• Title/Summary/Keyword: 폐수지

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A Study on the Coagulation of Wastewater Containing Fine Silica Particles with the Waste Slurry from Soda Ash Manufacturing Industries (소오다회 제조 공장의 폐슬러리를 이용한 미세 실리카 함유 폐수의 응집에 관한 연구)

  • Jun, Se Jin;Yim, Sung Sam
    • Applied Chemistry for Engineering
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    • v.10 no.7
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    • pp.1073-1078
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    • 1999
  • The objectives of this study are to examine the applicability of waste slurry from soda ash manufacturing industries as a coagulant for the treatment of wastewater containing fine silica particles, and to reduce the cost of wastewater treatment containing silica. Acceptable water quality can be obtained with a little dosing of waste slurry by gelation before the coagulation process so it could be concluded that the waste slurry from soda ash can be used as a coagulant. Based on the results of experiments, the optimum pH of gelation for silica in wastewater was around five and the treatment process with the gelation of silica could reduce the chemical dosage and waste sludge after coagulation. Dewatering and settling characteristics of the floc after coagulation with the waste slurry are better than those of the floc after coagulation with the lime milk only.

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Relation between Leaching Characteristics of the positive Ions and Phosphate Removal by granular Converter Slag for the different Conditions and Concentrations of Phosphate (인산염 농도와 폐수조건 변화에 따른 입상 전로슬래그의 양이온 용출 특성과 인산염 제거의 관계에 관한 연구)

  • Lee, In-Gu;Lee, Sang-Ho
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.8 no.2
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    • pp.372-379
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    • 2007
  • The converter slag can be used to remove phosphate ion into the form of solid state from the wastewater. This research aims to evaluate the change of pH, alkalinity, leaching of positive ion in the wastewater and the removal of phosphate from the initial condition of wastewater. The change of pH was abruptly increased upto pH 11 for the initial condition of pH from 7.0 to 8.5 fer 0.5 unit of pH. The alkalinity was steadily increased from 10 hours of reaction time not same as pH increase. The removal of phosphate was very effective till 10 hours of reaction then it was slow after that time. The positive ion, magnesium ion was leached from the concentration of 2.0 mg/L to 4.3mg/L at the reaction time of 27 hours and 36 hours. Therefore, converter slag can be used to remove the phosphate in the form of Struvite from the wastewater.

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Temperature Prediction for the Wastewater Treatment Process using Heat Transfer Model (열전달 모델을 이용한 폐수처리공정의 온도 예측)

  • Rho, Seung-Baik
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.3
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    • pp.1795-1800
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    • 2014
  • The temperature change in the biologically activated sludge wastewater treatment process was predicted using the heat transfer model. All incoming and outgoing heats in wastewater treatment processes were considered. Incoming heats included the solar radiation heat, the heat from impeller mechanical energy, and the biochemical heat in the aeration process. Outgoing heats comprised the radiation heat from the waste itself, the heat of vaporization and surface aeration, the wind convection heat and the conduction heat between the surface and aerator. All heats were used as an input to the existing empirical heat transfer model. The heat transfer model of wastewater treatment processes is presented also. To test the validity of the heat transfer model, the operating conditions of the actual wastewater treatment plant were used. The temperatures were compared with the model temperatures. Model predictions were consistent within the $1.0^{\circ}C$.

Deodorization of Swine Wastewater by Rhodospirillum rubrum N-1 (Rhodospirillum rubrum N-1을 이용한 양돈폐수의 악취제거)

  • Choi, Kyung-Min;Kim, Jong-Seung
    • Journal of the Korea Organic Resources Recycling Association
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    • v.6 no.1
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    • pp.13-20
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    • 1998
  • Rhodospirillum rubrum N-1 was inoculated to manipulated swine wastewater of 20,000 mg/L as Biochemical Oxygen Demand (BOD) to study the effect of aeration on swine wastewater deodorization. Biological and physico-chemical parameters were determined at 1 day interval for 9 days. Removals of BOD, volatile fatty acids (VFAs), and phosphate were 54.6%, 87.0%, and 54.5%, respectively. No significant changes were observed in the concentrations of total nitrogen, total phosphorus, nitrate, nitrite, hydrogen sulfide, and mercaptane.

