• 제목/요약/키워드: sewage facility

검색결과 152건 처리시간 0.027초

오수처리시설의 가동상태 확인 기기 네트웤의 운영 소프트워어에 관한 연구 (Study on operating software for monitoring device network in sewage disposal facility)

  • 박승환;김창복;김성선
    • 한국컴퓨터정보학회논문지
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    • 제7권1호
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    • pp.74-79
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    • 2002
  • 환경분야에서 산업화와 도시화에 따른 수질오염의 문제를 해결하기 위해 오수처리시설을 감시하는 장치들이 개발되고 있다. 본 연구에서는 원격지의 운영자가 여러 지역에 설치된 오수처리장치의 가동 상태를 확인하고 점검할 수 있는 가동상태 확인기기 네트워크의 운영 소프트웨어를 제안하였다. 소프트웨어는 개발된 하드웨어를 통해 실행되며, 데이터베이스, 데이터전송, 가동상태 분석을 위한 프로그램모듈로 구성된다 본 연구를 수행한 결과로서 환경 장비의 운영 관리의 효율성을 개선할 수 있음을 확인하였다.

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From Blemish to Decoration: the Landscape of Municipal Facilities in Urban Green Space

  • Yu, Dong-Ming;Piao, Yong-Ji;Cho, Tae-Dong;Park, Gab-Soon
    • 한국환경과학회지
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    • 제23권1호
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    • pp.1-6
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    • 2014
  • As the combination of technique and art, environmental facilities have the function to improve the image of urban green space. Among these facilities, some can be designed and arranged reasonably. But to the facilities of sewage, electricity and sanitation and so on, are usually ignored and become the blemish in the green space. Based on the analysis of the status, taking the design of well cover of sewage as an example, the landscape approaches are discussed from form, material, color and artistic technique and so on.

갈대(Phragmites australls)수초를 적용한 바이오필터에서의 하수처리시설 악취저감기술 (Odor Reduction Technology in Sewage Treatment Facility Using Biofilter with Reed Grass(Phragmites australls))

  • 정진도;김규열
    • 상하수도학회지
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    • 제27권3호
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    • pp.373-382
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    • 2013
  • In this study, a biological odor treatment system was proposed to remove odor(foul smell) materials causing several problems in the closed sewage treatment plant. This odor treatment system was composed of a two-step biofilter system in one reactor. The two-step biofilter reactor was constructed with natural purification layer in upper part and artificial purification layer in lower part. The reed grasses of water purification plants were planted in the surface area and mixed porous ceramic media were filled with the lower part of biofilter reactor. By using the above experimental apparatus, the ammonia gas removal efficiency was attained to 98.3 % and the hydrogen sulfide gas removal efficiency was appeared more than 97.7 % which shows more effective than the conventional odor removal process.

인공습지에서의 물질순환에 관한 연구 (Cycling of Matters in the Constructed Wetland)

  • 김동억;박제철
    • 한국환경과학회지
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    • 제29권3호
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    • pp.299-306
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    • 2020
  • This study analyzed the changes in the concentrations of the pollutants of constructed treatment wetlands which come from the discharge water of a sewage treatment plant. According to the results of budgets in constructed wetlands, the net production of the organic carbon, nitrogen and phosphorus were 368 kgC/month, 306 kgN/month and -49 kgP/month, respectively. The high particle form of pollutants are mostly removed due to settlement and absorption when passing through wetlands, but because a low processing efficiency for pollutants was shown when sewage treatment plant wastewater flows in, there is a need for a water management system that can reduce the organic matter load through monitoring. The low removal efficiency of constructed wetlands were caused by both structural and operational problems. Therefore, to enable to play a role as a reduction facility of pollutants, an appropriate design and operation manuals for constructed wetlands is urgently needed.

Nutrient removal from secondary effluent using filamentous algae in raceway ponds

  • Min, Kyung-Jin;Lee, Jongkeun;Cha, Ho-Young;Park, Ki Young
    • Membrane and Water Treatment
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    • 제10권3호
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    • pp.191-199
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    • 2019
  • In this study, we investigated the cultivation possibility using Hydrodictyon reticulatum in a continuous raceway pond as a tertiary sewage treatment plant. The cultivation possibility was evaluated by varying the light quantity, wavelength, and hydraulic retention time (HRT). Experimental results showed that the growth rates of algae and the removal efficiencies of nutrients increased as the light quantity increased, and the maximum photosynthetic rate was maintained at $100{\mu}mol/m^2{\cdot}s$ or higher. When wavelength was varied, nutrient removal efficiency and growth rate increased in the following order: green light, red light, white light, and blue light. The nutrient removal efficiencies and algae productivity in HRT 4 d were better than in HRT 8 d. We conclude that if Hydrodictyon reticulatum is cultivated in a raceway pond and used as a tertiary treatment facility in a sewage treatment plant, nutrients can be effectively removed, and production costs can be reduced.

