
3.2.2. Strategy for water supply 19
3.2.3. Cost analysis 24
3.2.4. Data 24
3.3. RESULTS AND DISCUSSIONS 25
3.4. CONCLUSION 30
REFERENCES 32
Chapter 4. GROUNDWATER TREATMENT 34
4.1. INTRODUCTION 34
4.2. METHODS AND MATERIALS 36
4.2.1. Adsorbent preparation 36
4.2.2. Arsenic solution 37
4.2.3. Experimental procedure 37
4.2.4. Analytical methods 39
4.3. RESULTS AND DISCUSSION 40
4.3.1. Characterization of adsorbent 40
4.3.2. Adsorption kinetics 41
4.3.3. Adsorption isotherms 44
4.3.4. Thermodynamic parameters 49
4.3.5. Effect of pH on arsenic adsorption 50
4.3.6. Desorption study 52
4.3.7. Fixed bed column for arsenic removal 53
4.4. CONCLUSION 57
REFERENCES 58
Chapter 5. SUGGESTION OF WATER SUPPLY SYSTEM 63
5.1. Description of water supply options 63
5.1.1. RWH system 63
5.1.2. Groundwater system 65
5.1.3. Dual system 66
5.2. Triple Bottom Line Consideration for Sustainable Water Supply 67
5.2.1. Environmental 67
5.2.2. Economic 67
5.2.3. Social 69
5.6. Conclusion 71
Chapter 6. CONCLUSIONS 72
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dc.formatapplication/pdf-
dc.format.extent2749523 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectRainwater-
dc.subjectGroundwater-
dc.subjectArsenic-
dc.subjectWater supply-
dc.subjectDeveloping country-
dc.subjectWater management-
dc.subject.ddc624-
dc.titleDesign of Dual Water Supply System Using Rainwater and Groundwater at Arsenic Contaminated Area in Vietnam-
dc.title.alternative빗물과 지하수를 이용한 베트남의 용수공급시스템 개발-
dc.typeThesis-
dc.description.degreeMaster-
dc.citation.pages90-
dc.contributor.affiliation공과대학 건설환경공학부-
dc.date.awarded2013-02-
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