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Current Status of China's Environmental Problem and Environmental Policy Issues (중국의 환경오염 현황과 정책과제)

  • Kim, Jeong-In
    • Environmental and Resource Economics Review
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    • v.9 no.1
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    • pp.155-182
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    • 1999
  • 중국은 급속한 경제성장으로 인해서 에너지의 소비량이 급증하였으며 이는 석탄의 급증을 동시에 유발하였다 이러한 석탄 사용의 증가는 국내적으로는 대기오염의 악화를 초래하고 있으며, 국외적으로는 산성비의 원인이 되고 있다. 한편 수질오염도 심각하며 주원인으로는 도시폐기물이 약 40%, 산업폐기물로 인한 수질오염이 60% (1981 - 1995)을 차지하고 있으며 폐수처리물은 산업폐수가 77%이나 도시의 폐수처리는 7%에 불과한 것으로 알려져 있다. 이러한 환경오염으로 인한 총 사회적 비용은 1995년도의 경우 GDP의 8%로 추정되고 있으나 중국의 경제 성장이 현재와 같이 지속되고 청정생산, 에너지 효율 향상이 되면 2020년에 '95년의 사회적 비용의 75% 수준까지 저감시킬 것으로 세계은행은 예상하고 있다. (세계은행, 1998) 중국이 환경문제를 해결하기 위해서는 우선 에너지 효율 향상과 에너지 공급원의 다양화를 추진하는 것이며, 산업 보일러와 로에서 발생하는 배출량에 대한 저감에 대해서 노력해야 한다. 특히 수질오염의 방지를 위해서도 거의 무방지 지대인 중소기업에 대한 폐수처리 시설의 확충도 시급한 실정이며 자동차와 관련한 대기오염의 방지도 중요하다. 특히 시장 기능의 활성화를 유도하기 위해서는 공기업에게도 철저한 환경규제를 적용시켜야 하며, 환경비용의 내부화를 기하기 위해서 가격제도의 도입과 국제 무역의 자유화를 조기에 추진함으로서 환경기반산업을 육성할 수 있을 것이며 최소한 GDP의 1% 정도 되는 환경투자가 필요하다고 본다.

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A Development of the Stabilization Technology for the Solid Form of Radioactive Waste (방사성폐기물 아스팔트 고화체 안정화 특성연구)

  • 김태국;이영희;이강무;안섬진;손종식
    • Proceedings of the Korean Radioactive Waste Society Conference
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    • 2003.11a
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    • pp.202-206
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    • 2003
  • In this study, a modified bituminization technology has been developed, which needs no grinding of the granular resin waste, and enables the solid form to keep its shape stability as good as that of a cemented solid from Also, the study intended to apply the developed technology to the practical treatment of radioactive resin waste. In the experiment, the granular type resin was used and the straight-run distillation bitumen with penetration rate 60/70 was used as the solidifying agent. The PE was used as the additive. The shape stability increased remarkably with the additive of PE, which act as a binder in the solid form. The shape of the solid form was maintained without failure during the long-term exposure test when the additive content of spent PE is more than 10wt%. The proper ranges of bitumen content, PE content and operating temperature are 30-50wt%, 10-20wt% and $180^{\circ}C$ respectively. The bituminized solid form of radioactive resin waste by the technology of this study has the remarkably superior quality than the conventional solid forms, partially for the shape stability.

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Greenhouse Gas Reduction Effect of Improvement of Existing Landfill Gas(LFG) Production by Using Food Waste Water (음폐수 이용 기존 매립지 가스 발생 향상에 따른 온실가스 감축효과)

  • Shin, Kyounga;Dong, Jongin;Park, Daewon;Kim, Jaehyung;Chang, Wonsoek
    • Journal of Energy Engineering
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    • v.25 no.3
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    • pp.104-113
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    • 2016
  • This study analyzes correlation between methane gas production and injection of food waste water to motivate to expand renewable energy as a way of GHG (Green House Gas) mitigation to achieve the national GHG target proposed for the climate agreement in Paris last year. Pretreatment of food waste water was processed with pH 6 at $35^{\circ}C$ and used the fixed-bed upflow type reactor with the porous media. As a result of operation of pilot-scaled bioreactor with food waste water, the methane gas production was 6 times higher than the methane gas production of control group with rain water. The average production of methane was $56{\ell}/day/m^3$ which is possible to produce $20m^3$ of methane in $1m^3$ of landfill. As a way of energy source, when it is applied to the landfill over $250,000m^3$, it is also able to achieve financial feasibility along with GHG reduction effect. GHG reductions of $250,000m^3$ scale landfill were assessed by registered CDM project and the annual amount of reductions was 40,000~50,000 $tCO_2e$.