기존 하수처리장에서의 처리 효율개선에 관한 연구 (A Study on the improvement of treatment efficiency in a conventional sewage treatment plant)

  • 안철우;박진식;문추연
    • 환경위생공학
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    • 제15권3호
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    • pp.50-56
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    • 2000
  • In this study, sewage were treated with operating Two-step Aeration System and conventional activated sludge process together in a condition. At the same HRT 8hr of Two-step Aeration System and Activated Sludge Process, BOD treatment efficiency of 1st sedimentation basin effluent 36.9% by Two-step Aeration system was 12.3% higher than 24.65 by Activated Sludge Process and the COD treatment efficiency 39.8% by two-step Aeration System was 11.6.3% higher than 28.2% by Activated Sludge Process. BOD and COD treatment efficiencies of 2nd sedimentation basin effluent were 88.1% and 85.6% Two-step Aeration System and were 83.8% and 82.3% Activated Sludge Process. In the first treatment, as BOD was relatively removed a lot, F/M ratio 0.17, $0.21{\cdot}BOD/kg{\cdot}MLSS.d$ was maintained by Activated Sludge Process. Therefore it was proved that organic matter treatment efficiency by Two-step Aeration System os Higher than by Activated Sludge Process in a aeration time 8hr. $NH_4^{+}-N$ treatment efficiencies were 55.5% by Two-step Aeration System and 39.75 by Activated sludge Process. $NO_3^{-}-N$ concentration in 2nd. sedimentation basin effluent were 3.33% by Two-step Aeration System and 2.36% by Activated Sludge Process. From this result, Two-step Aeration System was proved more advantageous treatment process for nitrification than Activated Sludge Process. The fluctuation range of BOD, COD and SS concentration in 2nd sedimentation basin effluent $16~33mg/{\ell}$, $15~23mg/{\ell}$ and $14~22mg/{\ell}$ by Two-step Aeration System was smaller than $16~57mg/{\ell}$, $15~25mg/{\ell}$ by Activated sludge Process. Overall the fluctuation range in 2nd sediment basin effluent by was smaller than by Activated Sludge Process. As a result, it is possible for this Two-step Aeration with no facility investment and a little of operation condition change in a conventional sewage treatment plant to get stability and nitrification of treatment water quality.

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공기 중 저급아민류의 분석과 측정 사례 (Analytical examples of volatile amines in ambient airs)

  • 유미선;양성봉
    • 분석과학
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    • 제18권3호
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    • pp.216-223
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    • 2005
  • 연구에서는 일본의 공정시험법에 따라 7종의 아민 표준물질로부터 검량선을 작성하고 실제 공기 중의 아민시료를 채취하여 농도를 산정하였다. 검량선은 좋은 직선상관을 보였으며, 50 L의 시료채취시 트리메틸아민의 경우 검량한계가 0.033 ppb(0.040 ng)로 나타나 부지경계선에서의 규제농도(공업지역 20 ppb, 기타지역 5 ppb)까지 검출 가능함을 확인할 수 있었다. 실제 측정사례로서 하수처리장과 랜더링사업장에서 채취된 시료를 분석한 결과 methyl amine, dimethyl amine, trimethyl amine, i-propyl amine의 4종류의 아민류가 검출되었다. 하수처리장 A의 최초 침전지와 탈수실에서는 trimethyl amine이 각각 9.07 ppb, 7.79 ppb로 악취세기 2.5를 넘는 농도로 검출되었고 하수처리장 B의 폭기조와 분뇨투입동, 분뇨처리장의 기계실에서는 모두 dimethyl amine과 trimethyl amine이 평균 70.0 ppb, 2.44 ppb로 검출되어 악취에 대한 기여가 높다는 것을 알 수 있었다.

A Study on the Odor Removal Control System of Sewage Sludge

  • KIM, Su-Hye;LEE, So-Hee;YUN, Yeo-Jin;CHOI, Soo-Young;JUNG, Min-Jae;KWON, Woo-Taeg
    • 웰빙융합연구
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    • 제4권2호
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    • pp.19-25
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    • 2021
  • Purpose: The purpose of this study is to reduce odor complaints by identifying problems with odor management at the site of the water regeneration center and researching odor management methods. Due to the high population density of Korea, sewage treatment facilities are adjacent to residential and industrial areas. According to previous studies, the main malodor-emitting facilities of sewage treatment facilities were preliminary treatment facilities (2,220 times), sedimentation basins (4,628 times), and sludge treatment facilities (9,616 times). Research design, data and methodology: Compound malodors and designated malodor-producing substances were collected from five site boundaries of the water regeneration center and analyzed according to the official methods to test malodor, and a total of two times (August and September 2020) were conducted. Results: As a result of the measurement, in the green area in front of the center office, compound malodors were detected at a maximum of 8 times and at least 3 times during the dawn time. As for the designated malodor-producing substances, 0.1ppm of ammonia was detected in the green area in front of the center office and the park golf course. This is within 15 times the maximum allowable emission level of compound malodors and within 1ppm of the maximum allowable emission level of ammonia. Conclusions: Even if the dilution rate of the compound malodors did not exceed the maximum allowable emission level, the odor could be recognized, and more research is needed in the future to establish effective reduction measures according to the subjective and individual and seasonal odor characteristics.

