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Preparation of Graphene Oxide Nanosheets-Embedded Thin-Film Composite Reverse Osmosis Membrane with High Flux, Anti-Biofouling, and Chlorine Resistance : 높은 투수도, 방오성, 내염소성을 가지는 그래핀 옥사이드 함유 역삼투용 박막 복합 분리막 제조

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dc.contributor.advisor이정학-
dc.contributor.author채희로-
dc.date.accessioned2017-07-13T08:45:31Z-
dc.date.available2017-07-13T08:45:31Z-
dc.date.issued2016-08-
dc.identifier.other000000137256-
dc.identifier.urihttps://hdl.handle.net/10371/119815-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 화학생물공학부, 2016. 8. 이정학.-
dc.description.abstractRecently, a few studies reported that the coating of graphene oxide (GO) nanosheets on a thin-film composite (TFC) reverse osmosis (RO) membrane effectively enhanced chlorine resistance and anti-biofouling property. However, it turned out that the GO coating could not improve membrane water permeability because the GO coating layer interfered with water permeation. In this study, GO nanosheets were embedded in TFC RO membranes to solve such interference with water permeation. The performances of GO-embedded TFC RO membranes were evaluated in terms of chlorine resistance, anti-biofouling property, and water permeability and factors affecting such performances were investigated.
Firstly, the TFC RO membrane with GO nanosheets embedded in the active layer (A-GO-TFC membrane) was fabricated via addition of the size-controlled GO nanosheets in MPD aqueous solution. The GO nanosheets embedded in active layer enhanced chlorine resistance of a membrane via shielding the active layer and forming hydrogen bonding with the active layer. In addition, the embedment of GO nanosheets increased hydrophilicity and negative zeta potential and decreased surface roughness of a membrane. As a result, the anti-biofouling property of the membrane was dramatically ameliorated. Furthermore, water permeability was significantly improved due to the high membrane hydrophilicity and low interference of dispersed GO nanosheets with the water permeation.
Secondly, the TFC RO membrane with GO nanosheets embedded in both the active and support layers (AS-GO-TFC membrane) was prepared via addition of GO nanosheets in MPD and PSf solutions. The embedment of GO nanosheets in the support layer further raised the hydrophilicity, negative zeta potential, and even surface roughness due to the functional groups of GO nanosheets in both of active and support layer and high surface roughness of GO embedded support layer. In addition, the GO embedded support layer could make GO nanosheets in MPD solution disperse more evenly. Consequently, the water flux and anti-biofouling property of the AS-GO-TFC membrane were significantly enhanced compared with the A-GO-TFC membrane.
The successful improvement of the membrane performances such as the water permeability, salt rejection, chlorine resistance, and anti-biofouling property by embedding GO nanosheets in both the active and support layers of the TFC membrane could be expanded to industrial RO system and various environmental engineering systems.
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dc.description.tableofcontentsChapter I. Introduction 1
I.1. Background 2
I.2. Objectives 5

Chapter II. Literature Review 7
II.1. Graphene oxide nanosheets 8
II.1.1. Introduction 8
II.1.2. Synthesis of graphene oxide nanosheets 13
II.1.3. Preparation of graphene oxide nanosheets embedded polymeric membrane for water treatment. 18
II.1.4. Preparation of graphene oxide-layered membrane. 19
II.1.5. The shape of the graphene and graphene oxide nanosheets on a substrate 23
II.2.Phase separation for water treatment membrane 26
II.2.1. Introduction 26
II.2.2. Nonsolvent induced phase separation method to prepare water treatment membrane 31
II.2.3. Interior structures of a membrane prepared by NIPS 37
II.2.4. Control factors for membrane interior structure at NIPS method 41
II.3. Interfacial polymerization for reverse osmosis membrane 49
II.3.1. Introduction 49
II.3.2. Interfacial polymerization method to prepare thin-film composite reverse osmosis membrane 56
II.3.3. Recent trend of reverse osmosis membrane 59

Chapter III. Thin-Film Composite Reverse Osmosis Membrane with Graphene Oxide-Embedded in the active layer 72
III.1. Introduction 73
III.2. Experimental 77
III.2.1. Materials 77
III.2.2. Preparation of graphene oxide nanosheets 78
III.2.3. Preparation of GO-TFC membrane 80
III.2.4. Characterization of graphene oxide nanosheets 81
III.2.5. Characterization of GO-TFC membrane 83
III.2.6. Performance of GO-TFC membrane 86
III.3. Results and discussion 88
III.3.1. Characterization of graphene oxide nanosheets 88
III.3.2. Characterization of GO-TFC membrane 94
III.3.3. Performance of GO-TFC membrane 105
III.4. Conclusions 113

Chapter IV. Synergetic Effect of Graphene Oxide Nanosheets embedded in the Active and Support Layers on the performance of Thin-Film Composite Membranes 114
IV.1. Introduction 115
IV.2. Experimental 117
IV.2.1. Materials 117
IV.2.2. Preparation of graphene oxide nanosheets 118
IV.2.3. Preparation of GO-support layers 119
IV.2.4. Preparation of GO-TFC membranes 120
IV.2.5. Characterization of graphene oxide nanosheets 121
IV.2.6. Characterization of the GO-support layers 122
IV.2.7. Characterization of the GO-TFC membranes 123
IV.2.8. Evaluation of the GO-TFC membrane performance 124
IV.3. Results and discussion 126
IV.3.1. Characterization of the graphene oxide nanosheets 126
IV.3.2. Characterization of the GO-support layers 129
IV.3.3. Characterization of the GO-TFC membranes 132
IV.3.4. Performance of the GO-TFC membranes 140
IV.4. Conclusions 157

Chapter V. Conclusions 158
V.1. Conclusions 159

국문 초록 160

Reference 162
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dc.formatapplication/pdf-
dc.format.extent9076622 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectThin-film composite (TFC) membrane-
dc.subjectReverse osmosis (RO)-
dc.subjectGraphene oxide (GO)-
dc.subjectNanocomposite-
dc.subjectAnti-biofouling-
dc.subjectChlorine resistance-
dc.subject.ddc660-
dc.titlePreparation of Graphene Oxide Nanosheets-Embedded Thin-Film Composite Reverse Osmosis Membrane with High Flux, Anti-Biofouling, and Chlorine Resistance-
dc.title.alternative높은 투수도, 방오성, 내염소성을 가지는 그래핀 옥사이드 함유 역삼투용 박막 복합 분리막 제조-
dc.typeThesis-
dc.contributor.AlternativeAuthorHee-Ro, Chae-
dc.description.degreeDoctor-
dc.citation.pages189-
dc.contributor.affiliation공과대학 화학생물공학부-
dc.date.awarded2016-08-
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