하천 오염현황과 대책

  • 이은호
    • Proceedings of the Korean Society for Applied Microbiology Conference
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    • 1979.10a
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    • pp.234-236
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    • 1979
  • 인구의 도시집중과 고도산업사회 건설에 필연적으로 수반되는 도시하수 및 산업폐수등은 하천을 심각하게 오염시켜 하천수가 지니고 있는 자정능력 한계를 초과하고 있어 재생될수 없는 상태이므로 수자원의 보호가 요청된다. 이런 상황의 하천오염 증가 추세와 주요 오염원 및 오염물에 대하여 고찰하고 대책에 방향을 제시한다. 먼저 전국의 급수 현황과 장래를 보면 다음과 같다. 한편 수도권 한강수계를 오염시키는 주요 오염원인 폐수를 보면 주거지의 생활하수, 상업행위로 발생되는 폐수와 공장의 산업폐수로 대별할 수 있으며 수도권 한강에 유입 되는 지천 수질을 보면 다음과 같다. 위와 같은 상태의 총폐수량은 280만톤인데 비하여 청계, 중량하수처리장과 서부 북부 동부분뇨처리장의 일일 처리능력은 16.4%에 불과하다. 한편 서울지역 오염원구성비를 보면 다음과 같다. 이런 계속적인 오염물은 1977년 경우 갈수기에 80~100t/sec의 하천유량으로 희석되고 있어 자정능력 한계를 벗어나서 하류의 물은 혼탁하고 용존산소의 고갈현상을 초래하고 있다. 그러므로 도시 하천에서는 수류침체로 인한 하상퇴적을 방지하여 국소적 오염의 심화를 방지하며 유량을 증가 시켜야 한다. 수도권 한강 수계의 수질의 일부는 다음과 같다. 한편 생활수준의 향상과 더불어 수요가 급증되며 처리장의 효율과 하천수의 수질을 악화시키는 합성세제의 총생산량은 1971년에 21000톤이던 것이 1978년에는 약 50,000톤에 이르고 있으며 이중 55~60%가 서울지역에서 소모되는 것으로 추산되어 진다' 결과 한강수에서 검출되는 합성세제의 오염 현황을 보면 다음과 같이 이미 몇개 지점에서는 세계 보건기구의 허용량인 0.5ppm을 초과 하고 있는 실정이다. 또한 오염의 연쇄현상을 나타내는 중금속의 일종인 csduium의 검출 정도를 보면 다음과 같다. 이상의 하천오염에 따른 수중생태계의 변화는 물리적 화학적 생물학적 환경요인이 복합적으로 작용하는 세부적 기계에 대하여는 규명되지 않은 문제가 아직도 많으며 지표생물의 표현형은 중요한 가치를 부여하고 있다. 식물성 plankton의 우점종의 출현 빈도에 따른 수질계급을 보면 뚝섬지역 BOD 3.3~5.3 빈부수성 $~\alpha$ 중부수성, 보광동 BOD 6.0~10.3중부수성, 제 2한강교 BOD10~28 $\alpha$ 강부수성, 난지도 BOD29 $\beta$ 강부수성 등이며 이와 상이한 결과도 보여주고 있다. 이상으로 볼 때 1) 가정하수의 질을 높이기 위하여 분뇨정화조 의 효율증대 2) 산업폐수의 공정별 폐수량의 조절 및 폐수성 상에 따른 총량규제에 대비한 효율증대 3) 하천의 오염부하와 자정능력 최대한 부여 4) 폐수처리를 위한 미생물제개발 및 오염지표 종 연구와 오염내성 생물의 연구등이 종합적 으로 수행되어야 한다. 5) 이상의 모든 조사와 연구결과를 객관적으로 표기할 수 있도록 하천의 이정표가 정해져야 하겠다.

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Estimation of GHGs Emission to Improvement of Facility Efficiency in the Food wastewater Treatment Process (식품폐수처리시설의 설비효율 개선에 따른 온실가스 배출량 평가)

  • An, Sang-Hyung;Song, Jang-Heon;Kim, San;Chung, Jin-Do
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.20 no.2
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    • pp.378-384
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    • 2019
  • In the food wastewater treatment facilities, the water quality improvement effect and the greenhouse gas emission amount followed by the change in electricity usage through a change of the aeration tank ventilation system were evaluated. also, the amount of greenhouse gas emission followed by the change in electricity usage through the change of the sludge dewatering, storage, transporting method was also evaluated. The total GHG emission from food wastewater treatment facility improvement were divided into direct emissions from the treatment processes and indirect ones from electricity usage. The water quality improvement effect of wastewater treatment plant was found to be 63.3% for BOD removal rate, 42.0% for COD removal rate, 71.0% for SS removal rate and 39.6% for T-N removal rate. and according to the results of calculating output by applying both direct emissions of greenhouse gas (Scope 1) and the indirect emission (Scope 2) of greenhouse gas followed by changes in power consumption. It was estimated that there was a total of 276.0tCO2eq./yr(7.5%) greenhouse gas reduction effect from 3,668.8tCO2eq./yr before improvement to 3,392.8tCO2eq./yr after improvement. In this result is not due to the effects of water quality improvement of emission source, but because the reduction in electricity use has reduced the amount of greenhouse gas emissions.