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동전기 복원방법을 이용한 토양 중의 styrene 정화

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Alternative Title
Electrokinetic Remediation of Soil Contamination with Styrene
Abstract
In this study, we intended to improve the petroleum hydrocarbons' treatment/removal techniques with the introduction of electrokinetic bioremediation method. We selected the styrene as the treatment target material among the petroleum hydrocarbons, and focused on this material in this study.
The hydrogen peroxide aided electrokinetic-fenton electrokinetic -fenton process was tested. Soils contaminated by styrene are treated by electrokinetic-fenton process, and then we survey the applicability, removal efficiency of the process.
The treatment process for contaminated soils must be developed to the low-cost and high-performance techniques. Especially, petroleum industries or facilities are usually continuously running all the year round, the treatment processes for these cases avoid Ex-situ remediation process, which is commonly associated with temporary shut down of the facilities. We consider the introduction of electrokinetic Fenton method(In-situ) as the alternatives and this type of treatment techniques could solve the problem(s) of conventional processes not disturbing the industrial activities or facilities' working.
Author(s)
박성은
Issued Date
2007
Awarded Date
2007. 2
Type
Dissertation
Keyword
동전기 복원방법 styrene 정화 토양 Electrokinetic Remediation Soil Contamination
Publisher
부경대학교 대학원
URI
https://repository.pknu.ac.kr:8443/handle/2021.oak/3530
http://pknu.dcollection.net/jsp/common/DcLoOrgPer.jsp?sItemId=000001953418
Alternative Author(s)
Park, Sung-Eun
Affiliation
부경대학교 대학원
Department
대학원 환경공학과
Advisor
박청길
Table Of Contents
Ⅰ .서론 = 1
Ⅱ .문헌연구 = 5
1 .Styrene의 개요 = 5
1.1 일반성상 = 5
1.2 물리화학적 특성 = 5
1.3 토양 및 수질기준 = 6
2 .토양의 정의 = 7
3 .토양오염 = 7
3.1 토양오염의 정의 = 7
3.2 토양오염물질 = 8
3.3 국내ㆍ외 토양오염 = 10
4 .동전기 정화기술의 이해 = 13
4.1 토양 내 동전기 현상 = 13
4.1.1 전기삼투(electroosmosis) = 13
4.1.2 전기영동(electrophoresis) = 14
4.1.3 전기이동(electromigration) = 15
4.2 동전기 정화작용 = 16
4.2.1 전기분해(electrolysis) = 16
4.2.2 오염물질의 이동 = 17
Ⅲ .재료 및 방법 = 19
1 .분석방법 = 19
1.1 시약 및 분석기기 = 19
1.2 시료의 전처리 = 19
1.3 분석방법 = 20
2 .실험방법 = 21
2.1 실험재료 = 21
2.2 실험장치 = 21
2.3 실험조건 = 22
Ⅳ .결과 및 고찰 = 24
1 .온도와 pH = 24
1.1 온도 = 24
1.2 pH = 26
2 .전압경사 = 28
3 .전류변화 = 30
4 .삼투유량 = 32
5 .Styrene 제거효율 = 34
Ⅴ .결론 = 37
참고 문헌 = 39
Degree
Master
Appears in Collections:
산업대학원 > 환경공학과
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