• 제목/요약/키워드: sewerage system

검색결과 109건 처리시간 0.026초

하수도 업무추진체계 개선 (Improvement of Sewerage Treatment System)

  • 이찬희
    • 수도
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    • 제24권5호통권86호
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    • pp.5-15
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    • 1997
  • This year the Ministry of Environment(MOE) made a fifth amendment to the Sewerage Act, which was enacted in August 1966. The first objective of this amendment is to introduce small public sewerage system that is designed to treat wastewater produced in rural areas. Before small public sewerage system was introduced to the Act through this amendment, only urban areas were covered by public sewerage system. Because small sewerage system was introduced, wastewater generated in urban areas as well as rural areas can now be treated by public sewage treatment plants. In addition to this, some authorities on sewerage affairs were moved from the MOE to local governments by this amendment in order to enhance the power and responsibility of local governments in relation to sewerage affairs. Also, this amendment enabled local governments to entrust the authority to establish and manage sewage treatment plants to private companies, and enabled the MOE to organize an advisory committee on sewerage to review economic and technical aspects ofsewage treatment plants. This amendment went into effect September 8, 1997.

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SBR을 이용한 소규모 오수처리시설에 관한 연구 (A study on the small sewerage system using SBR process)

  • 박민정;김동석
    • 한국환경과학회지
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    • 제12권4호
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    • pp.427-437
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    • 2003
  • An evaluation of the application of SBR and biofilm en small sewerage system was conducted. A newly developed small sewerage system, using SBR, was successfully applied to the nutrient treatment using municipal wastewater. The system was consisted of 6 compartments. Two systems, with SBR (A type) or without SBR (B type), were compared by several parameters (COD, SS, T-N, NH$_4$$\^$+/-N, NO$_3$$\^$-/-N, NO$_2$$\^$ -/-N, alkalinity, pH, DO) in all experimental periods. Also, the time variation of several parameters (DO, pH, NH$_4$$\^$+/-N, NO$_3$$\^$-/-N NO$_2$$\^$-/-N) was examined in a SBR applied sewerage system. T-N removal efficiency of B type Was higher than that Of A type by the effect of nitrification and denitrification even though the COD removal efficiencies were similar. In aeration stage, the pH was decreased from 6.4 to 6.3 within 1 h and increased to 6.65 at the end of aerobic stage, and pH was decreased to 6.2 in non-aeration stage, and these phenomena were explained. The effects of nitrification and denitrification were compared in A type and B type sewerage system, and the typical nitrification and denitrification were observed in B type sewerage system.

하수도 기술의 평가 인증제도 운영현황 및 방향 (Current Status of Sewerage Technology Evalution Verification System and Direction for Improvement of the System)

  • 이상은
    • 수도
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    • 제24권5호통권86호
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    • pp.16-28
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    • 1997
  • As sewerage works has become one of the major public works in Korea, the employment of advanced and more appropriate sewerage technology has become essential to improve the efficiency of sewerage works. During last 10 years, the Korean Government has made tremendous amount of investment on sewerage works so that treatment plants in 58 cities have treatment capacity which is equivalent to 52.8% of total daily sewage generation in Korea. This remarkable development, however, has heavily depended on one technology, the conventional activated sludge process as more than 95% of the existing plants employ this process, Recently, the Korean Government and local authorities have plans to introduce more appropriate sewage treatment technologies and research and development in this area has become very active. To encourage employing new and appropriate technologies, however, the proper technology evaluation and verification program for new process is needed. The public sector should play a key role in this program since the sewerage works is one of the major public works. In this paper, the technology evaluation and verification programs related with sewerage facilities in the US and Japan are briefly reviewed. The Innovatived and Alternative Technology programs which was operated by US EPA until recently and Environmental Technology Verification(ETV) program which was commenced in 1995 are introduced. The technology verification programs operated in Japan and also in Korea are also reviewed in this paper to propose a future direction for development of the appropriate evaluation and verification system.

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상하수도시설에 대한 전과정관리(LCM)시스템 구축방안 연구 (Establishment of Life Cycle Management(LCM) System for Water Supply and Sewerage Systems)

  • 박지형;황용우;김영운;박광호
    • 상하수도학회지
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    • 제26권2호
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    • pp.303-312
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    • 2012
  • Water supply and sewerage systems are the large-scale urban infrastructure ejecting large amount of environmental load over the life-cycle. Therefore, it is important not only to optimize in the aspect of economical superiority and process efficiency but also to consider earth scale environmental impact. This study aimed to suggest the establishment of life cycle management(LCM) system as an integrated management solution in urban water supply and sewerage systems. As a result, the methodology for LCM system consisting of life cycle assessment(LCA), life cycle cost(LCC), life cycle $CO_{2}(LCCO_{2})$ and life cycle energy(LCE) was developed. Also, several case studies using the latest statistics data of water supply and sewerage systems were carried out to investigate the field applicability of LCM.