해안방류된 하수처리수가 해양환경에 미치는 영향 (Effects of Coastal Environment by Discharge from the Sewage Treatment Plant)

  • 신범식;김규한
    • 대한토목학회논문집
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    • 제40권1호
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    • pp.127-133
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    • 2020
  • 해안에 위치한 대부분의 하수 처리장의 처리수는 직접 또는 하천을 통해 해안으로 배출된다. 따라서, 하수 처리장에서 배출되는 처리수의 수질은 하천 및 해안으로 방류되는 수질에 영향을 미친다. 본 연구에서는 연안에 인접한 하수처리장으로부터 배출되는 처리수가 연안 환경에 미치는 영향을 파악하기 위해 현장조사와 수치 시뮬레이션을 수행하였다. 해안에 미치는 영향을 파악하기 위해 처리수가 방류된 하천 및 하구 주변에서 채수된 시료로 수질과 저질을 분석한 결과, 하수처리장에서 배출된 처리수는 설계기준을 초과하지 않은 상태로 하천으로 방류되고 있으나, 하구를 통해 해안으로 방류되는 수질은 처리수보다 오염된 상태였다. 해안방류수의 수질악화에 대한 원인은 하구 주변에서 나타난 연안표사에 의해 하구가 일시적으로 퇴적되고, 하구폐색 현상이 발생하여, 하구에서의 정체시간이 증가함에 따라 처리수가 유입된 하천수가 하계에 부영양화되어 방류됨에 따라, 하구 주변에서 저질, 수질 및 해양 생물에 영향을 미치는 것으로 분석되었다. 따라서, 연안표사가 강한 동해안의 경우, 해양으로 방류되는 하수처리시설을 계획할 경우, 연안표사에 의한 하구폐색과 같은 처리수의 수질에 미치는 영향에 대한 면밀한 검토가 반드시 필요할 것으로 판단된다.

팔당호 상류수계에 위치한 공공 하수종말처리시설의 총인 배출 최적관리 (Optimal Management Scheme for Phosphorus Discharged from Public Sewage Treatment Plant Located in Upstream Basin of Paldang Lake)

  • 우영국;박은영;전양근;정명숙;임재명
    • 한국물환경학회지
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    • 제27권2호
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    • pp.200-209
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    • 2011
  • The purpose of the study is to optimally manage sewage treatment plant with analysis of phosphorus contribution and improvement of water quality contributing rate in the effect of inflowing point of effluent and Pal-Dang lake after reducing T-P discharge from large scale public sewage treatment plant at upstream of Pal-Dang lake. Also, this study, for enforcement of T-P in effluent, plans optimal management of effluent T-P through examining propriety of environmental, technological, and economical aspect such as water quality standard of domestic and foreign T-P and related policy. In regarding optimal management of T-P discharged from public sewage treatment plant located in upstream of Pal-Dang lake, the study drew following conclusions. With the optimal management of public sewage treatment plant, it showed that a pollution level became higher in the order of Sumgang E in South-Han river, C in Dalcheon, B1 B2, A in North-Han river, and J in Kyungancheon, and it is required reduction of T-P first. The highest value in analysis of benefit-costs from sewage treatment plant in the selected research area was Kyungan B, and the others are with the order of Jojong A, Bokha A, Kyungan A, and Yanghwa A. With result of this study, all 14 areas are required more enforced phosphorus treatment. The study resulted that the most top priority areas were Hangang F, Sumgang B, and Gyungan A, top priority areas were Bokha A, Dalcheon B, and Cheongmi A, priority areas were Hangang E, Heukcheon A, Gyungan B, and Jojong A, and potential areas were Sumgang A, Yanghwa A, Dalcheon A, and Hangang D. It seems to be appropriate to apply 0.2 mg/L of T-P treatment for water supply source reservation, 0.5 mg/L for the other areas by locally, and 0.2~0.5 mg/L for biological nitrogen phosphorus treatment method and 0.5~1 mg/L for Conventional Activated Sludge by technologically. Also, it may be appropriate to apply 0.2 mg/L for the most top priority area(I), 0.3 mg/L for the top priority area(II), 0.4 mg/L for priority area(III), and 0.5 mg/L for potential area(IV) by the separation of priority area.