우리 나라의 하수도현황과 전망 (State of Swerage Systems and Prospects in Korea)

  • 김갑수
    • 환경위생공학
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    • 제8권2호
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    • pp.65-84
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    • 1993
  • This study reviewed the current status and problems of sewerage system in Korea and then proposed possible methods to correct the problems. Also, evaluation of future development in sewerage system is included. It can be summarized as follows : 1. Investment in sewerage system is relatively low . 0.23% of GNP, Considering that the investment portion is 0.35% in OECD and 0.63% in Japan, it should be increased further. 2. The reasons wily the investment in sewerage system is low can be ' (1) Low priority is given to the investment in sewerage system. Local government builds and operates its own wastewater treatment plant. Local government as well as residents prefer to invest their money in roadwork, housing and parks to in wastewater treatment facilities because of greater investment effects. (2) Besides capital investment, more maintenance cost is needed for sewerage system. Proper operation of wastewater treatment facilities requires a well-trained operator. Because of public conception that operation of wastewater treatment facility is a dirty job, it is difficult to find a well-trained operator. (3) It is difficult to estimate the effect of sewerage system (4) Cost required to build and maintain wastewater treatment facility should be paid by people, who benefit from the facility. People to benefit are sometimes different from people to pay. 3. Advanced treatment is necessary to protect the bay aura and raw water source as well as to prevent eutrophication of lakes and ponds. 4. Wastewater treatment facility were mainly build in big cities during the decade of 1980. Followings should be solved first to expand the facilities. (1) Rapid repair and construction of sewer. (2) Technical development of wastewater treatment . Prevention of efficient and economical wastewater . Development of efficient and economical wastewater treatment techniques . Development of high-efficiency treatment using bioreactor . Reuse of wastewater treatment plant effluent (3) Sludge treatment and disposal . Composting of sludge cakes . Development of techniques to reduce the volume of sludge cake : incineration and reuse of sludge ash and slag. (4) Utilization of wastewater treatment facilities . Construction of community parks or sports families(ie, on the tops of the covered aeration tanks and sedimention tanks) Construction of wastewater treatment facilities under ground and of parking facilities and community parks above ground. (5) Education of wastewater treatment personal.

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비와호 유역하수도 사례분석을 통한 일본 유역하수도계획의 소개 (Introduction of the Basin Sewerage Plan in Japan through Case Studies of the Lake Biwa Sewerage System)

  • 한미덕;박배경;박지형;김용석;류덕희
    • 대한환경공학회지
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    • 제37권9호
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    • pp.533-541
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    • 2015
  • 일본의 "유역별 하수도정비종합계획"(이하 '유총계획') 및 비와호 유역하수도를 소개하고 이를 바탕으로 국내에서 2013년도부터 수립 시행되고 있는 "유역하수도정비계획"의 발전방향 등을 제시하였다. 일본의 유총계획은 환경기본법에서 정하는 수질환경기준을 준수하기 위한 계획으로 비와호의 경우는 지자체의 조례에 의한 가중 배수기준보다 더 엄격한 기준을 적용하여 수립 시행하고 있는 것으로 분석되었다. 특히 비와호의 경우는 응집제첨가다단소화탈질법 등의 고도처리공법을 건설초기단계부터 적용하여 방류수의 수질항목별 농도가 BOD 0.9 mg/L, SS 0.6 mg/L, T-N 5.5 mg/L, T-P 0.06 mg/L였으며 BOD의 처리효율은 99.5%로 매우 높았다. 도입초기단계인 국내 유역하수도계획의 발전을 위해서는 평가항목의 다양화, 비용최소화, 건설 및 유지 보조금제도 개선, 경제적 개념의 배출부하량조정시스템의 도입, 유역하수도 개념 적립 등의 적용 방법 등을 장기적인 관점에서 연구할 필요가 있다.

공공하수처리시설 수질기준 선진화 방안 (Improvement on Sewerage Effluent Standard of Public Sewerage Treatment Plants)

  • 유순주;박상민;권오상;박수정;염익태
    • 한국물환경학회지
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    • 제29권2호
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    • pp.276-287
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    • 2013
  • Domestic sewage contains increasingly more pharmaceuticals and personal care products (PPCPs), due to rising use of medicines, health supplement food and daily necessities. And various types of industrial wastewater from pollution sources in treatment areas could flow into the public sewerage treatment plants (PSTPs) in metropolitan areas. The conventional PSTPs are designed to treat suspended solids, biodegradable organics, nitrogen and phosphorous from residential and industrial areas and public facilities. However, toxic, conventional, and non-coventional pollutants from non-domestic sources that discharge into sewer system as well as domestic source with various chemicals could not be treated in the conventional PSTPs and discharged untreated to public basin. In this paper we aim to consider the establishment system of effluent standard of PSTPs in comparison with water quality standard of water environment and wastewater discharge regulation. And also we suggest the necessity of regulations on the pretreatment of industrial wastewater as part of efforts to improve water quality in sewerage systems and to protect public basin.

유역하수도 공공하수처리시설의 방류수 수질 준수농도 설정방안 연구: 진위천 수계를 중심으로 (A study on Determination Method of the Compliance Concentration of Effluent Limitation from Public Sewage Treatment Works in the Jinwee-stream Watershed Sewer System)

  • 정동환;조양석;김영석;안경희;정현미;권오상
    • 상하수도학회지
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    • 제29권4호
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    • pp.493-502
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    • 2015
  • In accordance with the Watershed Sewer System Maintenance Plan enforced on February 2, 2013, the different compliance concentration of effluent limit be applied to effluent discharged from public sewage treatment works(PSTWs) in each watershed on the basis of water quality thereof. With the introduction of watershed sewer system, it is necessary to set the compliance concentration of effluent limit for PSTWs situated in the watershed, by region and PSTW size, to achieve water quality criteria for regional watersheds or target water quality under TMDL program. Watershed Environmental Agencies establish the Watershed Sewer System Maintenance Plan and set the compliance concentrations of effluent limit for PSTWs under the plan. The agencies plan to apply tougher effluent BOD concentration limits in Class I to IV areas. Effluent BOD concentration limits will be toughened from 5~10 mg/L to 3 mg/L in class II~III areas, from 10mg/L to 5mg/L in class IV areas. Uniform application of effluent BOD concentration limits to PSTWs in the watershed sewer system need to be complemented considering type of sewage treatment technology employed and watershed characteristics. Therefore, this study presents method to determine the compliance concentration of effluent limit from PSTWs in the watershed.

하수도 시스템의 효율적인 운영 및 유지관리를 위한 시스템다이내믹스 모형의 개발 (Development of a System Dynamics Model for the Efficient Operation and Maintenance of Sewerage Systems)

  • 박수완;이태근;김봉재;김태영
    • 한국수자원학회논문집
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    • 제45권1호
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    • pp.101-111
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    • 2012
  • 본 논문에서는 시스템 다이내믹스(System Dynamics, SD) 방법론에 입각하여 하수도 시스템의 운영지표들과 이에 영향을 미치는 외부변수들로 구성된 피드백 루프 메커니즘(Feedback Loop Mechanism)을 관로유지관리와 연관하여 규명하고, 외부변수의 변화에 따른 운영지표의 변화를 예측함으로써 하수도 시스템의 효율적인 운영 및 유지관리 방안을 모색할 수 있는 SD 컴퓨터 모의 모형(Computer Simulation Model)을 개발하였다. 개발된 모형에 부산광역시 하수도 시스템의 과거 운영 자료를 적용함으로써 모형을 검증하였고, 미래의 운영 상황을 예측하였다. 그 결과, 하수도보급률은 이미 목표치에 거의 도달하여 큰 변동이 없을 것으로 예측되었으며, 하수처리효율과 하수처리량, 요금현실화율은 점차 증가할 것으로 예측되었다. 또한 정책 지렛대의 발견을 위해 시스템에 큰 영향을 미치는 주요 운영지표를 선정하여 외부변수의 변화에 대한 민감도 분석을 수행하였는데, 그 결과 관로 유지관리와 연관된 외부변수는 하수처리효율의 변화뿐만 아니라 시설이용률, 하수처리량 등의 변화에도 큰 영향을 미치는 것으로 분석되었다.

Who Should Control the Integrated Management System for Sewerage Facilities in the Upper Reaches of Multi-Purpose Dams in Korea?

  • Park, Kyoo-Hong;Kim, Hyung-Joon
    • Environmental Engineering Research
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    • 제15권2호
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    • pp.99-103
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    • 2010
  • Integrated management systems (IMS) that control entire sewerage facilities in the upper reaches of multi-purpose dams are being constructed for their efficient operation and management. However, because the IMS installed in a watershed belong to several local government bodies, significant conflict would be expected between stakeholders in the process of deciding who should control the IMS after completion of the construction that was initially implemented under the support of central government. The objective of this study was to suggest a decision making to determine who should control the IMS for sewerage facilities in the upper reaches of multipurpose dams in Korea, using the analytic hierarchy process (AHP). Three alternatives were selected to determine who should control the IMS for sewerage facilities: commissioning to public corporations, commissioning to private corporations, and a role-sharing partnership. In using the AHP technique, the emphasis was on comparing public interests, economics, efficiency, sustainability, specialty, grievance mediation and receptiveness. As a result, building a role-sharing partnership received the highest score. Commissioning to a special institute was also suggested as an alternative as this showed a score similar to that of building a role-sharing partnership.